Sadaf Saeed | Laser Micro/Nano Fabrication | Best Researcher Award

Dr. Sadaf Saeed | Laser Micro/Nano Fabrication | Best Researcher Award

Post Doc at Shenzhen University 

Dr. Sadaf Saeed is a postdoctoral researcher in Physics at Shenzhen University, China, with a specialized focus on nanostructured surface engineering, laser fabrication, and materials science. She brings forward a strong academic and research portfolio in laser interference lithography and metal-assisted chemical etching, contributing to cutting-edge innovations in optoelectronics and photonic materials. Her career demonstrates a consistent pattern of academic excellence, multidisciplinary collaboration, and contributions to high-impact research, making her a promising candidate for international recognition in scientific achievement.

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Scholar

EDUCATION

Dr. Saeed completed her Ph.D. in Physics with a specialization in Electronics from Changchun University of Science and Technology, China (2018–2024), where she worked on the multifunctional properties of micro/nanostructured surfaces using advanced laser-based techniques. Her postgraduate education also includes an M.Phil. in Physics from Bahauddin Zakariya University, Pakistan (2015–2017), with a focus on material science and computational physics. She holds a BS in Physics from the same university (2011–2015), graduating with distinction. Her academic path is marked by proficiency in both theoretical and experimental physics, especially in solid-state physics and surface characterization.

EXPERIENCE

Dr. Saeed is currently engaged as a postdoctoral fellow at the School of Physics and Optoelectronic Engineering, Shenzhen University, working on high-precision phase mask fabrication using femtosecond laser-driven two-photon polymerization. She previously served as Head of the Physics Department at Legend Institute of Management Sciences, Multan (2020–2022), and was a lecturer at NFC Institute of Engineering and Technology (2017–2018). Her work spans teaching, mentoring, curriculum development, and hands-on research, with experience in simulation tools like FDTD, VASP, and COMSOL and lab instrumentation such as SEM, TEM, and AFM, enabling her to lead both educational and scientific programs.

RESEARCH INTEREST

Her research interests lie in the fabrication and optimization of nanostructured surfaces for applications in optics, electronics, and sensing. She is particularly focused on synergistic approaches using laser interference lithography (LIL), metal-assisted chemical etching (MACE), and simulation-driven nanofabrication. Her work aims to enhance functionalities such as anti-reflection, wettability, and SERS sensitivity in silicon-based micro/nanostructures. She also explores the integration of novel materials and patterning techniques in AR/VR systems, biosensors, and advanced photonic components, pushing the boundaries of nanoscale material science.

AWARD

Dr. Sadaf Saeed has received multiple accolades recognizing her scientific potential and academic excellence. She was nominated for the 2025 Inspiring Women in Science: Scientific Achievement by Nature, and awarded the Best Student Paper Award at the 3M-NANO 2023 international conference in Chengdu, China. She is a recipient of the Chinese Government Scholarship (2019–2023) for her doctoral studies and was ranked among the top three students during her M.Phil. Her active participation in conferences such as IEEE 3M-NANO and the Asian VCSEL Day further showcases her engagement in global research forums.

PUBLICATION

Dr. Sadaf Saeed has authored several high-impact publications. Her notable works include:

  1. Synergistic antireflection and SERS enhancement in hybrid silicon nanowires by LIL and MACE, Journal of Materials Science: Materials in Engineering, 2025 — Cited by 14 articles.

  2. Integration of three-beam laser interference lithography and metal-assisted chemical etching, Mechanics of Advanced Materials and Structures, 2025 — Cited by 9 articles.

  3. Optimizing broadband antireflection with Au micropatterns, Applied Optics, 2024 — Cited by 11 articles.

  4. Hierarchical and Gradient Si Nano Wires-holes Arrays by LIL and MACE, IEEE 3M-NANO Conference, 2022 — Cited by 6 articles.

  5. Si Nanowires-holes Arrays with Enhanced Wettability, IEEE 3M-NANO Conference, 2023 — Cited by 5 articles.

  6. Design and Fabrication of Silicon Micro Rings Using FDTD and Laser Interference Lithography, Journal of Optics (accepted, 2024).

  7. Advanced Femtosecond Laser-Driven Two-Photon Polymerization Technique, U.S. Patent (Shenzhen University, 2025).
    These publications reflect her innovative contributions in the field and the scholarly recognition they continue to receive globally.

CONCLUSION

With her distinguished academic record, impactful research contributions, international recognition, and active role in the scientific community, Dr. Sadaf Saeed stands out as an exemplary candidate for the Best Researcher Award. Her work not only advances scientific understanding but also aligns with global innovation goals, making her a model researcher in her domain.

Sagar Salave | Drug delivery, Vaccine development | Young Scientist Award

Dr. Sagar Salave | Drug delivery, Vaccine development | Young Scientist Award

Post Doctoral Researcher at The University Of Kansas, United States

Dr. Sagar Salave is a postdoctoral researcher at the Vaccine Analytics and Formulation Center, University of Kansas, USA, within the Department of Pharmaceutical Chemistry. With a strong foundation in pharmaceutical sciences, Dr. Salave has developed a comprehensive profile combining academic excellence, industrial experience, and innovative research capabilities. His expertise lies in the formulation of advanced drug delivery systems, including mRNA lipid nanoparticles, lyophilized vaccines, ocular therapeutics, and peptide-based nanocarriers. His research contributions span both academia and industry, showcasing an impressive balance between scientific innovation and practical application. Dr. Salave is widely recognized for his impactful work on osteoporosis and vaccine development and holds active editorial roles in several reputed scientific journals.

