Nazish Jabeen | Polymer-Matrix composites | Innovative Research Award

Innovative Research Award

Nazish Jabeen
Affiliation Institute of Material Science, University of Valencia
Country Spain
Scopus ID 57518368200
Documents 9
Citations 266
h-index 5
Subject Area Polymer-Matrix Composites
Event Global Composite Awards
ORCID 0000-0002-6861-7766

Nazish Jabeen

Institution: Institute of Material Science, University of Valencia, Spain

The Innovative Research Award recognizes scholarly excellence and sustained scientific contributions in advanced composite materials and polymer engineering. Nazish Jabeen has established a research profile centered on polymer-matrix composites, multifunctional nanocomposites, sustainable materials engineering, and advanced material characterization. Her work contributes to improving material performance, structural functionality, and engineering applications through interdisciplinary research involving polymer science, nanotechnology, and composite manufacturing.[1]

Abstract

Nazish Jabeen conducts research focused on polymer-matrix composites, multifunctional nanocomposite systems, sustainable materials, and advanced manufacturing technologies. Her investigations examine the relationships between composition, processing, microstructure, and material performance while supporting applications in structural engineering, energy technologies, environmental sustainability, and functional materials. The integration of polymer science with nanotechnology contributes to the development of lightweight, durable, and multifunctional composite systems suitable for modern engineering challenges.[1]

Keywords

Polymer-Matrix Composites, Nanocomposites, Composite Engineering, Sustainable Materials, Functional Materials, Advanced Manufacturing, Materials Characterization, Polymer Science, Materials Engineering, Innovative Research

Introduction

Polymer-matrix composites have become essential materials across aerospace, automotive, construction, biomedical, and energy industries because of their favorable mechanical properties, lightweight nature, and design flexibility. Ongoing research seeks to improve durability, multifunctionality, recyclability, and environmental performance while incorporating emerging nanomaterials and sustainable processing methods. Researchers working in this field contribute to scientific understanding and technological innovation through experimental investigations and interdisciplinary collaboration.[2]

Research Profile

Nazish Jabeen’s research activities encompass polymer science, advanced composite materials, nanotechnology, multifunctional composites, and materials characterization. Her work investigates the incorporation of nanoscale reinforcements into polymer matrices to improve mechanical performance, thermal stability, electrical conductivity, and functional properties. Research efforts also include sustainable composite development, innovative processing techniques, and characterization methodologies that support both scientific advancement and industrial implementation.[1]

Research Contributions

Development of advanced polymer-matrix composite materials for engineering applications. Investigation of multifunctional nanocomposites with enhanced physical and mechanical properties. Research on sustainable composite manufacturing and environmentally responsible material systems. Evaluation of structure–property relationships using advanced characterization techniques. Contribution to interdisciplinary materials science through peer-reviewed scientific publications.

Publications

Research publications indexed in Scopus demonstrate continued contributions to polymer composites, multifunctional materials, nanotechnology, and advanced materials engineering. These scholarly works contribute to the international literature through experimental investigations, material optimization studies, and interdisciplinary collaborations.[1]

 

Research Impact

The scientific impact of Nazish Jabeen’s research is reflected through publications indexed in internationally recognized databases and research directed toward improving composite performance, sustainability, and multifunctionality. Her work supports continued innovation in polymer engineering while contributing knowledge applicable to industrial manufacturing, materials development, and future composite technologies.[1]

Award Suitability

Based on documented scholarly activity, recognized publication record, and sustained research contributions within polymer-matrix composites and advanced materials engineering, Nazish Jabeen demonstrates characteristics consistent with the objectives of the Innovative Research Award presented through the Global Composite Awards. Her interdisciplinary research portfolio illustrates continued commitment to scientific excellence, technological advancement, and international research collaboration.[1]

Conclusion

Nazish Jabeen has developed an academic profile focused on polymer-matrix composites, multifunctional materials, and sustainable engineering solutions. Her research integrates materials science, nanotechnology, and polymer engineering to address contemporary scientific challenges while contributing to internationally recognized research outputs. These activities collectively support consideration for academic recognition within the field of advanced composite materials.[1]

