Dr. Shin Young Park | Materials Science | Research Excellence Award

Dr. Shin Young Park | Materials Science | Research Excellence Award

Yonsei University College of Medicine | South Korea

Dr. Shin Young Park is an accomplished researcher whose work reflects a strong interdisciplinary integration of materials science, biomedical engineering, and clinical innovation, making her a compelling recipient of the Research Excellence Award. As a Clinical Assistant Professor in Emergency Medicine at Yonsei University College of Medicine, she brings a unique materials-oriented perspective to healthcare research, focusing on how material properties, biological interfaces, and physiological responses interact in high-stress medical environments. Her research interests encompass biomedical materials, biophysical indicators, and data-driven evaluation of material–tissue interactions relevant to trauma care, critical illness, and emergency diagnostics. Dr. Park has contributed to impactful peer-reviewed studies that explore biochemical markers, physiological indices, and system-level responses, offering insights that support the development of advanced diagnostic tools and clinically relevant material-based solutions. Her work demonstrates a strong emphasis on translational research, where scientific rigor is paired with practical application to improve patient outcomes and healthcare efficiency. In addition to her research achievements, she is actively engaged in medical education and mentorship, contributing to the training of future clinicians and researchers through teaching, supervision, and collaborative scholarship. Dr. Park’s interdisciplinary approach allows her to bridge materials science concepts with clinical data analysis, fostering innovation at the interface of science and medicine. Her dedication to research excellence, methodological precision, and interdisciplinary collaboration positions her as a valuable contributor to modern materials science applications in healthcare. Through sustained academic commitment and impactful scientific inquiry, Dr. Shin Young Park exemplifies the qualities recognized by the Research Excellence Award.

Citation Metrics (Scopus)

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Featured Publications

Mr. Sumit Hassan Eshan | Materials Science | Research Excellence Award

Mr. Sumit Hassan Eshan | Materials Science | Research Excellence Award

Contessa Solutions and Consultants Ltd | Bangladesh

Mr. Sumit Hassan Eshan is a dynamic early-career researcher whose multidisciplinary work spans materials science, smart antennas, photonics, wireless power transfer, and next-generation communication technologies. Alongside his role as a Lead Technical Engineer in Microsoft and Cyber Security at Contessa Solutions and Consultants Ltd., he has built a strong scientific profile through consistent research productivity, publishing in reputable international journals and IEEE conferences, including work that has been featured on the front cover of a high-ranking journal. His portfolio comprises innovative research on graphene-based antennas, terahertz devices for 6G applications, nanomaterial-enhanced patch antennas for biomedical diagnostics, and wireless power transfer systems, reflecting his ability to merge materials science with applied electromagnetics. He has contributed to the academic community as a peer reviewer for multiple international journals, demonstrating his growing recognition as a knowledgeable evaluator in electrical, electronic, and materials-related fields. Mr. Eshan’s expertise includes advanced modeling, antenna simulation using CST Studio Suite, electronic system design, nano-enhanced device development, and multidisciplinary engineering problem-solving. His previous research projects explore cutting-edge topics such as terahertz aeronautical antennas, multilayer carbon-nanotube sensors, perovskite-based solar cell transport layers, and biomedical detection systems. In addition to his academic achievements, he has completed diverse industrial and R&D roles, contributing to cloud solutions, cybersecurity infrastructures, antenna development, robotics projects, and technical team leadership. His strong combination of research excellence, technological innovation, and cross-domain engineering capability highlights his potential to advance impactful material-based, communication-driven, and biomedical sensing technologies. Mr. Sumit Hassan Eshan’s achievements, versatility, and dedication position him as a highly deserving nominee for the Research Excellence Award.