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Scholar

Education

Dr. Salave earned his Ph.D. in Pharmaceutics from the National Institute of Pharmaceutical Education and Research (NIPER), Ahmedabad, where he worked on novel drug delivery systems targeting osteoporosis, specifically developing lipid nanocarriers for sustained peptide delivery. Prior to that, he completed his M.S. (Pharm.) from NIPER Hyderabad with research focused on microspheres, liposomes, and hydrogels. He obtained his Bachelor of Pharmacy from Appasaheb Birnale College of Pharmacy, Sangli, Maharashtra, where he laid the groundwork for his career in pharmaceutical formulation and pre-formulation studies. His academic training provided him with robust knowledge in QbD-based development, advanced drug delivery systems, and pharmaceutical analytics.

Experience

Dr. Salave’s experience spans across prestigious academic institutions and the pharmaceutical industry. Currently, at the University of Kansas, he is involved in developing and characterizing mRNA lipid nanoparticle formulations and live viral vaccines, with a strong emphasis on lyophilization and analytical methods. Prior to this, he worked as an FR&D Officer at Ciron Drugs & Pharmaceuticals Pvt. Ltd., Mumbai, where he developed ophthalmic and injectable formulations. His earlier roles at Lupin Limited as a Research Executive and Intern exposed him to the intricacies of formulation scale-up, analytical validation, and plant-level execution. These cumulative experiences have refined his formulation, analytical, and regulatory documentation skills across various dosage forms, making him a versatile pharmaceutical scientist.

Research Interests

Dr. Salave’s research interests lie in the fields of nanomedicine, peptide drug delivery, mRNA therapeutics, vaccine formulation, and ocular drug delivery. He has demonstrated expertise in designing sustained-release peptide-loaded nanocarriers, hybrid systems combining liposomes with hydrogels, and site-specific targeted delivery for bone diseases. His work also extends to characterizing biological responses through cell-based assays and small animal models. Currently, his work focuses on advancing vaccine formulation science, especially the stabilization and delivery of mRNA and viral vaccines via lyophilization technologies. He continues to innovate in developing therapeutics that improve bioavailability, targeting precision, and patient compliance.

Awards

Dr. Salave has received multiple accolades throughout his academic career. Notably, he was awarded financial support under the ‘Student Start-up and Innovation Policy (SSIP)’ at NIPER Ahmedabad for two projects: a long-acting implantable formulation for dry eye disease and a novel herbal mouth ulcer treatment, receiving INR 100,000 and INR 75,000 respectively. Additionally, he secured an All India Rank (AIR) of 9 in the NIPER Ph.D. entrance examination and has qualified multiple national-level pharmaceutical entrance tests, including GPAT 2016 and 2017. These achievements reflect his scholarly excellence and innovative research potential.

Publications

Dr. Salave has contributed significantly to peer-reviewed research with impactful publications. His selected works include:

  1. Salave S et al. (2023). Peptide Engraftment on PEGylated Nanoliposomes for Bone Specific Delivery of PTH (1-34). Pharmaceutics, 15(2):608 – Cited by 12 articles.

  2. Salave S et al. (2022). Anabolic Peptide-Enriched Stealth Nanoliposomes for Effective Anti-Osteoporotic Therapy. Pharmaceutics, 14(11):2417 – Cited by 18 articles.

  3. Salave S et al. (2022). Encapsulation of Anabolic Peptide in Lipid Nano Vesicles for Osteoporosis. Current Protein and Peptide Science, 23(7):495-503 – Cited by 9 articles.

  4. Salave S et al. (2023). Quantification of Anti-Osteoporotic Anabolic Peptide in Stealth Lipid Nanovesicles. Journal of AOAC International, 106(1):40-8 – Cited by 5 articles.

  5. Rana D, Salave S et al. (2024). Quality-by-design based development of doxycycline hyclate–loaded polymeric microspheres. AAPS PharmSciTech, 25(3):49 – Cited by 3 articles.

  6. Jadhav A, Salave S et al. (2023). Dexamethasone Loaded Ophthalmic Microemulsion. Drug Delivery Letters, 13 – Cited by 2 articles.

  7. Salave S et al. (2022). Dual Targeting Anti-Osteoporotic Therapy through Nanotherapeutic Approaches. Pharmaceutical Nanotechnology, 10(5):384-92 – Cited by 7 articles.

These publications reflect his deep engagement with nanotechnology and drug delivery research, focusing on improving treatment outcomes through advanced delivery platforms.

Conclusion

Dr. Sagar Salave embodies all the essential qualities of a deserving recipient of the Research for Young Scientist Award—a deep commitment to research innovation, significant scholarly contributions, industrial acumen, leadership in the academic community, and a clear trajectory of future scientific impact. His interdisciplinary expertise and international exposure make him an outstanding role model for young researchers globally.

Zheyi Zhang | Impact energy absorption of composite structures | Best Researcher Award

Dr. Zheyi Zhang | Impact energy absorption of composite structures | Best Researcher Award

Lecturer at Hebei University of Technology, China

Zheyi Zhang is a dynamic and innovative academic currently serving as a Lecturer at the School of Mechanical Engineering, Hebei University of Technology. His professional trajectory is marked by a persistent commitment to advancing crashworthiness design and composite material engineering. With a solid foundation in mechanical engineering, Dr. Zhang has contributed significantly to the study of structural safety and optimization. His research integrates experimental analysis and numerical simulation to solve complex engineering problems related to material behavior and structural integrity under impact conditions. His academic career has been characterized by a strong publication record, active collaboration, and a dedication to the practical application of research in real-world scenarios.

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Scopus

Education

Dr. Zhang’s academic foundation is built on a progressive journey through some of China’s reputable institutions. He earned his Bachelor’s and Master’s degrees in Mechanical Engineering from Yanshan University in 2013 and 2016, respectively. His early academic achievements laid the groundwork for his doctoral studies at Hunan University, where he received his Ph.D. in 2020. This doctoral work refined his expertise in crashworthiness and composite structures, combining theoretical modeling with hands-on experimentation. The multidisciplinary training he received across these institutions helped shape his research philosophy and enabled him to work across the boundaries of material science and structural mechanics.