References

  1. Elsevier. (2026). Scopus author details: Nazish Jabeen, Author ID 57518368200. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57518368200
  2. DOI Foundation. Representative publication related to advanced polymer composite materials.
    https://doi.org/10.1016/j.compositesa.2020.106161
  3. Global Composite Awards. Official Award Website.
    https://globalcompositeawards.com/

Liqin Ge | Metal-Matrix Composites | Innovative Research Award

Innovative Research Award

Liqin Ge
Southeast University, China
Β  Β  Β  Β  Β  Β  Β  Β  Β  Β  Β  Β  Liqin Ge
Affiliation Southeast University
Country China
Scopus ID 7101751978
Documents 122
Citations 2372
h-index 28
Subject Area Metal-Matrix Composites
Event Global Composite Awards

Liqin Ge is a researcher affiliated with Southeast University, China, whose scholarly work is associated with the field of metal-matrix composites and advanced composite engineering. Through contributions to materials processing, microstructural optimization, and performance evaluation, the researcher has participated in studies addressing the development of high-performance composite materials for engineering applications. Academic outputs indexed through international citation databases demonstrate engagement with contemporary research themes in composite science and materials engineering.[1]

Abstract

Liqin Ge has developed a research profile centered on metal-matrix composites, emphasizing material design, microstructural control, manufacturing optimization, and mechanical performance evaluation. The research contributes to understanding how advanced composite systems can improve strength, durability, thermal stability, and functional reliability in engineering applications. Through peer-reviewed publications indexed in international databases, the researcher has participated in investigations supporting the advancement of composite technologies for industrial and scientific use. These contributions demonstrate sustained engagement with materials science research and align with contemporary developments in composite engineering and multidisciplinary materials innovation.[1][2]

Keywords

  • Metal-Matrix Composites
  • Composite Materials
  • Materials Engineering
  • Microstructural Analysis
  • Mechanical Properties
  • Advanced Manufacturing
  • Composite Processing
  • Materials Characterization

Introduction

Metal-matrix composites represent an important area of materials science because they combine metallic matrices with reinforcing phases to achieve improved performance. Liqin Ge’s research activities contribute to this field through investigations focused on processing methods, structural optimization, and material behavior under engineering conditions.[1]

Research Profile

Affiliated with Southeast University, Liqin Ge maintains a scholarly profile associated with composite materials research. Publications indexed in Scopus indicate engagement with advanced materials engineering, including studies related to composite fabrication, characterization techniques, and performance assessment relevant to modern industrial applications.[1]

Research Contributions

The research contributions of Liqin Ge include investigations into composite material development, microstructure-property relationships, and manufacturing improvements. These studies support efforts to enhance mechanical strength, durability, and functional performance while contributing knowledge that informs the design of advanced engineering materials.[2]

Publications

Published research associated with Liqin Ge reflects participation in peer-reviewed scientific literature addressing composite materials and materials engineering. The publication record demonstrates ongoing academic engagement and dissemination of findings through internationally recognized scholarly communication channels.[1][3]

Research Impact

Research outputs contribute to the broader understanding of composite material performance and engineering reliability. By addressing material optimization and characterization, the work supports academic inquiry and practical applications across sectors where lightweight, durable, and high-performance materials are increasingly important.[2]

Award Suitability

Liqin Ge’s documented contributions to metal-matrix composites, scholarly publications, and participation in advancing materials engineering align with the objectives of the Innovative Research Award. The research profile demonstrates sustained academic activity and relevance to contemporary developments in composite science.[4]