Citation Metrics (Scopus)

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Citations
55

Documents
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Featured Publications


Enhanced Wireless Power Transfer System Using Integrated RF Amplification
– Results in Engineering, 2025

TI Anowar, RR Hasan, SH Eshan, M Foysal


Skin Tumor, Lipoma and Cyst Detection by Graphene Based On-Body Patch Antenna in L Band
– 2025 4th International Conference on Robotics, Electrical and Signal Engineering

SH Eshan, RR Hasan, M Farukuzzaman, R Basak, MS Hossen, R Rumky, …

Tungsten disulfide based wearable antenna in terahertz band for sixth generation applications
– TELKOMNIKA Telecommunication, Computing, Electronics and Control, 2024

A Roy, MR Bhuiyan, MA Islam, P Saha, SH Eshan, RR Hasan, R Basak


Spin Coated Multi-Walled Carbon Nanotube Patch Antenna for Breast Cancer Detection (Adv. Mater. Technol. 24/2023)
– Advanced Materials Technologies, 2023

RR Hasan, J Jasmine, AM Saleque, SH Eshan, RTH Tusher, S Zabin, …


Graphene based terahertz patch antenna for breast tumor detection
– TELKOMNIKA Telecommunication, Computing, Electronics and Control, 2024

L Moni, MSR Zishan, SH Eshan, RR Hasan

Dr. Yong Li | Materials Science | Research Excellence Award

Dr. Yong Li | Materials Science | Research Excellence Award

Shaanxi Normal University | China

Dr. Yong Li is an accomplished materials scientist whose rapidly growing research profile has positioned him as a leading contributor to next-generation photovoltaic technologies. With a strong academic foundation and a deep specialization in metal halide perovskite solar cells, his work spans defect passivation, interface engineering, crystallization control, and long-term device stability, enabling significant advancements in highly efficient and durable solar energy systems. Dr. Li has authored 52 scientific documents, demonstrating impressive productivity and a commitment to cutting-edge inquiry, and his research impact is reflected in 2,851 citations accumulated across 2,412 citing documents, supported further by a robust h-index of 29, highlighting both the depth and consistency of his scientific influence. His contributions focus on understanding the intricate interplay between precursor chemistry, molecular interactions, and interfacial processes, leading to innovative strategies for suppressing recombination, enhancing charge transport, and stabilizing perovskite layers under real-world conditions. Dr. Li’s work integrates experimental insight with advanced analytical techniques, offering design principles for scalable, low-cost solar modules and contributing to the global pursuit of sustainable and clean energy technologies. His portfolio includes impactful publications in SCI-indexed journals, collaborative initiatives with leading research groups, and involvement in strategically important research projects that address efficiency bottlenecks and operational reliability in modern solar cell architectures. Beyond fundamental research, he is committed to developing practical pathways for technology translation, bridging laboratory innovation with industrial relevance. Through his scholarly excellence, strong citation metrics, and growing international visibility, Dr. Li continues to shape the future of materials science and photovoltaic engineering, representing a new generation of researchers driving impactful solutions in renewable energy and contributing substantially to the advancement of high-performance solar materials.

Profiles: Scopus | Orcid

Featured Publications

Zheng, C., He, Y., Li, Y., Gao, A., Liu, Z., Chen, L., Wang, D., & Liu, S. (Frank). (2025). Oxidation stability of perovskite solar cells reinforced by punicalagin to resist UV damage. Advanced Functional Materials.

Li, Y., Dong, L., Cai, Y., Li, Y., Xu, D., Lei, H., Li, N., Fan, Z., Tan, J., Sun, R., Wang, B., Gong, J., Lin, Z., Guo, K., He, X., & Liu, Z.  (2025). Meticulous design of high-polarity interface material for FACsPbI₃ perovskite solar cells with efficiency of 26.47%. Angewandte Chemie International Edition, 64(26), e202504902.

Zhao, W., Lin, H., Li, Y., Wang, D., Wang, J., Liu, Z., Yuan, N., Ding, J., & Wang, Q. (2022). Symmetrical acceptor–donor–acceptor molecule as a versatile defect passivation agent toward efficient FA₀.₈₅MA₀.₁₅PbI₃ perovskite solar cells. Advanced Functional Materials, 32(19), 2112032.

Liu, B., Zhou, Q., Li, Y., Chen, Y., He, D., Ma, D., Han, X., Li, R., Yang, K., Yang, Y., Lu, S., Ren, X., Zhang, Z., Ding, L., Feng, J., Yi, J., & Che, J.  (2024). Polydentate ligand reinforced chelating to stabilize buried interface toward high-performance perovskite solar cells. Angewandte Chemie International Edition, 136(8), e202317185.