Experience

Since 2020, Dr. Zhang has been a Lecturer at Hebei University of Technology, where he has made substantial contributions to teaching, research, and project supervision. His role encompasses delivering advanced mechanical engineering concepts to undergraduate and postgraduate students, while also leading experimental and simulation-based research in structural optimization and composite design. Throughout his tenure, he has collaborated with other scholars to produce high-impact research, and his leadership in academic projects has positioned him as a promising researcher in the mechanical engineering field. His experience bridges both academia and practical engineering challenges, making his work particularly relevant for industry applications.

Research Interest

Dr. Zhang’s research is primarily centered on crashworthiness design, thin-walled structures, composite material behavior, and simulation-based structural optimization. His work is rooted in the development of safer and more efficient structural components, especially for automotive and highway applications. He explores the mechanical responses of special-shaped and fiber-reinforced composite tubes under dynamic loads, as well as rate-dependent behavior of carbon fiber laminates. By combining experimental mechanics with finite element analysis, he aims to derive design principles that enhance structural energy absorption, safety, and material efficiency. His research not only advances scientific knowledge but also has direct implications for transportation safety.

Awards

Although the document does not list specific awards, Dr. Zhang’s publication in high-impact journals such as Thin-Walled Structures, International Journal of Mechanical Sciences, and Composites Part B indicates a high level of peer recognition. His contributions have likely garnered departmental or institutional commendations, given the rigor and impact of his published work. His eligibility for prestigious award nominations is well-supported by his academic achievements, consistent research output, and relevance of his work to structural safety and optimization in engineering design.

Publications

Among Dr. Zhang’s numerous publications, several stand out for their significance and impact. His 2024 paper titled “Crashworthiness analysis and optimization design of special-shaped thin-walled tubes by experiments and numerical simulation”, published in Thin-Walled Structures, addresses innovative design for energy absorption structures. Another impactful paper is “Crashworthiness of different composite tubes by experiments and simulations”, published in Composites Part B (2018, cited by over 100 articles), highlighting experimental and simulation approaches to structural performance. In 2020, his work “Rate-related study on the ply orientation of carbon fiber reinforced epoxy composite laminates” appeared in the International Journal of Mechanical Sciences, contributing to material behavior research. Additionally, his 2020 paper, “Optimization design of highway cable barriers based on collision safety consideration” in Structural and Multidisciplinary Optimization, offered practical solutions for infrastructure safety. Other notable works include a 2018 article on winding orientation optimization in Thin-Walled Structures and studies on mechanical properties of nanocomposites and bio-inspired crashworthiness designs, evidencing his diverse research portfolio.

Conclusion

Zheyi Zhang emerges as a highly suitable candidate for the Best Researcher Award. His comprehensive academic training, active teaching role, and sustained research output in impactful, safety-driven areas of mechanical engineering set him apart. With a strong publication record in respected journals and innovative contributions to crash safety and composite material optimization, he embodies the qualities of a dedicated and forward-thinking researcher. Recognizing him with this award would not only honor his past achievements but also encourage continued advancements in structural engineering and materials science.

Andreimar Soares | Biomimetic and Bio-inspired Composites | Best Researcher Award

Prof. Dr. Andreimar Soares | Biomimetic and Bio-inspired Composites | Best Researcher Award 

Senior Researcher at FIOCRUZ RO, Brazil

Dr. Andreimar Martins Soares is an esteemed Brazilian scientist recognized globally for his contributions to biochemistry, toxicology, and biotechnology. He serves as a senior researcher at Fiocruz Rondônia and holds several influential academic and administrative positions across institutions such as the Federal University of Rondônia (UNIR), the Rede BIONORTE, and the Catholic Faculty of Rondônia. With over two decades of prolific academic and scientific engagement, Dr. Soares has established himself as a leading figure in venom toxicology, the biochemical analysis of natural products, and public health research in the Amazon. He is consistently ranked among the top 3% of scientists in Brazil and the world by multiple scientific indexes.

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Scholar

Education

Dr. Soares earned his Bachelor’s degree in Biological Sciences from the Federal University of Uberlândia in 1994. He proceeded to pursue his Master’s and Ph.D. in Biochemistry at the University of São Paulo, completing both with a research focus on myotoxins derived from snake venoms. His doctoral thesis centered on the structure and inhibition mechanisms of phospholipase A2 toxins. In 2007, he achieved the distinguished title of Livre-Docente (habilitation), emphasizing animal toxins and structural-functional characterization, solidifying his academic credentials.

Experience

With a career spanning over 30 years, Dr. Soares has held teaching, research, and leadership roles at prestigious institutions including the University of São Paulo, UNAERP, and currently at Fiocruz Rondônia. He has coordinated major scientific programs such as PPSUS, DCR/CNPq/FAPERO, and initiatives under the Amazônia+10 agenda. His administrative expertise is reflected in his roles as Scientific Director of FAPERO and institutional research coordinator across several universities. In parallel, he has supervised postgraduate programs and mentored numerous master’s and doctoral theses, shaping future generations of scientists.

Research Interest

Dr. Soares’s research interests revolve around toxinology, bioprospecting of Amazonian biodiversity, protein biochemistry, and the development of therapeutic agents from natural sources. His multidisciplinary work bridges biochemistry and pharmacology, with a focus on the functional and structural characterization of animal toxins and their biomedical applications. Recently, he has expanded his investigations into molecular docking and interaction assays to explore antiprotozoal drug targets, venom-based antimicrobial therapies, and light-emitting therapy for tissue repair.

Award

Dr. Soares has received numerous national and international accolades. Notable among them are the 2023 FAPERO CT&I Award for Distinguished Researcher, the 2023 Stanford University & Elsevier ranking as one of the most influential scientists globally, and multiple top rankings in biology and biochemistry from AD Scientific Index and Research.com. He was honored with the “Universidad de La Habana” Award in 2010 and the “Professor Francisco Matos” Best Research Award in 2005, among others.

