Xin Wang | Atmospheric Enviroment | Best Researcher Award

Prof. Xin Wang | Atmospheric Enviroment | Best Researcher Award

Professor at Lanzhou University, China

Dr. Xin Wang is a distinguished professor at Tianjin University, specializing in atmospheric sciences with a focus on climate feedback mechanisms related to seasonal snow and sea ice. His research addresses the influence of black carbon (BC) and mineral dust (MD) on snow properties and radiative forcing. Dr. Wang has conducted extensive fieldwork across northern China, developed innovative measurement techniques, and contributed significantly to the understanding of light-absorbing particles in snow and their climatic impacts. His work integrates field campaigns, laboratory measurements, and theoretical modeling, offering valuable insights into the environmental effects of aerosols and their role in climate change.

Author Metrics

ORCID Profile

Dr. Xin Wang has an H-index of 24, reflecting a substantial impact in his field with 67 published papers that have been cited a total of 2,414 times. His scholarly output includes high-profile articles in leading journals, demonstrating his influence and productivity in atmospheric sciences. His research metrics highlight his contributions to the understanding of light-absorbing particles in snow and their broader climatic implications.

Education

Dr. Wang completed his Bachelor’s degree in Environmental Science at Nanjing University of Information Science & Technology in 2003. He then pursued a PhD in Atmospheric Sciences at Lanzhou University, graduating in 2009. His educational background laid the foundation for his expertise in atmospheric research and climate science, equipping him with the knowledge to investigate and address complex environmental issues.

Research Focus

Dr. Wang’s research centers on the climatic effects of black carbon (BC) and mineral dust (MD) in seasonal snow and sea ice. He explores how these particles affect snow’s optical properties, radiative forcing, and overall climate feedback mechanisms. His work includes developing novel measurement techniques, such as the portable two-sphere integrating (TSI) spectrophotometer, and creating advanced radiative transfer models. Additionally, he investigates the impact of dust and BC on snow albedo and the connections between dust events and Arctic sea ice.

Professional Journey

Dr. Wang began his academic career at Lanzhou University in 2008, where he contributed significantly to atmospheric sciences research. In 2020, he transitioned to Tianjin University, where he continues to advance his research on climate feedback mechanisms and light-absorbing particles. His professional journey reflects a commitment to both field research and theoretical advancements, leading to substantial contributions to our understanding of atmospheric processes and climate change.

Honors & Awards

Dr. Wang has been recognized for his research excellence with several awards and honors. These accolades reflect his contributions to the field of atmospheric sciences and his impact on advancing knowledge about the effects of black carbon and mineral dust on climate systems. His work has been acknowledged through prestigious awards and recognition within the scientific community.

Publications Noted & Contributions

Dr. Wang has authored over 67 peer-reviewed publications in high-impact journals such as Atmospheric Chemistry and Physics, Geophysical Research Letters, and Science of the Total Environment. Notable contributions include studies on the radiative effects of water-soluble organic carbon in snow, the impact of dust storms on regional climate, and advancements in measurement techniques for black carbon concentrations. His work has significantly advanced the understanding of light-absorbing particles in snow and their climatic effects.

  • “Impact of transient eddy fluxes on the dust storm event: Cases study in South Xinjiang, China”
    Published in Geophysical Research Letters
  • “Fluorescence characteristics, absorption properties, and radiative effects of water-soluble organic carbon in seasonal snow across northeastern China”
    Published in Atmospheric Chemistry and Physics
  • “Snow albedo reductions induced by the internal/external mixing of black carbon and mineral dust, and different snow grain shapes across northern China”
    Published in Environmental Research
  • “Molecular Characterization of Water-Soluble Brown Carbon Chromophores in Snowpack from Northern Xinjiang, China”
    Published in Environmental Science & Technology
  • “Unprecedented snow darkening and melting in New Zealand due to 2019-2020 Australian wildfires”
    Published in Fundamental Research

Research Timeline

Dr. Wang’s research timeline includes key milestones such as the development of innovative measurement techniques, significant field campaigns across northern China, and the creation of new radiative transfer models. Over the years, his research has evolved to include a broader investigation of dust and black carbon’s impact on global and regional climate systems, reflecting a continuous effort to enhance the scientific understanding of atmospheric processes.

Collaborations and Projects

Throughout his career, Dr. Wang has engaged in numerous collaborations with researchers and institutions worldwide. His projects often involve interdisciplinary teams, combining expertise from atmospheric sciences, environmental chemistry, and remote sensing. Notable collaborations include joint research on dust storm events, the development of new measurement technologies, and studies on the optical properties of aerosols. These collaborative efforts have enhanced the scope and impact of his research, contributing to significant advancements in the field.

Strength of the Best Researcher Award

  1. Significant Impact on Atmospheric Sciences: Dr. Xin Wang’s research has notably advanced the understanding of how black carbon and mineral dust affect snow properties and climate feedback mechanisms. His work has provided valuable insights into the optical properties and radiative forcing of light-absorbing particles in snow, influencing both regional and global climate models.
  2. Innovative Measurement Techniques: His development of the portable two-sphere integrating (TSI) spectrophotometer represents a significant technological advancement. This instrument allows for accurate measurements of black carbon (BC) and organic carbon (OC) in snow, enhancing the precision and scope of field studies.
  3. High-Profile Publications: Dr. Wang has published over 67 papers in top-tier journals, including Atmospheric Chemistry and Physics, Geophysical Research Letters, and Science of the Total Environment. His publications reflect high-quality research and substantial contributions to the field.
  4. Extensive Fieldwork and Modeling Efforts: His extensive field campaigns across northern China and the development of advanced radiative transfer models demonstrate a comprehensive approach to understanding the impacts of aerosols on climate. This dual focus on empirical data and theoretical modeling strengthens the validity of his research findings.
  5. Recognition and Awards: Dr. Wang’s receipt of multiple awards and honors underscores his excellence in research and his influence within the atmospheric sciences community. These accolades affirm his role as a leading researcher and validate his significant contributions to climate science.

Areas for Improvement

  1. Broader Interdisciplinary Engagement: While Dr. Wang has engaged in numerous collaborations, further expanding interdisciplinary projects could enhance the integration of atmospheric sciences with related fields such as environmental policy and public health.
  2. Increased Focus on Regional Variations: Further research could investigate how regional variations in snow properties and aerosol concentrations impact local climates and ecosystems. This would provide a more nuanced understanding of regional climatic effects.
  3. Enhanced Public Communication: Improving efforts to communicate research findings to the public and policymakers could enhance the societal impact of his work. This could involve more outreach activities, public lectures, or collaborations with media.
  4. Development of New Measurement Technologies: While Dr. Wang has developed notable measurement techniques, ongoing innovation in measurement technologies could address emerging challenges and improve the accuracy of environmental monitoring.
  5. Greater Focus on Long-Term Trends: Expanding research to include long-term monitoring of dust and BC trends over extended periods could provide deeper insights into the effects of climate change on aerosol dynamics and snow properties.

Conclusion

Dr. Xin Wang’s research represents a significant contribution to the field of atmospheric sciences, particularly in understanding the climatic effects of black carbon and mineral dust. His innovative measurement techniques and high-impact publications reflect a deep commitment to advancing scientific knowledge and addressing critical environmental issues. While there are areas for potential improvement, including broader interdisciplinary engagement and enhanced public communication, his work has undeniably made a substantial impact. Continuing to build on his strengths while addressing areas for growth will further solidify his position as a leading researcher in atmospheric sciences.

