Rajeshreebhye Mahadea Nemdharry | Environmental effects | Research Excellence Award
Mrs. Rajeshreebhye Mahadea Nemdharry at Mauritius Sugarcane Industry Research Institute (MSIRI) | Mauritius
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Dr. Sudipta Chattopadhyay is a distinguished academic and researcher in the field of Antenna and Applied Electromagnetics. He is currently a Professor in the Department of Electronics and Communication Engineering at Mizoram University, a Central University under the Government of India. With advanced degrees including a Ph.D. in Antenna and Electromagnetics and a Doctor of Science in Applied Electromagnetics and Radiation Science (Honoris Causa), Prof. Chattopadhyay has contributed extensively to antenna engineering, electromagnetic theory, and radiation science. His research output, academic leadership, and global recognitions mark him as a leading figure in engineering education and research.
Dr. Chattopadhyay completed his early education in West Bengal and pursued higher studies at the University of Calcutta, specializing in Physics, Radio Physics, and Electronics. He earned his Bachelor’s, Master’s, and Doctoral degrees with distinction, completing his Ph.D. on theoretical and experimental aspects of microstrip patch antennas. Later, he received a Doctor of Science (Honoris Causa) in Applied Electromagnetics and Radiation Science from an international university in recognition of his pioneering research contributions.
Dr. Chattopadhyay began his career in teaching at the Siliguri Institute of Technology, where he held positions ranging from Lecturer to Associate Professor. He later joined Mizoram University as an Associate Professor and is now serving as a Professor in the Department of Electronics and Communication Engineering. He has also held leadership positions including Head of Department and Dean of the School of Engineering and Technology. His experience spans teaching, research, mentoring, and academic administration.
Dr. Chattopadhyay has demonstrated exceptional commitment to professional growth through his teaching, research, and leadership roles. He has published widely in reputed journals, delivered invited talks at national and international platforms, and supervised numerous research projects. His academic development is complemented by his editorial contributions to journals in the field of antennas and electromagnetics, as well as his active role as a reviewer for leading IEEE and IET publications. His involvement in organizing conferences, guiding research initiatives, and building academic collaborations reflects his dedication to advancing knowledge, shaping future engineers, and promoting innovation in applied electromagnetics.
Dr. Chattopadhyay’s research is centered on applied electromagnetics, with a strong emphasis on antenna engineering, microstrip patch antennas, defected ground structures, metamaterials, and radiation science. His studies focus on theoretical modeling, experimental validation, and structural design of antennas with enhanced performance characteristics such as improved gain, bandwidth, and reduced cross-polarization. He is also engaged in exploring advanced electromagnetic structures for wireless communication and defense applications. By integrating innovation with practical utility, his work addresses both academic challenges and real-world needs, contributing significantly to the development of next-generation antenna systems and electromagnetic applications.
Dr. Chattopadhyay has received numerous awards and honors in recognition of his outstanding academic and research contributions. He has been honored with prestigious fellowships from national and international societies, including fellowships of professional engineering bodies and international research organizations. His biography has been featured in several global directories such as Marquis Who’s Who and the International Biographical Centre, UK. He has received lifetime achievement awards, best researcher recognitions, and international fellowships for his pioneering work in antenna engineering and applied electromagnetics. His selection as a Royal London Fellow, World Research Fellow of London, and recipient of the Outstanding Scientist Award further highlight his international recognition.
Title: Rectangular microstrip antenna on slot-type defected ground for reduced cross-polarized radiation
Cited By: 90
Year: 2015
Title: Rectangular microstrip patch on a composite dielectric substrate for high-gain wide-beam radiation patterns
Cited By: 73
Year: 2009
Title: Physical and quantitative analysis of compact rectangular microstrip antenna with shorted non-radiating edges for reduced cross-polarized radiation using modified cavity model
Cited By: 62
Year: 2014
Title: Rectangular microstrips with variable air gap and varying aspect ratio: improved formulations and experiments
Cited By: 58
Year: 2009
Title: Improved polarization purity for circular microstrip antenna with defected patch surface
Cited By: 54
Year: 2016
Title: Estimation of gain enhancement replacing PTFE by air substrate in a microstrip patch antenna [antenna designer’s notebook]
Cited By: 54
Year: 2010
In conclusion, Prof. Sudipta Chattopadhyay is an eminent academician and researcher whose work in antennas and applied electromagnetics has gained global recognition. His journey from early education in West Bengal to becoming a Professor at Mizoram University reflects a career of dedication, innovation, and scholarly excellence. With his extensive teaching experience, leadership roles, research publications, and international awards, he has significantly advanced both the theoretical and practical dimensions of electromagnetic science. Prof. Chattopadhyay’s career exemplifies a lifelong commitment to research, education, and innovation, positioning him as a leading figure in the field of antenna engineering.