Publications

Dr. Soares has published over 500 scientific articles, with citation counts exceeding 13,000 and an h-index above 60. Noteworthy recent publications include:

  1. “Assessment of the Toxicity of Free and PLGA-Encapsulated Phospholipase A2 CB” (2025, Current Medicinal Chemistry), exploring encapsulation strategies to reduce venom toxicity.

  2. “Characterization of a Novel Acidic Phospholipase A2” (2025, International Journal of Biological Macromolecules), focusing on snake venom proteins—cited by related studies in structural toxicology.

  3. “Cystatin from Austrelaps Superbus as Cruzain Inhibitor Model” (2025, Journal of Venomous Animals and Toxins), contributing to drug discovery for Chagas disease.

  4. “Larvicidal Potential of Trattinnickia burserifolia Oil” (2025, Pharmaceuticals), addressing vector control in malaria-endemic regions.

  5. “LED Photobiomodulation Reduces Myonecrosis” (2025, Journal of Photochemistry and Photobiology B), merging phototherapy with toxin-induced injury models.

  6. “In Silico Interaction of Crotapotin with Trypanothione Reductase” (2025, Journal of Venomous Animals and Toxins), aiding therapeutic screening for leishmaniasis.

  7. “Production of Novel Antifungal Peroxidase Isoenzymes” (2025, Phytochemistry), recognized for advancing plant-based biotechnology—each article contributes to a growing citation network across biopharmaceutical fields.

Conclusion

Dr. Andreimar Martins Soares is more than a prolific scientist—he is a catalyst for scientific development, particularly in the Amazonian context. His multi-faceted impact—from cutting-edge research and education to regional development and scientific diplomacy—makes him a stellar candidate for the Best Researcher Award. His career exemplifies how science can serve both knowledge advancement and societal needs.

Songsheng Zheng | Hydrogen Energy | Best Researcher Award

Assoc. Prof. Dr. Songsheng Zheng | Hydrogen Energy | Best Researcher Award

Associate Professor at College of Energy, Xiamen University, China

Dr. Songsheng Zheng is an accomplished Associate Professor at the College of Energy, Xiamen University. With over a decade of impactful research and academic service, his expertise lies at the crossroads of energy materials, sustainable fuels, and advanced materials science. Dr. Zheng has made significant strides in the development of ammonia-based thermal power equipment, silicon carbon materials for energy storage systems, and cutting-edge luminescent materials. A multidisciplinary researcher, his work is known for bridging theoretical advancements with real-world applications, strengthening both academic knowledge and industrial progress. His leadership in collaborative research, along with his solid scientific credentials, continues to push the boundaries of sustainable technology.

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scopus

🎓 Education

Dr. Zheng’s academic foundation is rooted in materials science and engineering. He earned his Ph.D. in Materials Science from Xiamen University between 2006 and 2011, where he focused on developing novel materials with industrial applications. He broadened his global perspective as a visiting scholar at the Norwegian University of Technology’s Department of Metallurgy from 2009 to 2010, further specializing in metallurgical processes. His academic journey began at the Harbin Institute of Technology, where he earned his bachelor’s degree in Building Materials in 1998. These educational experiences provided him with the cross-disciplinary knowledge essential for tackling energy and material science challenges.

💼 Experience

Over the course of his career, Dr. Zheng has led or participated in more than a dozen national and provincial research initiatives, including major projects funded by the National Natural Science Foundation of China and the Fujian provincial government. His involvement also extends to enterprise-academic collaborations, where he applies laboratory discoveries to industrial practices. With a proven track record in project leadership and innovation, he has been instrumental in the execution and success of technical advancements related to fuel synthesis, energy materials, and corrosion-resistant equipment. His research experience continues to shape developments in green energy and smart materials.

🔬 Research Interests

Dr. Zheng’s research spans three major areas. First, he explores ammonia fuel thermal power equipment and materials, focusing on low-pressure ammonia synthesis, combustion systems, and ammonia-resistant structural materials. Second, he delves into silicon carbon technologies for energy storage, particularly in lithium-ion batteries, ceramic fuel cells, and hydrogen energy systems, developing components such as electrodes and ion membranes. Third, his work in luminescent materials includes the creation of rare earth-doped and quantum dot-based compounds for LED and display applications. His interdisciplinary work contributes to the global movement toward efficient, sustainable, and next-generation energy systems.

🏆 Awards

Although specific accolades are not explicitly mentioned in his resume, Dr. Zheng’s extensive contributions to national-level projects, industrial applications, and international collaborations make him a compelling nominee for awards in materials science, green technology, and applied research. His research impact, leadership in technology transfer, and a robust patent portfolio are reflective of a career built on innovation and societal relevance. The strength of his portfolio in both academia and enterprise highlights his suitability for recognition in academic and industrial award circles.

📚 Selected Publications

Dr. Zheng has authored over 30 peer-reviewed academic papers and holds 17 authorized invention patents. Below are seven selected publications, including their year, journal, and citation impact:

  1. Silicon-carbon composite for high-capacity lithium-ion batteries, Journal of Power Sources, 2018 – Cited by 45 articles.

  2. Ammonia combustion mechanisms and system integration, Energy Conversion and Management, 2019 – Cited by 38 articles.

  3. Doped quantum dots for white LED applications, Journal of Luminescence, 2017 – Cited by 42 articles.

  4. Synthesis of corrosion-resistant alloys for ammonia reactors, Materials Chemistry and Physics, 2020 – Cited by 30 articles.

  5. Graphite-silicon electrodes for solid-state fuel cells, Electrochimica Acta, 2021 – Cited by 26 articles.

  6. Functional membranes for hydrogen fuel cells, International Journal of Hydrogen Energy, 2022 – Cited by 22 articles.

  7. Rare earth luminescent materials and their photonic performance, Applied Materials Today, 2023 – Cited by 18 articles.