Federica Ribaldi | Neurology | Best Researcher Award

Dr. Federica Ribaldi | Neurology | Best Researcher Award

 Doctorate at University of Geneva, Switzerland

Federica Ribaldi is an accomplished researcher in cognitive neuroscience, currently holding a senior post-doctoral position at the University of Geneva and the Geneva Memory Center. With a strong academic background from prestigious institutions in Italy, she has made significant contributions to the understanding of Alzheimer’s disease and cognitive decline. Her work spans diagnostic accuracy, brain connectivity, and dementia prevention, positioning her as a leading figure in her field.

Author Metrics

Scopus Profile

Federica Ribaldi has published 37 peer-reviewed articles, with an H-index of 14. This metric indicates that she has authored at least 14 papers, each cited at least 14 times, reflecting her influential contributions to the field of neuroscience and Alzheimer’s research. Her work has significantly impacted the understanding and management of cognitive disorders.

Education

Federica’s educational journey began with a Bachelor’s degree in Cognitive Psychology from the University of Rome La Sapienza in 2013. She advanced her studies with a Master’s degree in Neuroscience from the University of Padua in 2015. Her academic pursuit culminated in a PhD in Translational Medicine, specializing in Cardiovascular Neuroscience, from the University of Brescia in 2021. This solid educational foundation has underpinned her research and professional achievements.

Research Focus

Federica Ribaldi’s research is primarily centered on Alzheimer’s disease and cognitive decline. Her focus includes studying biomarkers, brain connectivity, and the clinical aspects of cognitive decline. She is particularly interested in improving diagnostic accuracy and developing preventive strategies for dementia, contributing to both theoretical and practical advancements in the field.

Professional Journey

Federica’s professional career began with research fellowships and assistant roles, leading to her current position as a Senior Post-Doc at the University of Geneva and the Geneva Memory Center. Her journey includes roles as a research assistant and post-doctoral researcher, with notable contributions to Alzheimer’s research and brain health initiatives. Her career trajectory reflects her growing expertise and leadership in neuroscience.

Honors & Awards

In 2019, Federica Ribaldi received the Swiss Government Excellence Scholarship, an accolade that supported her research at the University of Geneva. This award recognized her outstanding potential and contributions to the field of neuroscience, highlighting her as a prominent researcher with significant promise.

Publications Noted & Contributions

Federica has contributed to numerous high-impact publications in neuroscience. Key papers include studies on diagnostic biomarkers for Alzheimer’s disease, recommendations for dementia prevention, and analyses of psychological symptoms in cognitive decline. Her work has been published in leading journals such as JAMA Network Open, Nature Reviews Neuroscience, and Alzheimer’s Research & Therapy, demonstrating her active role in advancing the understanding of cognitive disorders.

Mendes AJ, Ribaldi F, et al. Head-to-head study of diagnostic accuracy of plasma and cerebrospinal fluid p-tau217 versus p-tau181 and p-tau231 in a memory clinic cohort. J Neurol, 2024. DOI: 10.1007/s00415-023-12148-5

Frisoni GB, Altomare D, Ribaldi F, et al. Dementia prevention in memory clinics: recommendations from the European task force for brain health services. Lancet Reg Health Eur., 2023. DOI: 10.1016/j.lanepe.2022.100576

Caprioglio C, Ribaldi F, et al. Analysis of Psychological Symptoms Following Disclosure of Amyloid-Positron Emission Tomography Imaging Results to Adults With Subjective Cognitive Decline. JAMA Netw Open, 2023. DOI: 10.1001/jamanetworkopen.2022.50921

Ribaldi F, Rolandi E, et al. The clinical heterogeneity of subjective cognitive decline: a data-driven approach on a population-based sample. Age and Ageing, 2022. DOI: 10.1093/ageing/afac209

Frisoni GB, Altomare D, et al. The probabilistic amyloid hypothesis of Alzheimer’s disease. Nature Reviews Neuroscience, 2022. DOI: 10.1038/s41583-021-00533-w

Research Timeline

Federica’s research timeline is marked by significant milestones, including her PhD completion in 2021 and her subsequent post-doctoral positions at the University of Geneva. Her research career has been highlighted by receiving the Swiss Government Excellence Scholarship and leading impactful studies on Alzheimer’s disease. Her progression from a PhD student to a senior researcher reflects her increasing influence and expertise in the field.

Collaborations and Projects

Federica is involved in several prominent research projects, including COSCODE/BioSCODE (SNF) as a study coordinator, the Brain Health Services Initiative as an organizer, and the Atelier Memoire for Dementia Prevention as a program developer and coordinator. These roles demonstrate her leadership and collaborative efforts in advancing dementia research and prevention strategies.

Strengths of the Best Researcher Award

  1. Impactful Contributions: Federica Ribaldi’s research has made significant strides in understanding Alzheimer’s disease and cognitive decline. Her studies on diagnostic biomarkers, brain connectivity, and dementia prevention have influenced both theoretical and practical aspects of neuroscience.
  2. High-Quality Publications: Her work has been published in prestigious journals such as JAMA Network Open, Nature Reviews Neuroscience, and Alzheimer’s Research & Therapy. This high publication standard indicates the substantial impact and recognition of her research within the scientific community.
  3. Strong Academic Background: Federica’s educational journey from a Bachelor’s in Cognitive Psychology to a PhD in Translational Medicine has provided her with a robust foundation for her research. Her education from respected institutions adds credibility to her work.
  4. Recognition and Awards: The Swiss Government Excellence Scholarship is a notable accolade that recognizes her potential and contributions to neuroscience. It highlights her prominence and promise in the field.
  5. Leadership in Research: Federica’s role as a Senior Post-Doc at the University of Geneva and the Geneva Memory Center, coupled with her leadership in projects such as COSCODE/BioSCODE and the Brain Health Services Initiative, demonstrates her ability to lead and coordinate significant research efforts.

Areas for Improvement

  1. H-Index Expansion: While an H-index of 14 is commendable, further increasing this metric through more high-impact publications and citations could enhance her academic standing and visibility.
  2. Broader Collaboration: Expanding collaborations beyond her current projects could provide new perspectives and resources, potentially leading to novel research insights and innovations.
  3. Funding Diversification: Securing additional sources of research funding could provide more opportunities for diverse and large-scale projects, enhancing the scope and impact of her work.
  4. Public Engagement: Increasing efforts to engage with the public and policy-makers about the implications of her research could help bridge the gap between academic research and practical application, particularly in dementia prevention strategies.
  5. Research Dissemination: While Federica’s research is published in high-impact journals, diversifying the platforms for disseminating her findings, such as through media outreach, conferences, and interdisciplinary journals, could increase the reach and influence of her work.

Conclusion

Dr. Federica Ribaldi is a highly accomplished researcher whose work in cognitive neuroscience, particularly Alzheimer’s disease and cognitive decline, has garnered significant recognition and impact. Her impressive publication record, strong academic background, and leadership roles underscore her prominence in the field. While her achievements are substantial, there are opportunities for further growth, such as enhancing her H-index, expanding collaborations, diversifying funding sources, increasing public engagement, and broadening research dissemination. Addressing these areas could further amplify her contributions and influence in neuroscience and dementia research.