Wu, M., Wang, H., Li, Y., Chen, R., Zhou, H., Yang, S., Xu, D., Li, K., An, Z., Liu, S. (Frank)., & Liu, Z. (2023). Crystallization regulation by self-assembling liquid crystal template enables efficient and stable perovskite solar cells. Angewandte Chemie International Edition, 62(52), e202313472.

Dr. Dong Lu | Sustainability in Material Science | Editorial Board Member

Dr. Dong Lu | Sustainability in Material Science | Editorial Board Member

The Hong Kong Polytechnic University | Hong Kong

Dr. Dong Lu is a distinguished materials scientist and civil engineering researcher widely recognized for his pioneering contributions to smart cementitious composites, nanoengineered sustainable building materials, and intelligent pavement structures, holding an h-index of 31 with 74 published documents and 2,042 citations across 1,310 referencing documents. He completed doctoral training at The Hong Kong Polytechnic University and the Harbin Institute of Technology, preceded by a master’s degree from Chang’an University and a bachelor’s degree from Baoji University of Arts and Sciences. Dr. Lu’s research expertise integrates advanced nanomaterials, multiphysics modeling, structural health monitoring, and multifunctional concrete design to revolutionize infrastructure durability and sustainability. He has led multiple major research projects as principal investigator, including programs advancing nano-engineered recycled concrete, self-monitoring hydraulic concrete, and interaction behavior in high-performance asphalt-cement composites. His scientific leadership is demonstrated through highly influential publications, several patented technologies including supercapacitor energy storage bricks, graphene-modified multifunctional concrete, conductive aggregates for sensing, and high-damping concretes, as well as his role in translating laboratory innovation into scalable industrial applications. In addition to authoring significant book chapters with publishers such as Springer Nature and Elsevier, he has earned an exceptional record of recognition with more than forty competitive awards for research excellence, academic achievement, innovation, and presentation at global scientific forums. Dr. Lu is also actively engaged in editorial and reviewing service, including highly cited and internationally recognized publications. His work contributes directly to sustainable smart infrastructure, resilient transportation systems, and next-generation nanomaterial-based sensing technologies for real-time monitoring and structural safety. With strong interdisciplinary collaborations, proven research productivity, and a clear vision for future advancement in sustainable civil engineering materials, Dr. Dong Lu stands as a highly influential emerging leader in the field and an exemplary candidate for major international research honors.

Profile: Scopus

Featured Publications

Lei, B., Yu, L., Chen, J., Meng, Y., Lu, D., Li, N., & Qu, F. (2025). Sustainable asphalt mixtures reinforced with basic oxygen furnace steel slag: Multi-scale analysis of enhanced interfacial bonding. Case Studies in Construction Materials, 2025, e04198.

Lu, D., Jiang, X., Zhang, S., & Leng, Z. (2025). Aggregate coated with carbon nanotube–polymer composites for smart asphalt mixtures with different aggregate gradations. Journal of Materials in Civil Engineering, 2025.

Lu, D., & Jiang, X. (2025). Discussion of “Experimental investigation of the functional performance of pouring semiflexible pavement: Healing capacity, noise reduction, and electrical conductivity”. Journal of Materials in Civil Engineering, 2025.

Lu, D., Sheng, Z., Yan, B., Jiang, Z., Wang, D., & Zhong, J. (2023). Rheological behavior of fresh cement composites with graphene oxide–coated silica fume. Journal of Materials in Civil Engineering.

Yuan, J., Lu, D., Wu, H., Meng, J., Song, H., Zhong, J., & Xie, N. (2023). Carbon nanotubes-coated cement particles for cement-based sensors with excellent piezoresistivity. Smart Materials and Structures, 32(6).