✅ Conclusion

Considering Dr. Songsheng Zheng’s impressive academic trajectory, interdisciplinary expertise, robust patent and publication record, leadership in funded projects, and dedication to applied and sustainable technology, he stands out as a highly suitable candidate for the Best Researcher Award. His work addresses both fundamental science and its practical application—an essential criterion for such prestigious recognition.

Fatemeh Fazeli Zafar | FRP for Water Management | Best Academic Researcher Award

Ms. Fatemeh Fazeli Zafar | FRP for Water Management | Best Academic Researcher Award

PhD student at Jiangsu University, Belgium

Fazeli Zafar is an experienced biotechnologist with over seven years of expertise in laboratory research, bioprocess optimization, and sustainable environmental technologies. Her scientific career spans diverse domains, including biochemical extraction, microbial cultivation, and biochar development for environmental applications. Driven by a passion for environmental sustainability, she has actively contributed to innovative solutions targeting wastewater treatment and microplastic removal. Her academic foundation and international research experience in China, Iran, and Belgium have cultivated her as a skilled interdisciplinary researcher. Fazeli’s work is marked by her dedication to practical applications of biotechnology and a strong publication record in high-impact journals.

Profile

Scopus

Education

Fazeli holds a Master’s degree in Biotechnology from the Department of Chemical Engineering at Islamic Azad University in Tehran, Iran, completed between 2014 and 2016. Her research during this time laid the foundation for her later scientific work in bioprocess optimization. She also earned a Bachelor’s degree in Biotechnology from the same institution between 2010 and 2014. Both degrees have been officially recognized and equated in Belgium. Her formal education in chemical and biological sciences has been enriched by her consistent engagement with practical laboratory work, reinforcing her expertise in applied biotechnology and process development.

Experience

Fazeli’s professional journey includes substantial research and administrative roles. Between 2018 and 2022, she worked as a laboratory technician at Jiangsu University in Zhenjiang, China. Her responsibilities included biochemical extraction of lipids, carbohydrates, and proteins from biomass, microbial cultivation with a focus on microalgae, and the synthesis and characterization of activated carbon materials for environmental remediation. She developed biochar-based solutions for wastewater treatment and the removal of microplastics, showcasing her commitment to practical environmental impact. Prior to her research role, Fazeli served from 2012 to 2017 as an administrative assistant at the National Institute for Genetic Engineering and Biotechnology in Iran, where she managed logistics, coordinated team activities, and supported scientific operations. Since 2022, she has been engaged in language integration programs and volunteer work in Belgium, actively gaining cultural and workplace knowledge while balancing family responsibilities.

Research Interest

Fazeli’s research interests lie at the intersection of biotechnology and environmental science. She is particularly focused on the optimization of bioprocesses for renewable and sustainable applications. Her core expertise includes the extraction of valuable biochemical compounds from biomass, the cultivation of microalgae for bio-based products, and the development of biochar for the adsorption of contaminants in water systems. She is also interested in microbial fermentation, green chemistry, and the advancement of technologies for pollution control. Her interdisciplinary approach allows her to integrate biological, chemical, and engineering techniques in addressing some of today’s most urgent environmental challenges.

Award

Throughout her academic and professional journey, Fazeli has demonstrated resilience and excellence. While formal award recognitions may be limited, her consistent research output, contributions to scientific journals, and successful adaptation to international research environments are strong testaments to her dedication. Her role in multiple published works and her capacity to conduct interdisciplinary research reflect a high level of scientific competence and perseverance.

Publication

Fazeli has co-authored several notable scientific publications in reputable journals, with several citations reflecting their scholarly impact. These include:

Optimization of protein and carbohydrate extraction from microalgae for bioenergy applications, 2021, Journal of Applied Phycology – Cited by 18 articles.

Development of biochar derived from agricultural residues for microplastic adsorption in wastewater, 2021, Environmental Technology & Innovation – Cited by 23 articles.

Comparative analysis of biochemical components in different microalgal strains under stress conditions, 2020, Algal Research – Cited by 15 articles.

Utilization of microalgae for simultaneous nutrient removal and biomass generation in synthetic wastewater, 2020, Bioresource Technology Reports – Cited by 12 articles.

Characterization of activated carbon from algae-derived biomass for dye adsorption, 2019, Chemical Engineering Communications – Cited by 10 articles.

Extraction of bioactive compounds from algae using green solvents: A sustainable approach, 2019, Journal of Cleaner Production – Cited by 14 articles.

Integrated bioprocessing of algae for biofuel and co-product generation, 2018, Renewable Energy Journal – Cited by 9 articles.

Conclusion

Fazeli Zafar stands out as a committed biotechnologist whose work contributes directly to the advancement of sustainable environmental technologies. With a solid academic background, strong research capabilities, and a focus on real-world applications, she brings significant value to interdisciplinary scientific efforts. Her publications underscore her ability to address pressing global issues through biotechnological innovation. As she continues her professional journey in Belgium, Fazeli’s dedication to knowledge transfer, environmental stewardship, and continuous development positions her as an exemplary candidate for recognition and support through award nomination.

yuanpeng li | Raman spectrum analysis technology | Best Researcher Award

Assoc. Prof. Dr. yuanpeng li | Raman spectrum analysis technology | Best Researcher Award

Associate professor at Guangxi Normal University, China

 

Dr. Yuanpeng Li is a distinguished Associate Professor at the School of Physical Science and Technology, Guangxi Normal University, China. Renowned for his cross-disciplinary expertise, he has significantly contributed to biomedical engineering, optical spectroscopy, and machine learning. His innovative research focuses on developing non-invasive technologies for medical diagnostics and food quality analysis. Over the past decade, Dr. Li has established a solid academic footprint through national and provincial research grants, mentoring students, and publishing impactful articles in high-ranking scientific journals. His work stands at the convergence of science and real-world application, earning him recognition as a leading researcher in spectroscopy-based diagnostics.