 

Gulsah Demirhan Aydin | Bonding | Best Researcher Award

Assist Prof Dr. Gulsah Demirhan Aydin | Bonding | Best Researcher Award

Assistant Professor at Başkent University, Turkey

Assistant Prof. Dr. Gülşah Demirhan Aydın is a distinguished academic in the fields of Micro Electro Mechanical Systems (MEMS), mechatronics, and wafer level packaging. Currently, she serves as an Assistant Professor in the Engineering Faculty at Başkent University and as a Part-Time Instructor at Atılım University. Her extensive expertise and research contributions are underscored by a robust academic background and a significant track record of scientific research and publication.

Author Metrics

ORCID Profile

Dr. Aydın’s publications include notable journal articles and conference papers in her areas of specialization. Her work has been widely cited, reflecting her significant impact on the field of MEMS and related technologies. Her most recent journal articles have been published in reputable scientific journals, such as Micromachines and Adv. Mater. Lett., showcasing her contributions to advancing wafer level vacuum packaging and resonance-based temperature sensors.

Education

Dr. Aydın’s academic journey began with a Bachelor’s degree in Mechatronics Engineering from Atılım University and a second Bachelor’s degree in Business Administration from Anadolu University. She then pursued her Master’s and Ph.D. degrees at Middle East Technical University, where she specialized in Micro and Nanotechnology. Her doctoral thesis focused on wafer level vacuum packaging technologies for MEMS-based thermal sensors, demonstrating her deep expertise in microfabrication and sensor technology.

Research Focus

Dr. Aydın’s research primarily revolves around MEMS technology, wafer level packaging, and microbolometers. Her work explores innovative methods for sensor encapsulation and integration, contributing to advancements in infrared detection and control systems. Her interests also extend to mechatronic systems, inertial measurement units (IMUs), and the characterization of MEMS-based sensors.

Professional Journey

Dr. Aydın’s professional career encompasses roles as a Senior Researcher at METU MEMS Center, a Visiting Researcher at the Institute of Microelectronics of Barcelona, and her current positions as Assistant Professor at Başkent University and Part-Time Instructor at Atılım University. Her career trajectory reflects a blend of academic teaching, cutting-edge research, and active participation in international scientific communities.

Honors & Awards

Dr. Aydın’s contributions to science and engineering have been recognized through her involvement in high-impact research projects and her publication in leading journals and conferences. Her research achievements and the successful completion of several significant projects underscore her role as a leading expert in her field.

Publications Noted & Contributions

Dr. Aydın’s notable publications include her work on wafer level vacuum packaging for MEMS-based infrared sensors and resonance-based temperature sensors. Her contributions are published in high-impact journals and presented at international conferences, reflecting her role in advancing MEMS technology and sensor systems.

Research Timeline

Dr. Aydın’s research career is marked by a progression from her early work in MEMS and mechatronics to advanced projects in wafer level packaging and sensor development. Her research timeline includes significant projects such as the development of infrared detectors and MEMS-based gyroscopes, showcasing her continuous contributions to the field.

Collaborations and Projects

Dr. Aydın has been involved in various collaborative projects, including the LADES project with ROKETSAN and the OrChESTRA Horizon-WIDERA project. Her work on these projects highlights her ability to engage in complex research partnerships and contribute to the development of innovative technologies in MEMS and related fields.

Wafer Level Vacuum Packaging of MEMS-Based Uncooled Infrared Sensors

  • Journal: Micromachines
  • Publication Date: July 2024
  • DOI: 10.3390/mi15080935
  • Contributors: Gülşah Demirhan Aydın, Orhan Sevket Akar, Tayfun Akin
  • Summary: This paper presents advancements in wafer level vacuum packaging specifically designed for MEMS-based uncooled infrared sensors. The study explores new methodologies to enhance the performance and cost-efficiency of infrared sensors by optimizing the packaging process. The results demonstrate significant improvements in sensor reliability and performance, making this approach a notable contribution to the field of MEMS technology.

A New Approach for Addressing Slip Ratio Optimization and Trajectory Tracking Challenges in Autonomous Tractor Operations

  • Conference: 2024 32nd Signal Processing and Communications Applications Conference (SIU)
  • Publication Date: May 15, 2024
  • DOI: 10.1109/siu61531.2024.10600918
  • Contributors: Gülşah Demirhan Aydın, Ali Bahadır Aydemir, Mohamad Thaer Kansou, Kemal Orçun Altınuç
  • Summary: This conference paper introduces a novel approach to address challenges in slip ratio optimization and trajectory tracking for autonomous tractors. The research focuses on improving the operational efficiency and accuracy of autonomous systems in agricultural settings. The proposed methods offer solutions to common issues in autonomous vehicle control, contributing valuable insights to the field of robotics and autonomous systems.

Lyapunov-based Controller Design for Precise Monitoring, Speed Control and Trajectory Planning in Autonomous Tractors with Trailers

  • Conference: 2024 32nd Signal Processing and Communications Applications Conference (SIU)
  • Publication Date: May 15, 2024
  • DOI: 10.1109/siu61531.2024.10600765
  • Contributors: Gülşah Demirhan Aydın, Deren Doğan, Yusuf Tuğberk Türken
  • Summary: This poster presents a Lyapunov-based controller design aimed at enhancing the precision of monitoring, speed control, and trajectory planning in autonomous tractors with trailers. The research provides a detailed analysis of control strategies that improve the performance and stability of autonomous tractor systems, showcasing advancements in control theory and practical applications in agricultural automation.

Infrared Detection Technologies in Smart Agriculture: A Review

  • Journal: Conference paper
  • Publication Date: 2023
  • DOI: 10.1109/ACEMP-OPTIM57845.2023.10287033
  • WOSUID: INSPEC:24060898
  • Summary: This review article discusses the application of infrared detection technologies in smart agriculture. It covers various infrared sensing technologies and their impact on modern agricultural practices, including precision farming and environmental monitoring. The review highlights current advancements and future trends in the integration of infrared detection in agricultural technologies.

Resonance-Based Temperature Sensors using a Wafer Level Vacuum Packaged SOI MEMS Process

  • Journal: Advanced Materials Letters
  • Publication Date: January 2020
  • DOI: 10.5185/AMLETT.2020.011462
  • Contributors: Gülşah Demirhan Aydın
  • Summary: This journal article explores the development of resonance-based temperature sensors using a wafer level vacuum packaged Silicon-On-Insulator (SOI) MEMS process. The study demonstrates how this packaging technique enhances the performance and reliability of temperature sensors, providing a detailed account of the fabrication process and the performance metrics achieved.

Strengths of the Best Researcher Award

  1. Innovative Research Contributions: Dr. Aydın’s work on wafer level vacuum packaging for MEMS-based infrared sensors and resonance-based temperature sensors reflects cutting-edge advancements in sensor technology. These contributions are pivotal for enhancing the performance and reliability of MEMS sensors, which is crucial for various applications.
  2. Diverse Expertise: Her research spans multiple domains, including MEMS technology, mechatronics, wafer level packaging, and autonomous systems. This breadth showcases her versatility and ability to contribute to a wide array of technological fields, making her a well-rounded researcher.
  3. High-Impact Publications: Dr. Aydın’s publications in reputable journals like Micromachines and Advanced Materials Letters, and her presentations at significant conferences, highlight the impact of her research. Her work is frequently cited, indicating a strong influence on her field.
  4. Collaboration and Project Involvement: Her active participation in collaborative projects, such as the LADES project and OrChESTRA Horizon-WIDERA, demonstrates her ability to engage in and contribute to complex, multi-disciplinary research efforts. This involvement underscores her leadership and collaborative skills.
  5. Educational Background and Professional Experience: Dr. Aydın’s extensive academic and professional journey, including roles as a Senior Researcher and Visiting Researcher, along with her current positions at Başkent University and Atılım University, highlights her strong foundation and ongoing contributions to both teaching and research.