Conclusion

Liqin Ge has established a research presence within the field of metal-matrix composites through scholarly publications and contributions to materials engineering. The body of work reflects continuing engagement with composite technologies and supports ongoing advancement within the broader materials science community.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Liqin Ge, Author ID 7101751978. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=7101751978
  2. Liang, Y., Li, W., Tan, X., Chen, N., Feng, D., Tao, Y., Wu, X., Liu, L., & Ge, L. (Year). Self-sacrificing templated-derived chitosan microcapsules for targeted drug delivery in thrombolytic therapy. https://pubmed.ncbi.nlm.nih.gov/41748029/
  3. ResearchGate. (n.d.). Liqin GeΒ research profile and scholarly outputs.
    https://www.researchgate.net/profile/Liqin-Ge-2
  4. Global Composite Awards. (n.d.). Innovative Research Award and recognition program.
    https://globalcompositeawards.com/

Sofia Pacheco | Polymer Matrix Composites | Research Excellence Award

Sofia Pacheco | Polymer Matrix Composites | Research Excellence Award

Ms. Sofia Pacheco at Faculty of Engineering – University of Porto | Portugal

Sofia Pacheco is an early-career researcher in applied physics and biomaterials with a growing focus on biomedical and wound-healing applications. She completed her Bachelor’s degree in Physics at the University of Aveiro (2022–2025) and is currently pursuing a Master’s degree at the University of Porto (since September 2025). Her research interests lie at the intersection of physics, materials science, and biomedical engineering, particularly the development and characterization of functional biomaterials for therapeutic use. Sofia is the author of a 2025 peer-reviewed journal article published in Gels titled β€œImpact of CeOβ‚‚-Doped Bioactive Glass on the Properties of CMC/PEG Hydrogels Intended for Wound Treatment,” where she investigated the effects of cerium oxide–doped bioactive glass on hydrogel performance. This work highlights her expertise in hydrogel systems, bioactive materials, and experimental materials characterization. Through multidisciplinary collaboration, she has developed strong analytical and research skills, positioning her as a promising researcher in advanced biomaterials for regenerative and wound care applications.


ORCID

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Rosa Martha PΓ©rez GutiΓ©rrez | Metal Matrix Composites | Breakthrough Research Award

Rosa Martha PΓ©rez GutiΓ©rrez | Metal Matrix Composites | Breakthrough Research Award

Dr. Rosa Martha PΓ©rez GutiΓ©rrez | Instituto PolitΓ©cnico Nacional | Mexico

Dr. Rosa Martha PΓ©rez GutiΓ©rrez is a distinguished Mexican scientist with a lifelong dedication to biological sciences, pharmacognosy, and natural product research. She earned her Bachelor’s degree in Industrial Pharmaceutical Chemistry from the Escuela Nacional de Ciencias BiolΓ³gicas, Instituto PolitΓ©cnico Nacional (IPN) between 1961 and 1964, and later completed her Doctorate in Biological Sciences at Universidad AutΓ³noma Metropolitana-Xochimilco in 1997, graduating with the Medal of Merit and recognition as the first doctoral graduate of her program. Over her illustrious career, she has served in prominent teaching and research roles across several prestigious institutions, including the Escuela Nacional de Ciencias BiolΓ³gicas, Universidad Nacional AutΓ³noma de MΓ©xico (UNAM), Universidad La Salle, and IPN’s Escuela Superior de IngenierΓ­a QuΓ­mica e Industrias Extractivas (ESIQIE), where she continues as Head of the Natural Products Research Laboratory. Dr. PΓ©rez GutiΓ©rrez has made remarkable contributions as a professor of Organic Chemistry, Phytochemistry, and Toxicology, and has organized and presented numerous national and international courses and conferences on mass spectrometry, environmental contamination, and bioactive compounds. Her pioneering research, supported by CONACYT and other agencies, has explored natural antioxidants, antidiabetic and anti-obesity agents, and the biosynthesis of silver nanoparticles with biomedical applications. She has authored and coordinated various scientific projects focused on Mexican medicinal plants, marine organisms, and phytochemicals, contributing significantly to pharmacological innovation. Beyond her research, she has served on editorial boards of leading journals such as Pharmacognosy Magazine and Pharmacognosy Research and participated in national scientific committees and award juries. Her international influence is reflected through invited lectures in Poland and Spain, highlighting her role as a global ambassador of Mexican natural product science. Through her academic excellence and pioneering spirit, Dr. PΓ©rez GutiΓ©rrez has become a trailblazer and mentor in biological and pharmaceutical research in Latin America.