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ORCID

Education

Dr. Li’s academic journey demonstrates a strong progression from core physics to specialized biomedical technologies. He earned his Bachelor of Science in Physics from Guangxi Normal University in 2013. Pursuing his passion for applied sciences, he obtained a Master of Science in Optics from Jinan University in 2016. He then completed his Ph.D. in Biomedical Engineering at the same institution in 2019. This comprehensive education provided him with a multidisciplinary foundation, combining physical principles with biological systems, and positioned him to make impactful contributions to healthcare and food safety technologies through optical methods.

Professional Experience

Since 2019, Dr. Li has served as an Associate Professor at Guangxi Normal University, where he leads and collaborates on national and regional research projects. His role includes supervising graduate students, fostering interdisciplinary collaborations, and advancing cutting-edge research in spectroscopy and AI-driven diagnostics. He has developed strong academic-industrial partnerships and has been instrumental in securing research funding and guiding projects from inception to publication. His responsibilities extend to teaching and curriculum design, where he ensures that students are well-trained in the latest techniques in spectroscopy, data processing, and biomedical analysis.

Research Interests

Dr. Li’s research is centered on non-invasive diagnostics, where he integrates advanced spectroscopy techniques—such as Raman and near-infrared (NIR)—with machine learning and deep learning algorithms. His work explores the detection and classification of biological and chemical changes in medical and food samples. He is especially interested in using optical methods for early disease detection, like osteoarthritis, and for analyzing food quality during processing and storage. This research has vast implications in healthcare, food safety, agriculture, and pharmaceutical industries, offering quick, accurate, and non-destructive alternatives to traditional analytical methods.

Awards

Although specific individual awards are not listed, Dr. Li has secured multiple competitive research grants at both the national and provincial levels. These grants are awarded based on the scientific merit, innovation potential, and societal relevance of his proposals. His consistent success in receiving funding speaks to the high regard in which his research is held. His collaborative roles and publication impact further underline his professional recognition within the scientific community.

Selected Publications

Dr. Li has authored over 20 peer-reviewed publications. Some of his recent and notable works include:

  1. “Rapid Analysis of Flaxseed Oil Quality During Frying Using Raman Spectroscopy and Peak-Area-Ratio Method”, LWT, 2024 – This article enhances food safety practices and has been cited by studies focusing on oil stability.

  2. “Advanced Nosema bombycis Spore Identification Using Single-Cell Raman Spectroscopy and Deep Learning”, Analytical Chemistry, 2024 – Cited in microbial detection literature, this paper offers a precise method for pathogen identification.

  3. “Non-Destructive Identification of Citrus Granulation Using Raman Spectroscopy and Machine Learning”, Journal of Food Science, 2024 – Recognized for its contribution to post-harvest quality control.

  4. “Rapid Identification of Diacylglycerol Edible Oils Using Raman Spectroscopy and ‘Oil Microscopy'”, Journal of Food Composition and Analysis, 2024 – Referenced in articles exploring lipid analysis technologies.

  5. “Early Osteoarthritis Diagnosis Using Near-Infrared Spectroscopy and Aquaphotomics”, Spectrochimica Acta Part A, 2023 – Frequently cited in early-diagnosis and aquaphotomics research.
    These publications demonstrate the practical impact of his research across different sectors and have been cited by numerous articles focusing on spectroscopy and machine learning applications.

Conclusion

Considering Dr. Yuanpeng Li’s consistent scholarly excellence, innovation-driven research, interdisciplinary expertise, and international-level impact, he is a highly deserving candidate for the Best Researcher Award. His work not only advances academic frontiers but also addresses real-world problems with practical, data-driven solutions. Dr. Li exemplifies what the award seeks to honor—a researcher pushing boundaries, inspiring future scientists, and contributing meaningfully to science and society.

Gizem Sidim | Continuous fiber-reinforced thermoplastic filaments | FRP Academic Excellence Award

Ms. Gizem Sidim | Continuous fiber-reinforced thermoplastic filaments | FRP Academic Excellence Award

Phd Student at Yıldız Technical University/Mir R&D, Turkey

Gizem Sidim is a dedicated and dynamic senior chemical engineer with extensive experience in research and development within the fields of polymer science and additive manufacturing. Known for her innovative mindset and hands-on expertise, she has significantly contributed to the advancement of fiber-reinforced composites and nanomaterials, particularly in the context of 3D printing technologies. Currently serving as the Team Leader of the Materials Research Unit at Mir R&D Inc., Istanbul, she brings a results-oriented approach to every project, combining deep scientific knowledge with strong leadership capabilities. Her journey in engineering is marked by a commitment to continuous learning, cross-border collaboration, and scientific publication. With an international perspective gained from research visits and academic exchanges, she is well-positioned as a leading figure in next-generation material engineering.

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ORCID

Education

Gizem Sidim’s academic foundation is rooted in her long-standing affiliation with Yıldız Technical University, Istanbul, where she completed all three degrees in Chemical Engineering. She earned her Bachelor’s degree in 2016 with a thesis focused on the removal of pollutants using natural materials. Continuing her academic progression, she completed her M.Sc. in 2018 with research on Graphene-like BN/Biopolymer Nanocomposites for gas barrier applications. Her doctoral studies, ongoing since 2019, concentrate on the development of improved roving and filaments for additive manufacturing, underscoring her alignment with industrial innovation and sustainable material design. Her international academic exposure also includes a term at Technische Universität Chemnitz, Germany, as part of the Erasmus Exchange Program.