Areas for Improvement

  1. Broader Dissemination of Research: While Dr. Aydın’s research is published in high-impact journals and conferences, increasing the visibility of her work through popular science outlets or public talks could enhance its reach and impact beyond the academic community.
  2. Cross-Disciplinary Applications: Exploring and publishing research on the application of her technologies in fields outside her primary areas of expertise could provide new insights and opportunities for innovation.
  3. Longitudinal Impact Analysis: Conducting studies to evaluate the long-term impact of her research on the field of MEMS and related technologies might provide a clearer picture of her work’s broader implications and practical significance.
  4. Enhanced Public Engagement: Increasing engagement with industry stakeholders and the general public through workshops, seminars, and interactive platforms could help translate her research into practical solutions and foster industry-academic partnerships.
  5. Research Diversity: Expanding her research to include emerging areas such as AI integration with MEMS technology or advanced materials could position her as a leading expert in new and evolving technological landscapes.

Conclusion

Dr. Gülşah Demirhan Aydın’s receipt of the Best Researcher Award is a testament to her significant contributions to MEMS technology, sensor systems, and mechatronics. Her research has not only advanced technological capabilities but also set a high standard in her field through innovative methodologies and impactful publications. While her achievements are noteworthy, there are opportunities for further enhancing the visibility and application of her work. By addressing these areas for improvement, Dr. Aydın can continue to expand her influence and drive further advancements in her areas of expertise.

Samer Mohsen | Quality of Life studies | Best Researcher Award

Prof. Samer Mohsen | Quality of Life studies | Best Researcher Award

 Professor at Damascus University, Faculty of Medicine, Syria

Dr. Samer Mohamad Mohsen is a distinguished ENT specialist and audiologist with extensive academic and clinical experience. Currently serving as the Dean of the Faculty of Health Sciences at Damascus University, Dr. Mohsen has a rich background in research and teaching, particularly in the fields of audiology and otolaryngology. His research primarily revolves around tinnitus and its treatments, including the effects of transcranial Random Noise Stimulation (tRNS). With a notable presence in both regional and international conferences, he has made significant contributions to his field through research, education, and clinical practice.

Author Metrics

Scopus Profile

ORCID Profile

Dr. Mohsen has a robust academic presence with significant citations and contributions across various journals. His research work has been recognized and referenced in high-impact publications, reflecting his influence and expertise in audiology and tinnitus research. His profiles on platforms such as Google Scholar, Scopus, and ResearchGate provide detailed metrics on his publications, citations, and research impact, highlighting his role as a key contributor to the field of audiology.

Education

Dr. Mohsen’s academic journey includes:

  • Ph.D. in Audiology from Iran University of Medical Sciences, Tehran, Iran, 2018. His thesis focused on the impact of multisite transcranial Random Noise Stimulation on tinnitus.
  • ENT Specialist from the Faculty of Medicine, Damascus University, Syria, 2010. His thesis explored the repair of bilateral cleft lip in a single-stage surgery.
  • M.D. from Damascus University, Syria, 2005. His medical thesis investigated obesity and diabetes mellitus.

Research Focus

Dr. Mohsen’s research primarily centers on tinnitus and its management through innovative neuromodulation techniques. His work includes investigating the effects of transcranial Random Noise Stimulation (tRNS) on tinnitus distress and neurophysiological responses. He also explores the broader aspects of auditory processing and the development of effective audiological therapies, contributing to advancements in understanding and treating tinnitus.

Professional Journey

Dr. Mohsen’s professional career spans significant roles in both academic and clinical settings. He is the current Dean of the Faculty of Health Sciences at Damascus University and has previously served as Vice-Dean for Educational Affairs and Head of the Audiology and Speech Therapy Department. His role as a consultant and advisor in national and international organizations underscores his expertise and commitment to improving auditory healthcare.

Honors & Awards

Dr. Mohsen has been recognized for his contributions to the field of audiology through various awards and honors. His accolades include invitations as a keynote speaker at major international conferences and recognition for his research excellence and leadership in audiology and ENT.

Publications Noted & Contributions

Dr. Mohsen has authored numerous influential publications in peer-reviewed journals, with notable works on tinnitus treatment and auditory neuroscience. His research is frequently cited, reflecting its impact on the field. Key publications include studies on the efficacy of tRNS in treating tinnitus and analyses of auditory network activity, contributing significantly to the scientific understanding of auditory disorders.

Validation and Cross-Cultural Adaptation of the Arabic Version of the Ear Outcome Survey-16 (EOS-16)

  • Journal: Laryngoscope Investigative Otolaryngology
  • Publication Date: August 2024
  • DOI: 10.1002/lio2.1304
  • Contributors: Adel Azar, Samer Mohsen
  • Details: This article focuses on the validation and adaptation process of the Arabic version of the Ear Outcome Survey-16 (EOS-16), a tool designed to assess outcomes in ear-related conditions. The study ensures that the adapted survey is culturally appropriate and reliable for Arabic-speaking populations.

Diode Laser for Juvenile Recurrent Respiratory Papillomatosis: A Case Series of 13 Patients

  • Journal: Indian Journal of Otolaryngology and Head & Neck Surgery
  • Publication Date: February 2024
  • DOI: 10.1007/s12070-023-04205-2
  • Contributors: Sara Kamil, Samer Mohsen
  • Details: This case series examines the use of diode laser treatment for juvenile recurrent respiratory papillomatosis, detailing the outcomes and effectiveness based on 13 patient cases. The study provides insights into this treatment modality’s practical application and results.

An Increase in the Auditory Steady-State Response Amplitudes After a Period of Listening to Binaural Beat Stimuli in Tinnitus Patients: A Pilot Study

  • Journal: The Egyptian Journal of Otolaryngology
  • Publication Date: February 23, 2023
  • DOI: 10.1186/s43163-023-00402-6
  • Contributors: Maryam Sadeghijam, Abdollah Moossavi, Mahdi Akbari, Hamid Haghani, Abbas Yousefi, Samer Mohsen
  • Details: This pilot study investigates the effects of binaural beat stimuli on auditory steady-state response amplitudes in tinnitus patients. The findings suggest potential benefits of auditory stimulation in modulating tinnitus symptoms.

Job’s Syndrome With a Family History of Kawasaki Disease: A Case Presentation and Review of Literature

  • Journal: Disease and Diagnosis
  • Publication Date: March 30, 2021
  • DOI: 10.34172/ddj.2021.04
  • Contributors: Tamar Yared, Samer Mohsen
  • Details: This case presentation explores a patient with Job’s syndrome who also has a family history of Kawasaki disease. The article reviews relevant literature and discusses the clinical implications and connections between these conditions.

The Role of Preventive Measures or a Previously Immunized Population: A Pilot Study on Coronavirus Disease-19 in Syria

  • Journal: International Electronic Journal of Medicine
  • Publication Date: September 30, 2020
  • DOI: 10.34172/iejm.2020.18
  • Contributors: Samaher Almousa, Ammar Suleiman, Samer Mohsen
  • Details: This pilot study investigates the effectiveness of preventive measures and the impact of prior immunization on the spread of COVID-19 in Syria. The research provides insights into strategies for managing the pandemic in specific populations.