Profile: Scopus | Googlescholar

Featured PublicationsΒ 

PΓ©rez GutiΓ©rrez, R. M., TΓ©llez GΓ³mez, J., Mota Flores, J. M., Corea TΓ©llez, M., & MuΓ±iz RamΓ­rez, A. (2025). Baicalin–Myricetin-coated selenium nanoparticles mitigate pathology in an AΞ²1-42 mice model of Alzheimer’s disease. Pharmaceuticals, 18(9), 1391.

MuΓ±iz-RamΓ­rez, A., LΓ³pez, B. A., & PΓ©rez GutiΓ©rrez, R. M. (2025). Starch biopolymer functionalized with Ipomoea batatas extract: A natural system for bioactive delivery in type II diabetes. Current Drug Delivery.

GarcΓ­a-Campoy, A. H., PΓ©rez GutiΓ©rrez, R. M., GarcΓ­a BΓ‘ez, E. V., & MuΓ±iz-RamΓ­rez, A. (2024). Methanolic extract of Tillandsia recurvata reduces blood glucose, triglycerides, and cholesterol levels. Botanical Sciences, 102(4), 1251–1264.

PΓ©rez GutiΓ©rrez, R. M., RodrΓ­guez-Serrano, L. M., Laguna-Chimal, J. F., de la Luz Corea, M., Paredes-Carrera, S. P., & TΓ©llez GΓ³mez, J. (2024). Geniposide and harpagoside functionalized cerium oxide nanoparticles as a potential neuroprotective. International Journal of Molecular Sciences, 25(8), 4262.

GonzΓ‘lez-Anota, D. E., Paredes-Carrera, S. P., PΓ©rez-GutiΓ©rrez, R. M., Arciniega-Caballero, B., Borja-Urby, R., SΓ‘nchez-Ochoa, J. C., & Rojas-GarcΓ­a, E. (2023). Green synthesis by microwave irradiation of TiOβ‚‚ using Cinnamomum verum and the application in photocatalysis. Journal of Chemistry, 2023, Article 2245685.

Aricson Pereira | advanced composites | Manufacturing Excellence Award

Aricson Pereira | advanced composites | Manufacturing Excellence Award

Mr.Aricson Pereira , Procept Biorobotics , United States.

Mr.Aricson Pereira is a chemical engineer and researcher with expertise in advanced materials, nanotechnology, and sustainable engineering. He holds a Master’s in Chemical Engineering from the University of Louisiana at Lafayette and a Bachelor’s from Pune University. Passionate about innovation, he has contributed extensively to high-impact research in metamaterials, MOFs, and nanofabrication. His work spans diverse applications, from electrorheology to AI-based thermal management in EVs. Currently pursuing a Project Management Certification at UC Berkeley, he continues to explore cutting-edge advancements in chemical engineering and material sciences. His research contributions have earned recognition in reputed journals and international conferences. πŸ“šπŸ†

Publication Profile

Orcid
Scopus
Google Scholar

Education & ExperienceΒ πŸŽ“πŸ’Ό

βœ…Β Master of Science in Chemical Engineering – University of Louisiana at Lafayette (2012-2014)
βœ…Β Bachelor of Engineering in Chemical Engineering – Pune University (2005-2009)
βœ…Β Pursuing Project Management Certification – UC Berkeley
βœ…Β Researcher & Author – Published in high-impact journals (Springer, De Gruyter, ES Energy & Environment)
βœ…Β Conference Presenter – Presented research at IEOM conferences in Washington DC, Germany, Tokyo, and Sydney
βœ…Β Industrial Experience – Focused on sustainable materials, AI-driven equipment monitoring, and advanced composites

Suitability Summary

Mr.Aricson Pereira, a distinguished chemical engineer, is a deserving candidate for the Manufacturing Excellence Award, recognizing his groundbreaking contributions to nanomaterials, sustainable manufacturing, and AI-driven industrial advancements. With an extensive portfolio of high-impact research publications, international conference presentations, and academic mentorship, Pereira has made significant strides in material science, energy efficiency, and smart manufacturing.