Dr. Ziyu Li is a researcher at the North China University of Water Resources and Electric Power, specializing in water resources management and hydraulic engineering safety. He holds a PhD from the same institution and has contributed to several national and provincial-level projects. His research integrates advanced monitoring technologies, computational modeling, and environmental safety analysis to improve the performance, stability, and sustainability of hydraulic structures. With multiple publications in leading journals such as Water Research X and Water Resources Management, Dr. Li’s work provides technical foundations for enhancing the safety and efficiency of water resource systems in China and beyond.
Dr. Ziyu Li obtained his PhD in Engineering from the North China University of Water Resources and Electric Power, where he developed expertise in hydraulic structures, water management, and environmental monitoring.
Dr. Li has led and participated in numerous research projects funded by national and provincial programs, focusing on hydraulic engineering safety, vibration monitoring, and rainfall prediction. He has authored articles in indexed journals, contributed to water resources innovation projects, and collaborated with multiple research teams across China. His professional experience spans structural monitoring, environmental safety, and computational modeling, supporting sustainable water resource utilization.
Dr. Li has consistently advanced his professional growth through active participation in major national and provincial research initiatives. He has contributed to the development of innovative methodologies for vibration analysis, rainfall prediction, and hydrological data imputation, combining computational techniques with real-world applications. As a principal and collaborative researcher, he has enhanced his expertise by engaging with interdisciplinary teams and applying his findings to hydraulic safety and environmental sustainability. His professional development also includes publishing in high-impact journals, contributing to research innovation, and applying his knowledge to industry-related projects, reinforcing his position as a dedicated and impactful researcher in his field.
Dr. Li’s research is centered on hydraulic engineering safety monitoring , environmental science , and sustainable water resource management . His work integrates advanced computational models , such as entropy analysis and machine learning, with structural monitoring technologies to improve the safety and reliability of dams, pipelines, and hydropower facilities. He also develops predictive models for rainfall and hydrological data to support climate resilience and resource planning. By combining environmental safety with engineering innovation, his research contributes to the long-term stability, efficiency, and ecological sustainability of water resources systems, bridging science, engineering, and environmental protection.
Dr. Ziyu Li has been recognized for his active contributions to water resources engineering and safety monitoring through involvement in prestigious research programs, including the National Key Research and Development Program of China, the National Natural Science Foundation of China, and several provincial-level innovation projects. He has published in internationally indexed journals and developed patentable innovations in hydraulic monitoring. His recognition also extends to collaborative roles in high-impact projects supporting water management and environmental protection. His consistent research contributions demonstrate his standing as an emerging leader in hydraulic engineering and sustainable water resource management.
Title: The Method for Determining Optimal Analysis Length of Vibration Data Based on Improved Multiscale Permutation Entropy
Year: 2021
Title: Study on Vibration-Transmission-Path Identification Method for Hydropower Houses Based on CEEMDAN-SVD-TE
Year: 2022
Title: Study on Vibration Characteristics of the Dike Crossing Pipeline Based on EWT and CWT
Year: 2024
Title: A Novel Coupled Model for Monthly Rainfall Prediction Based on ESMD-EWT-SVD-LSTM
Year: 2024
Title: The Superior Coupled Model with Innovative Strategy for Accurate Imputation of Missing Hydrological Monitoring Data in Water Research – A Case of Groundwater Level Data
Year: 2025
Dr. Ziyu Li has built a strong academic and research portfolio that bridges engineering, technology, and environmental sustainability. Through advanced modeling, monitoring, and predictive analysis, he has enhanced the safety and resilience of hydraulic infrastructure while supporting efficient water management. His contributions reflect both academic excellence and real-world impact, positioning him as a promising researcher dedicated to advancing sustainable solutions for water resources and environmental protection.