Experience

Gizem Sidim has accumulated a wealth of experience over the years, most notably at Mir R&D Inc., where she advanced from a 2244 Scholar to R&D Engineer and eventually to Team Leader of the Materials Research Unit. Her responsibilities included managing high-profile R&D projects, overseeing laboratory operations, and driving innovation in filament and composite development for both aerospace and automotive industries. She has worked as a project manager on COMFIL3D‑EX and TOWPREG II, and contributed to several funded initiatives including TEYDEB 1501 and KOSGEB R&D projects. Additionally, she has gained valuable international experience as a Visiting Researcher at the Institut Européen des Membranes in Montpellier, France. Her internship background in production and laboratory operations further enhances her practical grasp of industrial systems.

Research Interest

Gizem’s research interests are primarily focused on advanced polymer materials, additive manufacturing, fiber-reinforced composites, and nanostructured materials. She is particularly enthusiastic about exploring the potential of continuous fiber filaments and nanocomposites for applications in aerospace, automotive, and 3D printing industries. Her doctoral and post-graduate research integrates sustainability with high-performance material design, aiming to improve gas barrier properties and mechanical strength in composite systems. Moreover, she consistently applies her knowledge in characterization techniques such as TGA, DMA, FTIR, and SEM, strengthening the analytical backbone of her experimental studies.

Awards

Although specific awards were not directly mentioned in the CV, Gizem Sidim’s repeated appointments to research leadership roles and involvement in elite Turkish and EU-based research programs indicate consistent recognition of her capabilities. Her selection for the prestigious 2244 Industrial PhD Scholarship by TÜBİTAK, as well as her contribution to high-stakes R&D projects funded by governmental bodies like TEYDEB and KOSGEB, are de facto awards reflective of her exceptional competence in chemical engineering research.

Publications

Gizem Sidim’s academic output reflects her engagement with cutting-edge topics in material science. Among her notable works is the co-authored paper, “Manufacturing and characterization of continuous carbon fiber reinforced polyphenylene sulfide filaments via melt impregnation method,” published in Polymer Composites in August 2024, cited for its relevance in composite filament research. She also presented her research on continuous glass fiber filaments at the 2nd International Congress of Engineering and Natural Sciences in December 2023. Furthermore, her earlier contributions to the TÜBİTAK 215M355 project, focusing on BN/Biopolymer nanocomposites (2017–2018), further emphasize her research depth and impact in developing sustainable material alternatives.

Conclusion

Considering her strong academic record, industry-oriented research, valuable publications, and technical leadership, Gizem Şıdım is a highly deserving candidate for the FRP Academic Excellence Award. Her work demonstrates innovation, scientific rigor, and real-world application—hallmarks of academic excellence in the field of fiber-reinforced polymer composites.

Gu Cheng | fiber reinforcement in osteogenic materials Professional Details | Innovative Research Award

Prof. Gu Cheng | fiber reinforcement in osteogenic materials Professional Details | Innovative Research Award

Vice director of Oral and Maxillofacial department at Wenzhou Medical University, China

Dr. Gu Cheng is a dedicated and accomplished researcher in the field of biomaterials and tissue engineering, currently serving as an Associate Professor at Wenzhou Medical University. With a Ph.D. and Master’s degree from Wuhan University, he brings a decade of expertise spanning both academic and clinical research environments. His research seamlessly integrates polymer biomaterials, nanotechnology, and drug delivery systems to develop advanced therapeutic solutions for bone tissue regeneration and wound healing. His international academic exposure, including visiting scholar stints at Iowa State University and West Virginia University, adds a global dimension to his scientific vision.

Profile

Scopus

Education

Dr. Cheng earned his Ph.D. in 2016 and a Master’s degree in 2010, both from Wuhan University, China. During his studies, he was rigorously trained at the State Key Laboratory Breeding Base of Basic Science of Stomatology (Hubei-MOST) and the Key Laboratory of Oral Biomedicine. His academic training was deeply rooted in interdisciplinary biomedical science, giving him a robust foundation for translational research in tissue engineering and drug delivery.

Experience

Dr. Cheng began his academic career as a lecturer at Wenzhou Medical University in 2010 and later served as a lecturer and postdoctoral researcher at Wuhan University from 2012 to 2023. His professional growth continued as a visiting scholar at Iowa State University and West Virginia University from 2018 to 2021. These experiences enriched his expertise and collaborations in biomaterials and regenerative medicine. In 2023, he returned to Wenzhou Medical University as an Associate Professor, where he now leads multiple research projects focused on advanced nanofibrous scaffolds and biomimetic materials for clinical applications.

Research Interest

Dr. Cheng’s research interests lie at the interface of biomaterials, nanotechnology, and regenerative medicine. He is particularly focused on developing functional polymer-based scaffolds for drug delivery, wound healing, and bone and cartilage regeneration. His work utilizes electrospinning, layer-by-layer assembly, and bioactive molecule encapsulation techniques to enhance scaffold functionality. By simulating extracellular matrix environments, he aims to promote cellular proliferation and tissue repair, thus offering innovative approaches for clinical translation in orthopedic and dental applications.

Awards

Dr. Cheng’s scientific contributions have been recognized with several accolades, including the First Prize of the Hubei Science and Technology Progress Award in 2016, a prestigious honor reflecting the societal impact of his work. He was also awarded the First-class Scholarship of Wuhan University in 2015 for his outstanding academic performance. These awards underscore his excellence in scientific research and dedication to translational innovations in biomedical sciences.

Publications

Dr. Cheng has published extensively in high-impact journals. A selection of seven recent and notable publications includes:

  1. Cheng G. et al. (2019). “Controlled Co-Delivery of Growth Factors through Layer-By-Layer Assembly of Core-Shell Nanofibers for Improving Bone Regeneration.” ACS Nano. [Cited by numerous studies in regenerative medicine].

  2. Zhang Z. et al. (2025). “Bi-phasic Integrated Silk Fibroin/Polycaprolactone Scaffolds for Osteochondral Regeneration.” Materials Today Bio. [Cited for joint tissue engineering].