Professional DevelopmentΒ πŸš€πŸ“–

Mr.Aricson Pereira is committed to professional growth through research, innovation, and continuous learning. With expertise in AI-driven chemical processes, metamaterials, and sustainable engineering, he has contributed significantly to high-impact journals and global conferences. His research on nanotechnology, electrorheology, and AI-assisted asset monitoring showcases his multidisciplinary approach. Currently advancing his knowledge through a Project Management Certification at UC Berkeley, he actively collaborates with experts worldwide. Aricson’s dedication to scientific advancements extends beyond academia, as he explores industrial applications of novel materials in energy storage, healthcare, and environmental sustainability. πŸŒ±πŸ”¬πŸ“Š

Research FocusΒ πŸ”πŸ§ͺ

Mr.Aricson Pereira research spans multiple cutting-edge domains in chemical and material engineering. His work on MOFs (Metal-Organic Frameworks)Β explores their potential for mitigating air pollution. InΒ high-entropy materials, he investigates unique applications in advanced composites. His contributions toΒ electrorheologyΒ involve nanodiamond/PDMS nanofluids and their behavior under oscillatory shear. He also exploresΒ metamaterials and AI-based predictionsΒ for selective reflective films. His research inΒ battery thermal managementΒ for EVs andΒ smart materials for biomedical applicationsΒ underscores his multidisciplinary expertise. Aricson continues to push the boundaries of sustainable engineering, leveraging AI for innovative solutions in material science.Β πŸ”¬βš‘πŸŒ

Awards & HonorsΒ πŸ†πŸŽ–οΈ

πŸ…Β Co-Author of High-Impact Research Publications – Advanced Composites & Hybrid Materials (IF 23.1)
πŸ…Β Recognized Speaker at International Conferences – IEOM (Washington DC, Germany, Tokyo, Sydney)
πŸ…Β Published Research on AI-Driven Equipment Monitoring & ElectrorheologyΒ in leading journals
πŸ…Β Best Poster Presentation – AIChE Annual Meeting on Nanodiamond Rheology
πŸ…Β Contributor to Sustainable Engineering Innovations – Transforming Waste Thermoplastics into Petrochemicals
πŸ…Β Published Work in Top-Tier Journals – ES Energy & Environment, De Gruyter, and Springer

Publication Top Notes

  • Progress of MOFs for Air Pollution MitigationΒ (2024) – Cited by: XXΒ πŸŒΒ πŸ­Β πŸ”¬
  • High-Entropy Materials and Their Unique ApplicationsΒ (2024) – Cited by: XXΒ πŸ†Β πŸ“„
  • Electrorheology of Diamond/PDMS NanofluidsΒ (2024) – Impact Factor: 5.6Β πŸ§ͺ
  • Effect of Absorber Layer Thickness on Perovskite Solar CellsΒ (2025) – Cited by: XXΒ β˜€οΈβš‘
  • A Study on Doping Silver Nanowires in Cesium Tungsten Bronze Thin FilmsΒ (2025) – Cited by: XXΒ πŸ”¬πŸ“‘
  • From Concept to Creation: Micro/Nanobot Biomedical ApplicationsΒ (2024) – Cited by: XXΒ πŸ€–πŸ₯
  • Smart Manufacturing Technologies: Implementation & ReviewΒ (2024) – Cited by: XXΒ πŸ­πŸ’‘
  • Artificial Intelligence-Based Thermal Management for EVsΒ (2024) – Conference PaperΒ πŸš—πŸ”₯
  • Simulation of Selective Reflective Films Using AIΒ (2024) – Cited by: XXΒ πŸŽ¨πŸ’‘

 

Sabrina Cipolletta | Composite | Best Researcher Award

Sabrina Cipolletta | Composite | Best Researcher Award

Prof.Sabrina Cipolletta , UNiversitΓ  di Padova , Italy.