Dr. R. Jeba Beula 👩🔬 is an Associate Professor of Physics at Rathinam College of Arts and Science, Coimbatore 🇮🇳. With a strong academic foundation and over 15 years of teaching experience 📚, she excels in both theoretical and practical physics instruction, especially in renewable energy and material sciences ☀️🔬. Her expertise includes solar cell technologies, thin film deposition, and multiferroics. She is actively involved in curriculum development, academic leadership, and quality assurance for accreditations like NAAC and NBA ✅. Passionate about student mentorship 🤝 and interdisciplinary collaboration, Dr. Beula continues to contribute meaningfully to education and applied research 🌱🔧.
Education & Experience 🎓 Education:
Ph.D. in Physics (Dye Sensitized Solar Cells), Karunya Institute of Technology and Sciences, Coimbatore – 🎖️ Highly Commended
M.Phil in Physics (Multiferroics), Manonmaniam Sundaranar University – 📅 Nov 2018 | 🏅 First Class
M.Sc in Physics, Sarah Tucker College, MS University – 📅 Nov 2008 | 🏅 First Class
B.Sc in Physics, Rani Anna Govt. College, MS University – 📅 Apr 2007 | 🏅 First Class
🧑🏫 Work Experience:
Assistant Professor, Karunya Institute of Technology and Sciences – 🗓️ Aug 2008 to Apr 2024
Associate Professor, Rathinam College of Arts and Science – 🗓️ May 2024 to Present
Total Experience – 🕒 15 Years 10 Months
Dr. R. Jeba Beula, Associate Professor in the Department of Physics at Rathinam College of Arts and Science, Coimbatore, India, stands out as an outstanding candidate for the Best Researcher Award. With over 15 years of experience in academia and research, Dr. Beula has demonstrated consistent excellence in the fields of thin film physics, solar energy research, and dye-sensitized solar cells, significantly advancing materials science with both theoretical and applied contributions.
Professional DevelopmentDr. Jeba Beula is deeply committed to academic excellence and continuous professional growth 🎓🔬. She has conducted five hands-on workshops and one faculty development program 🛠️📚, and is trained in Outcome-Based Education and the Choice-Based Credit System 🧭. Actively engaged in curriculum development and modern teaching methodologies, she integrates technology to enrich classroom engagement 📱💡. Her contributions to NAAC and NBA accreditation processes reflect her expertise in academic quality assurance 🏛️✅. Her strong administrative and mentoring skills support both departmental goals and individual student growth, reflecting a passion for lifelong learning and institutional advancement 📘🌟.
Research Focus Dr. Jeba Beula’s research focuses on renewable energy materials and thin film technology 🌞🧪. Her Ph.D. research on Dye Sensitized Solar Cells and expertise in thermoelectric materials underscore her commitment to sustainable energy solutions 🌱⚡. She works with various deposition techniques such as PVD, sputtering, spin coating, and spray coating for nanomaterial fabrication 🔬🔧. Her interdisciplinary interest spans materials physics, nano-electronics, and energy harvesting. Through mentoring and collaboration, she contributes to developing innovative materials for real-world energy challenges, while also expanding her research scope across forensic optics and environmental studies 🔍♻️.
Awards & Honors 🥇 Recognized for academic excellence and contribution to quality assurance in NAAC/NBA processes
🎖️ Highly Commended Ph.D. for outstanding research in solar cell technology
🛠️ Organized 5 workshops and 1 FDP to advance scientific skills and teaching practices
📚 Served as Department Library In-Charge, facilitating resource and knowledge management
👩🏫 Acknowledged for versatile teaching across interdisciplinary programs including physics, forensic science, and optometry
☀️ Enhanced charge transfer and stability in heterojunction perovskite solar cells with optimized Se/CuSe multi-layer hole transport layer using physical vapor deposition technique, Journal of Physics and Chemistry of Solids, 2025 📅
🧪 Deposition and characterization of ZnO/CdSe/SnSe ternary thin film based photocatalyst for enhanced visible light-driven photodegradation of model pollutants, Journal of Sol-Gel Science and Technology, 2024 📅
☠️ Impact of Venomous Agent X (VX) adsorption on structural and electronic properties of BN nanosheet, nanotube and nanocage – A DFT-D3 study, Journal of Cluster Science, 2024 📅
💊 Theoretical insights on the interaction between p-synephrine and Metformin: A DFT, QTAIM and Drug-Likeness investigation, Computational and Theoretical Chemistry, 2024 📅
⚛️ Synergistic effects of Co-Mn co-doping on structural and optical properties of TiO₂ nanospheres: Dual functions for DSSC photoanodes and photocatalyst, Journal of Alloys and Compounds, 2024 📅
🔆 Structural and opto-electronic engineering with ZnS ETL via PVD technique for efficient and durable heterojunction perovskite solar cells, Optical Materials, 2024 📅