Research Timeline

Dr. Mohsen’s research timeline highlights a progression from his doctoral studies on tinnitus and neuromodulation to his current focus on advanced audiological therapies. Key milestones include his groundbreaking research on the effects of tRNS on tinnitus, his contributions to understanding auditory processing, and his ongoing projects exploring innovative treatment approaches.

Collaborations and Projects

Dr. Mohsen has collaborated with leading researchers and institutions internationally, contributing to a range of projects in tinnitus research and audiology. His collaborations include work with universities and medical centers in Iran and Syria, focusing on improving diagnostic and therapeutic methods for auditory disorders. These projects reflect his commitment to advancing the field through collaborative research and practical applications.

Strengths of the Best Researcher Award

  1. Recognition of Expertise: Dr. Samer Mohsen’s Best Researcher Award highlights his deep expertise in audiology and otolaryngology. This accolade confirms his standing as a leading researcher in the field, particularly in the study and treatment of tinnitus.
  2. Impactful Research Contributions: The award underscores the significance of Dr. Mohsen’s research, which includes pioneering work on the effects of transcranial Random Noise Stimulation (tRNS) and its applications in tinnitus management. His studies have contributed valuable insights and advancements to the field.
  3. High Citation Metrics: Dr. Mohsen’s research has been extensively cited across various journals and platforms, reflecting the broad impact and recognition of his work. The award recognizes his substantial influence on the academic community.
  4. Leadership in International Conferences: As an invited speaker and panelist at major international conferences, Dr. Mohsen has demonstrated thought leadership and has shared his innovative findings with a global audience. This exposure and engagement further solidify his reputation as a leading researcher.
  5. Contributions to Clinical Practice: Dr. Mohsen’s research has not only advanced academic knowledge but has also impacted clinical practices, particularly in the treatment of auditory disorders. His work informs best practices and improves patient outcomes in real-world settings.

Areas for Improvement

  1. Broader Research Scope: While Dr. Mohsen has made significant contributions to tinnitus research, expanding his research scope to include other auditory and ENT conditions could enhance his influence and provide a more comprehensive understanding of related disorders.
  2. Increased Interdisciplinary Collaboration: Engaging in interdisciplinary research collaborations with fields such as neurology and psychology could offer new perspectives and enrich his research findings, particularly in understanding the multifaceted nature of tinnitus.
  3. Enhanced Public Engagement: Greater outreach and public engagement regarding his research findings could help bridge the gap between academic research and practical application, increasing awareness and understanding of tinnitus and its treatments among the general population.
  4. Diversified Research Funding: Securing funding from a wider range of sources, including industry and philanthropic organizations, could support more extensive research projects and trials, potentially leading to new discoveries and innovations.
  5. Focus on Long-Term Impact Studies: Conducting longitudinal studies to assess the long-term effects and sustainability of tinnitus treatments could provide valuable insights into their efficacy and help refine therapeutic approaches.

Conclusion

Dr. Samer Mohsen’s receipt of the Best Researcher Award is a testament to his exceptional contributions to the fields of audiology and otolaryngology. His pioneering research, particularly in tinnitus management through transcranial Random Noise Stimulation (tRNS), has significantly advanced the field. While his achievements are commendable, there are opportunities for further growth and impact. Expanding the research scope, fostering interdisciplinary collaborations, enhancing public engagement, diversifying funding sources, and focusing on long-term impact studies could further elevate his contributions and influence in the field. Dr. Mohsen’s continued dedication to research and clinical practice promises to drive future advancements and improve patient outcomes in audiology.

Mussayyab Khan | Animal nutrition | Best Researcher Award

Dr.Mussayyab Khan | Animal nutrition | Best Researcher Award

Doctorate at Department of animal nutrition peshawar , Pakistan

Mussayyab Khan Khalil, born on September 1, 1997, is a Pakistani national residing in Village Pawaka, Mohalla Ali Sherzai, Tehsil & District Peshawar, Pakistan. He can be reached at +923138803099 or via email at Khanmussayyab2016@gmail.com. His passport number is ZS4158251.

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Education:

Mussayyab completed his M.Sc. in Animal Nutrition from the University of Agriculture Peshawar in 2023, achieving a CGPA of 3.71/4.00. He earned his Bachelor’s in Doctor of Veterinary Medicine (DVM) from the same institution in 2020 with a CGPA of 3.54/4.00. His higher secondary education (HSSC) and secondary school certificate (SSC) were completed at Fazaia Degree College Peshawar in 2015 and 2013, respectively.

Professional Journey:

He has accumulated significant professional experience through a research fellowship under the Agriculture Innovation Program (AIP) for Pakistan funded by USAID from 2022 to 2023. His internships include roles at the Civil Veterinary Hospital Peshawar, AVS Pets Clinic Peshawar, Halal Research Council, Veterinary Research Institute (VRI) Peshawar, and Government Cattle Breeding & Dairy Farm Charsadda.

Honors & Awards:

Mussayyab has been recognized for his academic excellence with awards such as the “HAIER LAPTOP” during his B.Sc. studies. He also holds various certificates from his internships, training workshops, and his Registered Veterinary Medical Practitioner (RVMP) certification.

Publication Top Note

Strengths

  1. Diverse Research Topics: Dr. Khan has made significant contributions across various fields, including animal nutrition, 5G technology, medical imaging, and artificial intelligence. This diversity showcases his ability to apply his expertise to different research areas.
  2. High-Impact Publications: His research has been published in reputable journals like Heliyon, Journal of Intelligent & Fuzzy Systems, and Electronics, indicating a strong presence in both specialized and broad scientific communities.
  3. Advanced Research Techniques: The use of advanced methodologies, such as dual-band MIMO antennas for 5G and CNN models for COVID-19 detection, demonstrates his commitment to incorporating cutting-edge technology into his work.
  4. Recognition and Awards: The receipt of awards such as the “HAIER LAPTOP” during his studies highlights his academic excellence and reinforces his reputation in the field.
  5. Practical Applications: His research not only contributes to academic knowledge but also has practical implications, such as improving diagnostic tools and enhancing wireless communication systems.

Areas for Improvement

  1. Focused Research Profile: While Dr. Khan’s diverse interests are impressive, a more focused research profile could help establish deeper expertise and recognition in a specific field, potentially leading to greater impact and collaboration opportunities.
  2. Increased Research Funding: Securing more research grants and funding could facilitate larger-scale studies and more significant advancements in his areas of interest.
  3. Broader Collaborative Networks: Expanding his professional network through collaborations with international researchers and institutions could enhance the scope and visibility of his work.
  4. Enhanced Outreach and Engagement: Actively engaging in conferences, seminars, and workshops could increase the dissemination of his research findings and foster greater academic and professional connections.
  5. Further Innovation in Publications: Incorporating more innovative and interdisciplinary approaches in his publications might help address emerging challenges and set new trends in his research areas.

Conclusion

Dr. Mussayyab Khan is a promising researcher with a diverse range of interests and accomplishments. His contributions to animal nutrition, medical imaging, and advanced communication technologies highlight his versatility and innovative approach. By focusing on a more specialized research area, seeking additional funding, expanding collaborative efforts, increasing outreach, and pursuing further innovation, Dr. Khan could enhance his impact and achieve even greater recognition in his field.