Prof. Sabrina Cipolletta is a Full Professor of Social Psychology at the University of Padova, Italy. With a Ph.D. in Personality and Social Psychology , she has held multiple academic positions, including Associate Professor . She has contributed extensively to research in health psychology, psychotherapy, and social psychology. A practicing psychotherapist since , she has collaborated internationally, including at the University of Hertfordshire and RΔ«ga StradiΕ†Ε‘ University. Her work bridges psychology, health, and social dynamics, making significant contributions to academia and applied psychology. πŸŒπŸ“–

Publication Profile

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Education & ExperienceΒ πŸŽ“πŸ“–

βœ…Β Ph.D. in Personality and Social Psychology – University of Padova (2003)
βœ…Β Postdoctoral Research Scholarship – University of Padova (2003)
βœ…Β Licensed Psychotherapist – Since 2002
βœ…Β Full Professor of Social Psychology – University of Padova (2024–Present)
βœ…Β Associate Professor of Social Psychology – University of Padova (2018-2024)
βœ…Β Assistant Professor of Social Psychology – University of Padova (2007-2017)
βœ…Β Adjunct & Contract Professor – Social Psychology, Health Psychology, and Prevention at multiple faculties (2006-2017)
βœ…Β International Research Collaborator – University of Hertfordshire (UK), RΔ«ga StradiΕ†Ε‘ University (Latvia) 🌍

Suitability Summary

Prof. Sabrina Cipolletta, Ph.D., a distinguished Full Professor of Social Psychology at the University of Padova, is an exceptional candidate for theΒ Best Researcher Award. With a prolific academic career spanning over two decades, she has significantly contributed to the fields ofΒ social psychology, health psychology, and personality development. Her research has played a crucial role in advancing our understanding of human behavior, psychological well-being, and the psychosocial aspects of health and illness.

Professional DevelopmentΒ πŸŒ±πŸ“š

Prof. Sabrina Cipolletta has actively engaged in international collaborations, research projects, and academic mobility programsΒ to advance social psychology and health research. She was aΒ visiting professorΒ at RΔ«ga StradiΕ†Ε‘ University in Latvia, sharing insights into health psychology and pedagogy. In the UK, she collaborated with leading researchers at the University of Hertfordshire on projects integratingΒ psychotherapy, social psychology, and cognitive sciences. Her extensive teaching portfolio spans psychology, medicine, and management, showcasing her multidisciplinary expertise. She continues toΒ mentor students, contribute to scientific literature, and explore the intersection of psychology and societal well-being.Β πŸŽ“πŸ”¬

 

Research FocusΒ πŸ”¬πŸ’‘

Prof. Sabrina CipollettaΒ  research spans social psychology, psychotherapy, and health psychology, focusing on howΒ individuals and groups interact within health and social contexts. She explores topics likeΒ health behaviors, psychological well-being, illness narratives, and the role of social support in therapy. Her work also delves intoΒ virtual environments in psychotherapy, patient-centered care, and mental health interventions. With a keen interest in howΒ social structures influence health decisions, she collaborates across disciplines, blending psychology, medicine, and sociology to improve patient care and societal well-being. Her contributions have shaped both academic knowledge and real-world applications.Β πŸ₯🧠

Publication Top Notes

πŸ“–Β We Are All in This Together: Narratives of a Blended Intervention to Support Well‐Being and Social Connectedness in International Students – Journal of Community & Applied Social Psychology,Β 2025Β πŸ“ŒΒ [DOI: 10.1002/casp.70059]

πŸ“–Β Identification, Similarity, and Understanding in Female Same-Sex Couples: A Dyadic Study – Journal of Constructivist Psychology,Β 2024Β πŸ“ŒΒ [DOI: 10.1080/10720537.2023.2267151]

πŸ“–Β Problematic Pornography Use, Mental Health, and Suicidality among Young Adults – International Journal of Environmental Research and Public Health,Β 2024Β πŸ“ŒΒ [DOI: 10.3390/ijerph21091228]