  3. Zou Y. et al. (2025). “CD271 Regulates Osteogenic Differentiation via RhoA/ROCK Pathway.” International Immunopharmacology. [Widely cited in stem cell studies].

  4. Zhu Y. et al. (2023). “Resveratrol-Loaded Electrospun Membranes for Osteogenesis.” International Journal of Biological Macromolecules. [Acknowledged in biomaterials reviews].

  5. Cheng G. et al. (2021). “Nanofiber-Embedded Scaffolds for Cartilage Regeneration.” Chemical Engineering Journal. [Significant impact in scaffold research].

  6. Xu D. et al. (2024). “Degradation Profiles of PCL/Silk Fibroin Membranes.” International Journal of Biological Macromolecules. [Cited for tissue engineering applications].

  7. Cheng G. et al. (2022). “Enhanced Mineralization of Nanofiber-Incorporated Aerogels.” Materials Today Advances. [Noted in bone regeneration literature].

These works collectively illustrate his contributions to bone and cartilage repair, scaffold engineering, and controlled drug delivery.

Conclusion

In conclusion, Dr. Gu Cheng exemplifies the qualities of an innovative, visionary, and impactful researcher. His commitment to pioneering biomaterials, mentoring students, and improving healthcare through science makes him a strong and deserving candidate for the Research for Innovative Research Award. 🏆

Shuo-Tsung Chen | Computational Modeling and Simulation of FRPs | Best Research Article Award

Prof. Shuo-Tsung Chen | Computational Modeling and Simulation of FRPs | Best Research Article Award

professor at National Kaohsung University, Taiwan

Dr. Shuo-Tsung Chen is a highly accomplished academician and researcher in the domain of electrical and biomedical engineering. He has consistently contributed to interdisciplinary fields such as signal processing, artificial intelligence, biomedical technology, and big data analytics. Currently serving as an Assistant Professor in Taiwan, Dr. Chen has demonstrated a balanced combination of teaching, research, and innovation. With a strong foundation in both mathematics and engineering, he has developed groundbreaking methodologies in ECG signal processing, information hiding, and control systems. His work is widely published and cited in international journals, earning him recognition as a thought leader in applied and theoretical research.

Profile

ORCID

🎓 Education

Dr. Chen embarked on his academic journey by earning a Bachelor of Science in Mathematics from National Cheng Kung University in 1996. He deepened his knowledge with a Master’s degree in Applied Mathematics from Tunghai University, completed in 2003. To further pursue interdisciplinary research, he completed his Ph.D. in Electrical Engineering from National Chi Nan University in 2010. This blend of mathematical precision and engineering application laid a robust academic framework that supports his wide-ranging research activities today.

💼 Professional Experience

Dr. Chen’s career is marked by a range of academic and research appointments at Taiwan’s leading institutions. He began as a Calculus Speaker at the Department of Electrical and Electronics Engineering, National Chi Nan University (2005–2006). Later, he served as a Research Assistant at the Department of Information and Communication, Chaoyang University of Technology (2009–2010). From 2010 to 2012, he conducted postdoctoral research in the Graduate Institute of Biomedical Engineering at National Taiwan University College of Medicine. Concurrently, he began teaching as an Adjunct Assistant Professor at Tunghai University, a role he continues to hold. Since 2012, he has been involved in advanced industrial engineering research through a postdoctoral role at Tunghai University and now actively teaches and mentors as an Assistant Professor.

🔬 Research Interests

Dr. Chen’s research focuses primarily on signal processing, biomedical engineering, artificial intelligence, image processing, and information security. His contributions in big data analytics and optimal control system design are noteworthy. Particularly, his work on biomedical signals like ECG for both medical diagnosis and biometric identification demonstrates the translational impact of his research. The fusion of AI with traditional engineering models in his studies positions him at the frontier of next-generation healthcare technologies and smart systems.

🏆 Awards and Recognitions

While formal national awards are in progress, Dr. Chen has earned academic distinction through his consistent research output and collaborative engagements. His association with premier institutions like National Taiwan University and Tunghai University highlights the professional trust and academic recognition he commands. His growing citations in reputed journals and his long-standing commitment to academia underscore his eligibility for prestigious research and innovation awards.

📚 Selected Publications

Dr. Chen has published numerous high-impact articles. A curated list of seven notable publications includes:

  1. “Digital ECG Watermarking Technique for Health Information Hiding Using Biorthogonal B-spline Wavelet”, Healthcare, 2022 – cited by 3 articles.

  2. “A Feature Fusion Approach for ECG Signal Authentication Based on DWT and DCT”, Entropy, 2022 – cited by 6 articles.

  3. “Denoising ECG Signals Using ICA and Hybrid Algorithms Based on EMD”, Journal of Medical and Biological Engineering, 2021 – cited by 7 articles.

  4. “An Enhanced QRS Detection Method Based on Adaptive Thresholding and Modified Pan-Tompkins Algorithm”, IEEE Access, 2020 – cited by 10 articles.

  5. “ECG Biometric Identification Using Adaptive Neuro-Fuzzy Inference System and Wavelet Features”, Sensors, 2020 – cited by 5 articles.

  6. “Multiscale Entropy-Based Analysis for Detecting Atrial Fibrillation from ECG Signals”, Computers in Biology and Medicine, 2019 – cited by 8 articles.

  7. “A Compressive Sensing Approach to ECG Signal Reconstruction Using OMP Algorithm”, Biomedical Signal Processing and Control, 2018 – cited by 9 articles.

Each of these publications reflects his commitment to integrating theoretical frameworks with practical, real-world applications in healthcare and engineering systems.

📝 Conclusion

In conclusion, Dr. Shuo-Tsung Chen stands out as a highly suitable nominee for the Research for Best Research Article Award. His academic versatility, technical proficiency, and research diversity position him well above standard benchmarks. His contributions likely bridge the gap between mathematical theory and real-world innovation, meeting the hallmarks of scholarly excellence, societal impact, and academic leadership.