Ajaya Panda | Finance and Economics | Best Researcher Award

Assoc prof. Ajaya Panda | Finance and Economics | Best Researcher Award 

Associate professor at Indian  Institute of Management , India

Dr. Ajaya Kumar Panda is currently an Associate Professor of Finance at IIM Mumbai, with a robust academic background and extensive professional experience. He holds a Ph.D. from the School of Economics at the University of Hyderabad, focusing on International Stock Market Integration. Dr. Panda’s research interests span International Finance, Financial Econometrics, and Applied Corporate Finance. He has held previous academic positions at NITIE Mumbai, NIT Goa, and IBS Hyderabad, accumulating a wealth of knowledge in Analytical Finance, Investment Analysis, and Financial Management.

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Educational Qualification

Dr. Panda earned his Ph.D. from the School of Economics at the University of Hyderabad (Central University), focusing on “International Stock Market Integration: A Time Series Analysis.” He holds an M.Phil from the same institution, where his thesis was on “Exchange Rate Forecasting for India.” Additionally, he completed his M.A. in Economics from the School of Economics, University of Hyderabad.

Professional Experience

Dr. Panda currently serves as an Associate Professor (Finance) at IIM Mumbai, a position he has held since March 21, 2022. Prior to this, he was an Assistant Professor (Finance) at NITIE Mumbai from July 8, 2015, to March 21, 2022. He also worked as an Assistant Professor (Economics) at NIT Goa from July 26, 2012, to July 7, 2015, and as an Assistant Professor (Finance) at IBS-Hyderabad, IFHE from October 22, 2009, to July 24, 2012.

Publication Top Note

Title: Working Capital Management, Macroeconomic Impacts, and Firm Profitability: Evidence from Indian SMEs
Authors: AK Panda, S Nanda, P Panda
Journal: Business Perspectives and Research
Volume: 9
Issue: 1
Pages: 144-158
Year: 2021
Citations: 36

Title: An Empirical Analysis of Stock Market Interdependence and Volatility Spillover in the Stock Markets of Africa and Middle East Region
Authors: AK Panda, S Nanda, RR Paital
Journal: African Journal of Economic and Management Studies
Volume: 10
Issue: 3
Pages: 314-335
Year: 2019
Citations: 36

Title: Receptiveness of Effective Tax Rate to Firm Characteristics: An Empirical Analysis on Indian Listed Firms
Authors: AK Panda, S Nanda
Journal: Journal of Asia Business Studies
Volume: 15
Issue: 1
Pages: 198-214
Year: 2020
Citations: 29

Title: A Quantile Regression Approach to Trail Financial Performance of Manufacturing Firms
Authors: S Nanda, AK Panda
Journal: Journal of Applied Accounting Research
Volume: 20
Issue: 3
Pages: 290-310
Year: 2019
Citations: 25

Title: The Impact of Derivative Trading on Spot Market Volatility: Evidence for Indian Derivative Market
Authors: K Ray, AK Panda
Journal: Interdisciplinary Journal of Research in Business
Volume: 1
Issue: 7
Pages: 117-131
Year: 2011
Citations: 23

Strengths:

  1. Specialized Expertise: Dr. Ajaya Kumar Panda has demonstrated significant expertise in International Finance, Financial Econometrics, and Applied Corporate Finance. His focus on International Stock Market Integration showcases a deep understanding of complex financial systems.
  2. Strong Academic Background: His robust educational qualifications, including a Ph.D. from the University of Hyderabad with a focus on International Stock Market Integration, M.Phil on Exchange Rate Forecasting, and an M.A. in Economics, highlight a strong theoretical foundation in economics and finance.
  3. Extensive Professional Experience: Dr. Panda has held various academic positions at esteemed institutions such as IIM Mumbai, NITIE Mumbai, NIT Goa, and IBS Hyderabad. His experience across these institutions enriches his perspective and enhances his research quality.
  4. High-Impact Publications: His research is well-received in prominent journals, with several articles cited numerous times. For example, his paper on “Working Capital Management, Macroeconomic Impacts, and Firm Profitability” has 36 citations, indicating its significant impact on the field.
  5. Recognition and Awards: Dr. Panda’s receipt of the Best Researcher Award acknowledges his contributions and excellence in research. His well-cited publications further attest to the relevance and influence of his work.

Areas for Improvement:

  1. Increased Research Diversification: While Dr. Panda’s focus on finance is comprehensive, expanding into emerging areas of finance such as fintech or sustainable finance could diversify his research portfolio and address new trends in the field.
  2. Broader International Collaboration: Collaborating with researchers from diverse international institutions can enhance the scope and impact of his research. Increased global collaboration may provide new insights and broaden the reach of his work.
  3. Enhanced Public Engagement: Engaging more with the public through popular science articles, media appearances, or public lectures could increase the accessibility of his research and raise awareness about important financial topics.
  4. More Research on Policy Implications: While Dr. Panda’s research is robust, focusing more on policy implications and practical applications of his findings could bridge the gap between academic research and real-world financial practices.
  5. Increased Focus on Emerging Markets: Expanding his research to include more emerging markets could provide a more comprehensive view of global financial dynamics, especially given the rapid growth and economic changes in these regions.

Conclusion:

Dr. Ajaya Kumar Panda’s recognition as the Best Researcher highlights his significant contributions to the fields of finance and economics. His extensive academic background, impactful research, and professional experience establish him as a leading figure in finance research. By addressing areas for improvement, such as diversifying research topics and increasing public and international engagement, Dr. Panda can further enhance his impact and continue to contribute valuable insights to the field.

Mr. Abdel Mouneim Khemissat | Conreol Engineering | Best Researcher Award

Mr. Abdel Mouneim Khemissat | Conreol Engineering | Best Researcher Award 

Mr. Abdel Mouneim Khemissat , Glasgow Caledonian University , United Kingdom

Dr. Abdel Mouneim Khemissat is a dedicated PhD researcher in Electrical Power Engineering at Glasgow Caledonian University, where he is focused on the security analysis and mitigation of large-scale battery energy storage systems integration into the power grid 🔋. With a solid foundation in automatics control engineering from the University of Boumerdes, Algeria, his expertise spans power engineering, control systems, and energy storage technologies 🔧. His professional journey includes extensive experience as a Teaching Assistant at Glasgow Caledonian University, where he teaches various aspects of electrical engineering, including control theory, power electronics, and communication systems 📚.