🔋 Bandgap engineering of CuO/TiO₂ nanocomposites and their synergistic effect on dye-sensitized solar cell performance, Optical Materials, 2024 📅
🧫 Adsorption behavior of VX nerve agent on X₁₂Y₁₂ nanocages: A density functional theory study, Structural Chemistry, 2023 📅


📌 Dalian Ocean University (2022 – Present) – Master’s in Resource Utilization and Plant Protection (Student Union Minister)
📌 Shandong First Medical University (2021 – 2023) – Bachelor’s in Pharmacy
📌 Qilu Medical College (2017 – 2020) – Associate Degree in Pharmacy
🔬 Liaoning Marine Ranching Company (Oct 2023 – Dec 2023) – Conducted marine environmental surveys, fish dissection, and organism identification
🔬 Dalian Marine Island Company (May 2024 – Aug 2024) – Researched artificial reefs, benthic organisms, and marine environments
🔬 Project Participation (Aug 2024 – Present) – Conducting marine resource assessments across multiple coastal regions
Ms. YAN Jiamin is a distinguished researcher recognized for his outstanding contributions to marine ecology, sustainable marine ranching, and environmental resource utilization. His innovative research and development efforts in the field of marine resource conservation have earned him recognition in cutting-edge ecological restoration and marine sustainability projects. His pioneering work in marine biodiversity assessment, artificial reef ecosystems, and automated environmental monitoring makes him a deserving recipient of the Research and Development Award and a strong candidate for the Best Researcher Award.


Yan Jiamin is actively engaged in the advancement of marine ecological research and sustainable marine resource utilization. Her participation in national and international conferences, including the International Conference on Modern Marine Ranching, reflects her commitment to professional growth. She has co-authored multiple scientific publications and is involved in the development of software for marine environmental monitoring. Through hands-on fieldwork and laboratory analysis, she explores the interactions between marine organisms and artificial reef systems. Her expertise in interdisciplinary research, combining marine biology with ecological conservation, makes her a key contributor to modern marine ranching advancements. 🐠🌿🔬
🏅 Liaoning Smart Agriculture Event “Decoding Freshness” – Second Prize
🏅 Graduate Scholarships at Dalian Ocean University – Second Prize, Third Prize, and “Three Good Student” Title
🏅 Third Author in Liaoning Provincial Project – Research on Benthic Foraminifera using DNA Metabarcoding
🏅 Second Prize at 2024 International Conference on Modern Marine Ranching
🏅 12 Awards in Internet+ and Innovation Projects
🏅 Internet+ Silver Award – Offshore Wind Farm + Recreational Fishing Marine Ranching Integration Project
🏅 Silver Award – Optimization Technology of Three-Dimensional Marine Ranching Space
Mr. Jianlin Zhang is an esteemed academic specializing in environmental research at Jinan University, China. With a robust educational background and professional expertise in environmental science, Mr. Zhang is dedicated to advancing knowledge and solutions in this field. His research focuses on catalytic ozonation, ozone advanced oxidation processes, and ceramic membrane technology, aiming to enhance water and wastewater treatment efficiency while promoting environmental sustainability. His contributions underscore his commitment to developing innovative solutions for environmental challenges, making him a valuable asset in the field of environmental science and research at Jinan University.
Mr. Jianlin Zhang is an esteemed academic specializing in environmental research at Jinan University. His educational background and professional expertise are focused on advancing knowledge and solutions in environmental science. With a robust foundation in research methodologies and environmental studies, Mr. Zhang contributes significantly to the university’s academic endeavors and research initiatives aimed at addressing environmental challenges. His commitment to environmental sustainability and his role in fostering innovative research make him a valuable asset in the field of environmental science at Jinan University.
Mr. Jianlin Zhang is an accomplished researcher with expertise in catalytic ozonation, ozone advanced oxidation processes, and ceramic membrane technology. His research focuses on innovative methods for water and wastewater treatment, particularly in enhancing pollutant removal efficiency and promoting environmental sustainability. At Jinan University, Mr. Zhang contributes significantly to advancing knowledge in these specialized areas, addressing critical environmental challenges through his dedication to cutting-edge research and academic excellence. His contributions in catalytic ozonation and ceramic membrane applications underscore his commitment to developing sustainable solutions for water treatment and environmental protection.