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Education 🎓

  • Ph.D. in Electrical Power Engineering (05/2021 – 12/2024)
    Glasgow Caledonian University, Glasgow, United Kingdom
    Thesis: Security analysis and mitigation of large-scale Battery Energy Storage systems integration into the power grid.
    Supervisor: Professor Mohamed Emad FARRAG
  • Master’s degree in Automatics Control Engineering (09/2014 – 06/2016)
    University of Boumerdes, Boumerdes, Algeria
    Thesis: Prototyping a platform for mobile robots: Application to a self-balancing robot
    Supervisor: Dr. Hamza AKROUM
  • Bachelor’s degree in Electrical, Electronics and Automatics Engineering (09/2010 – 06/2014)
    University of Boumerdes, Boumerdes, Algeria

Work Experience 💼

  • Teaching Assistant in Electrical Engineering Department (09/2021 – present)
    Glasgow Caledonian University, Glasgow, United Kingdom

    • Control engineering, analogue and digital electronics, power electronics systems, power system operation and protection, advanced wireless communication
    • BA project supervision
  • Embedded Software Engineer (Part-time, 06/2023 – 03/2024)
    RAQIB dz (Fully remote)

    • Software product development, firmware development, IP camera implementation, firmware functional testing
  • Product Development Engineer (Part-time, 09/2021 – 11/2022)
    Invent Design Build Ltd, East Kilbride, United Kingdom

    • Medical test kit with BLE and nRF52, IoT alarm system with Z-WAVE, patents and IP analysis, firmware development of IoT sensors
  • Senior Instrumentation Engineer (06/2018 – 06/2020)
    Oasis Petroleum Service (OPS), Hassi Messaoud, Algeria

    • Metrology calibration, HART protocol, testing and calibration, team management
  • Embedded Software Engineer (03/2017 – 06/2018)
    HB Technologies SPA, Algiers, Algeria

    • Petrol Pay project, RFID solutions development, PCB design, software deployment
  • Undergraduate Engineer Trainee (03/2014 – 05/2014)
    SONATRACH DP, Ouargla, Algeria

    • Oil and gas instrumentation, DCS, SCADA, HART protocols
  • Teaching Assistant in Electrical Engineering Department (01/2017 – 05/2019)
    University of Skikda, Skikda, Algeria

    • Advanced control engineering, robotics arm control, C++ programming
  • President and Coach in Embedded Systems (09/2013 – 09/2016)
    Scientific Club ELECTRO at University of Boumerdes, Boumerdes, Algeria

    • Embedded C, microcontrollers, IoT development, PCB design, code development

Publication Top Note  :

Plateforme de prototypage rapide pour la robotique mobile : application à un robot Auto-balancé

Citation -2

Memory‐based event‐triggered control for networked control system under cyber‐attacks

Memory-based Event-Triggered Control for Networked Control System under Cyber-attacks

 

 

 

Assist Prof Dr. Saeed Ahmed | Material Chemistry Award | Best Researcher Award

Assist Prof Dr. Saeed Ahmed | Material Chemistry Award | Best Researcher Award

Assist Prof Dr. Saeed Ahmed , University of Chakwal , Pakistan

Dr. Saeed Ahmed is an accomplished academic and researcher currently serving as an Assistant Professor and Head of the Department of Chemistry at the University of Chakwal, Pakistan 📚. He earned his Ph.D. in Chemistry from Beijing University of Chemical Technology in 2019, where he focused on the design and fabrication of hierarchical porous magnesium oxide for advanced applications 🧪. His M.Phil. from the University of Engineering and Technology, Lahore, explored anti-corrosion materials, while his M.Sc. research at the University of Education, Lahore, centered on method development for pharmaceuticals 💊. Dr. Ahmed’s diverse professional experience includes roles as an R&D Incharge at Medisearch Pharmacal, a Postdoctoral Fellow at The Hong Kong University of Science and Technology, and a Quality Assurance Officer at JAWA Pharmaceutical 🔬. His research interests encompass advanced materials, adsorption, photocatalysis, water treatment reactor design, anti-corrosion, and pollutant risk assessment 🌍.

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📚 Education:

  • Ph.D. in Chemistry (2019)
    Beijing University of Chemical Technology, Beijing, China
    Project: Design, Fabrication, and Adsorption Behavior for Hierarchical Porous Magnesium Oxide
  • M.Phil. in Applied Chemistry (2016)
    University of Engineering and Technology, Lahore, Pakistan
    Project: Anti-Corrosion Behaviour of Al-Cr Doped Magnesium Ferrite Nano-material for Steel
  • M.Sc. in Chemistry (2013)
    University of Education, Lahore, Pakistan
    Project: Method Development of Esomeprazole Magnesium and Its Validation
  • B.Ed. in Education (2014)
    Allama Iqbal Open University, Islamabad, Pakistan
  • B.Sc. (2011)
    Bahauddin Zakariya University, Multan, Pakistan
  • F.Sc. (HSSC) (2009)
    B.I.S.E. Dera Ghazi Khan
  • Matric (SSC) (2007)
    B.I.S.E. Dera Ghazi Khan

💼 Professional Experience:

  • Assistant Professor (04/2022 – Present)
    Department of Chemistry, University of Chakwal, Pakistan
  • Assistant Professor (10/2021 – 04/2022)
    Department of Chemistry, University of Lahore, Pakistan
  • R&D Incharge (07/2021 – 10/2021)
    Medisearch Pharmacal Private Limited, Lahore, Pakistan
    Responsibilities: Research and evaluation of new products, development of new products, technical support, coordination of R&D activities.
  • Postdoctoral Fellow (07/2019 – 07/2021)
    The Hong Kong University of Science and Technology, Hong Kong
    Project: Adsorption Material Development and Pilot-Scale Reactor Design for River Water Treatment of Hong Kong
  • Quality Assurance Officer (04/2016 – 08/2016)
    JAWA Pharmaceutical, Lahore, Pakistan
    Responsibilities: Quality and safety assessments, compliance with ISO 9001, stability studies, training needs assessment, performance monitoring.
  • Master of Philosophy (M.Phil.) (02/2014 – 03/2016)
    University of Engineering and Technology, Lahore, Pakistan
  • Bachelor of Education (B.Ed.) (10/2012 – 12/2013)
    Allama Iqbal Open University, Islamabad, Pakistan
  • Master of Science (M.Sc.) (10/2011 – 12/2013)
    University of Education, Lahore, Pakistan

🔬 Research Interests:

  • Advanced Materials
  • Adsorption
  • Photocatalysis
  • Reactor Design for Water Treatment
  • Anti-corrosion
  • Health Risk Assessment of Pollutants

Publication top Notes :

Concentrations, pollution indices and health risk assessment of heavy metals in road dust from two urbanized cities of Pakistan: Comparing two sampling methods for heavy metals …

Citation -103

Solvent assisted synthesis of hierarchical magnesium oxide flowers for adsorption of phosphate and methyl orange: kinetic, isotherm, thermodynamic and removal mechanism

Citation -57

Recent progress on adsorption materials for phosphate removal

Citation -53

Phosphate removal from river water using a highly efficient magnetically recyclable Fe3O4/La (OH) 3 nanocomposite

Citation -52

Visible-light-driven ZnO/ZnS/MnO2 ternary nanocomposite catalyst: synthesis, characterization and photocatalytic degradation of methylene blue

Citation -48

Assoc. Prof. Dr. Jinxing Wang | carbon Materials | Best Researcher Award

Assoc. Prof. Dr. Jinxing Wang | carbon Materials | Best Researcher Award

Assoc. Prof. Dr. Jinxing Wang , Chongqing University ,China

Jinxing Wang stands as an ultimate authority in the realm of metal-air batteries, particularly in magnesium-air systems, as an Associate Professor at Chongqing University’s School of Materials Science and Engineering. With a distinguished academic journey culminating in MS and Ph.D. degrees from Chongqing University, Prof. Wang has amassed over 77 published papers, cited more than 1300 times, and secured substantial research funding amounting to USD 1 million. His research, highlighted in 41 SCI and SCIE indexed journals, spans electrocatalysis, magnesium alloys, and metal failure analysis, marking him as a pivotal figure in nano-energy battery materials. Beyond publications, his influence extends through 80 consultancy projects and global collaborations, alongside impactful presentations at major conferences and roles as a reviewer for prestigious journals. Prof. Wang’s unwavering dedication to advancing sustainable battery technologies exemplifies his leadership in materials science and engineering, solidifying his legacy in the field.

Profesional Profile:

Scopus

🎓Education:

Prof. Jinxing Wang earned both his Master of Science (MS) and Doctor of Philosophy (Ph.D.) degrees from Chongqing University, where he established a solid foundation in materials science and engineering. This educational background equipped him with the expertise to delve deeply into his research interests, particularly focusing on advancements in metal-air batteries, specifically magnesium-air systems. His academic journey at Chongqing University not only shaped his understanding of electrocatalysis, magnesium alloys, and metal failure analysis but also laid the groundwork for his prolific career in nano-energy battery materials.

🏢Work Experience:

Prof. Jinxing Wang currently holds the position of Associate Professor at Chongqing University’s School of Materials Science and Engineering, where he plays a pivotal role in both research and education. With a focus on materials science and engineering, his work spans across various aspects of battery technology, particularly specializing in magnesium-air systems within the broader context of metal-air batteries. His tenure at Chongqing University has been marked by significant contributions to the field, including extensive research into electrocatalysis, magnesium alloys, and the analysis of metal failures. As an educator, Prof. Wang not only engages in advanced research but also imparts his knowledge to students, shaping the next generation of materials scientists and engineers. His leadership at the university underscores his commitment to advancing sustainable energy solutions through innovative materials research and academic excellence.

🏅Research and Achievements:

Prof. Jinxing Wang is a highly accomplished researcher whose contributions have significantly impacted the field of materials science and engineering. With over 77 published papers garnering more than 1300 citations, his work has been prominently featured in 41 SCI and SCIE indexed journals. Prof. Wang’s research primarily focuses on electrocatalysis, magnesium alloys, and the analysis of metal failures, reflecting his expertise in advancing battery technologies, particularly in magnesium-air systems.

🏆Awards and Recognition:

Prof. Jinxing Wang’s impressive accomplishments speak volumes about his stature in the field of materials science and engineering. With a substantial publication record, including over 77 papers cited more than 1300 times and featured in prestigious SCI and SCIE indexed journals, he has established himself as a leading authority in nano-energy battery materials.Prof. Wang’s ability to secure significant research funding amounting to USD 1 million underscores his leadership and capability in advancing scientific research. His academic contributions extend beyond publications and funding, encompassing 80 consultancy projects and extensive global collaborations, which highlight his influence and expertise in the international scientific community.Moreover, Prof. Wang’s role as a reviewer for respected journals and his impactful presentations at major conferences further demonstrate his commitment to scholarly excellence and knowledge dissemination. Collectively, these achievements solidify Prof. Jinxing Wang’s pivotal role in shaping the landscape of materials science and engineering, particularly in the development of sustainable battery technologies.

Publication Top Notes:

  • First-Principles Calculations of TiB4 and TiB5 as Anodes with High Capacity for Na-Ion Batteries
    • Citations: 0
  • Achieving high strength and rapid degradation in Mg-Gd-Ni alloys by regulating LPSO phase morphology combined with extrusion
    • Citations: 14
  • Enhanced catalytic activity of ZnWO4 by nickel-doping in oxygen evolution reactions
    • Citations: 2
  • Portland cementitious coating with autogenerated oxide film and its anticorrosion behavior on magnesium alloy
    • Citations: 5
  • Research Progress and the Prospect of Damping Magnesium Alloys
    • Citations: 3

 

 

 

Dr. Mohamed Elgenedy | Electric Vehicles Award | Best Researcher Award

Dr. Mohamed Elgenedy | Electric Vehicles Award | Best Researcher Award

Dr. Mohamed Elgenedy , Glasgow Caledonian University, United Kingdom

Dr. Mohamed Elgenedy 🧑‍🔬 is a University Lecturer in Electrical Power Engineering at Glasgow Caledonian University (GCU), with extensive expertise in power electronics and renewable energy systems. He earned his PhD in Electronic and Electrical Engineering from the University of Strathclyde in 2018, following an MSc and BSc in Electrical Engineering from Alexandria University. Dr. Elgenedy’s research spans various high-impact projects, including the development of a generator array for electric buses and a renewable energy-based battery swapping station. His professional journey includes roles at Queen’s University of Belfast, Texas A&M University, and Spiretronic LLC. He is a Senior Member of IEEE and a Fellow of the Higher Education Academy (FHEA). Dr. Elgenedy has received numerous accolades, including the 2020 endorsement as a Global Talent in Power and Energy Research by the Royal Academy of Engineering and the 2018 Publishing Excellency Award from Alexandria University. 🌟🔬

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Education: 🎓

  • PhD in Electronic and Electrical Engineering (2018)
    University of Strathclyde, Glasgow, UK
  • MSc in Electrical Engineering (2010)
    Alexandria University, Alexandria, Egypt
  • BSc in Electrical Engineering (2007)
    Alexandria University, Alexandria, Egypt
    (Graduated top of the class with first-class honours)

Professional Experience: 💼

  • University Lecturer in Electrical Power Engineering (Sept 2021 – present)
    Glasgow Caledonian University, Glasgow, UK
  • Postdoctoral Research Fellow in Power Electronics (Nov 2020 – Aug 2021)
    Queen’s University of Belfast, UK
  • Postdoctoral Research Associate (Jun 2018 – Nov 2020)
    University of Strathclyde, Glasgow, UK
  • Research Associate (Dec 2013 – Jan 2015)
    Texas A&M University at Qatar, Department of Electrical & Computer Engineering
  • R&D Engineer (Jun 2011 – Dec 2013)
    Spiretronic LLC, Egyptian Branch, Houston, TX, USA

Research Projects: 🔬

  • Generator Array with Airflow Kinetic Energy Recovery System for Electric Buses (2024 – present)
    Scottish Funding Council (PI)
  • Empowerment of People with Disabilities through Eco-Energy Systems (2023 – present)
    Royal Academy of Engineering (Co-Investigator)
  • Renewable Energy-Based Battery Swapping Station Framework (2023 – present)
    British Council (PI)
  • Training Hub of Renewable Energy Technologies for Sri Lanka (2020 – 2024)
    EU Fund (Co-Investigator)
  • ESCROWS: Electrolytic-Free Single-Stage Converter for Offshore Wind Systems (2020 – 2023)
    EPSRC Research Fund (Co-Investigator)

Professional Affiliations: 🌐

  • Fellow, Higher Education Academy (FHEA)
  • Senior Member, IEEE
  • Member, IEEE Power Electronics Society (PELS)
  • Member, IEEE Industrial Electronics Society (IES)

Awards: 🏆

  • GCU REG Fund for Early Career Researchers (2022)
    Award Amount: £5,000
  • Global Talent in Power and Energy Research (2020)
    Royal Academy of Engineering, UK
  • Plaque of IEEE Senior Member Elevation (2019)
    IEEE, USA
  • Publishing Excellency Award (2018)
    Alexandria University, Egypt (Award Amount: EGP 64,000)

Publication Top Notes :

An improved fault-tolerant five-phase induction machine using a combined star/pentagon single layer stator winding connection

Citation -84

A transition arm modular multilevel universal pulse-waveform generator for electroporation applications

Citation -72

A modular multilevel voltage-boosting Marx pulse-waveform generator for electroporation applications

Citation -65

Full-bridge modular multilevel submodule-based high-voltage bipolar pulse generator with low-voltage dc, input for pulsed electric field applications

Citation -48

A space vector PWM scheme for five-phase current-source converters

Citation -48