Mr. Sanjay Belowar | Materials Science | Science Visionary Award

Mr. Sanjay Belowar | Materials Science | Science Visionary Award

BGMEA University of Fashion and Technology | Bangladesh

Mr. Sanjay Belowar is an emerging materials and organic chemistry researcher from Bangladesh, currently pursuing his Ph.D. in Material Chemistry at the Bangladesh University of Engineering and Technology (BUET) and serving as a Research Instructor in Chemistry at BGMEA University of Fashion and Technology. With strong expertise in organic synthesis, computational chemistry, molecular modeling, and sustainable textile chemical technologies, he has developed an impactful academic profile dedicated to advancing eco-friendly and biocompatible dye systems for industrial application. Mr. Belowar has contributed significantly to research in azo dye synthesis, DFT-based quantum chemical simulation, HOMO–LUMO analysis, antimicrobial materials, and bio-based textile processing, integrating both experimental and theoretical approaches. His scientific output includes 5 peer-reviewed documents, which have received 13 citations across 12 international scholarly documents, establishing an h-index of 2, signaling steadily growing research visibility and influence. His published work appears in high-quality journals such as Dyes and Pigments, Environmental Science and Pollution Research, Waste and Biomass Valorization, and BUFT Journal of Fashion & Technology, contributing to sustainable coloration chemistry, natural dye mordants, biomass-derived chemical materials, and computationally predicted dye–substrate interactions. In addition to research accomplishments, Mr. Belowar plays an active academic role through undergraduate supervision, laboratory mentoring, scientific writing, and collaborative project involvement, including government-funded research focused on green chemistry and environmentally responsible textile production. His technical skills include FT-IR, NMR, UV-Vis spectroscopy, ADMET screening, molecular docking, and Gaussian computational packages, complemented by experience working in synthetic chemistry laboratories and process-oriented industrial training. His research contributions support cleaner manufacturing processes, circular economy principles, and reduced reliance on hazardous chemical dyes, positioning him as a promising scientist contributing to global sustainable material technologies. Dedicated, innovative, and academically driven, Mr. Sanjay Belowar continues to advance the future of environmentally conscious chemical research and industrial application.

Profiles: Scopus | Orcid | Google Scholar

Featured Publications

Islam, S., Jalil, M. A., Belowar, S., Saeed, M. A., Hossain, S., Rahamatolla, M., & Ali, S. (2025). Role of mordants in natural fabric dyeing and their environmental impacts. Environmental Science and Pollution Research, 32(2), 452–468.

Belowar, S., Rahamatolla, M., Islam, S., Jalil, M. A., Hossain, S., Saeed, M. A., … (2024). Design, synthesis, and characterization of a novel pH-responsive azo dye incorporating a 1,3,4-thiadiazole ring for advanced textile applications. Dyes and Pigments, 231, 112410.

Belowar, S., Shetu, F. K., Hossain, M. T., Das, S., Jalil, M. A., Rahamatolla, M., … (2025). Sustainable azo dye synthesis from expired paracetamol: Structural characterization, computational insights, and textile application. Dyes and Pigments, 113099.

Saeed, M. A., Islam, S., Jalil, M. A., Hossain, S., Belowar, S., Akter, F., … (2025). Sustainable utilization of Cyanodon dactylon biomass for cellulose derivatives and biofilm production. Waste and Biomass Valorization, 1–16.

Islam, S., Belowar, S., Das, S., Rahamatolla, M., & Datta, S. C. (2025). Chemistry of natural and synthetic dye materials with metal mordants in various fabrics for sustainable textile applications: A comprehensive review. Environmental Science and Pollution Research, 1–30.

Islam, S., Jalil, M. A., Motaleb, K. Z. M. A., Saeed, M. A., Belowar, S., Rahamatolla, M., … (2025). Toward a greener fabric: Innovations in natural dyes and biomordants for sustainable textile applications. Sustainability & Circularity NOW, 2.

Dr. Jyoti Gaur | Materials Science | Young Scientist Award

Dr. Jyoti Gaur | Materials Science | Young Scientist Award

Rayat Bahra University | Greater Mohali | India

Dr. Jyoti Gaur is a dynamic materials scientist and nanotechnology researcher recognized for her pioneering work in the synthesis, characterization, and environmental applications of nanostructured materials. She holds a Ph.D. in Materials Science from RIMT University, Punjab, India, and currently serves as an Assistant Professor of Research at Rayat Bahra University, Mohali. With 29 published documents, an h-index of 9, and 383 citations from 307 sources, Dr. Gaur has demonstrated consistent excellence in research and innovation. Her studies primarily focus on green synthesis of metal oxide nanoparticles, photocatalytic degradation of organic dyes, and the fabrication of eco-friendly nanocomposites for environmental remediation and antimicrobial applications. She has published in reputed journals such as Scientific Reports, Journal of Cleaner Production, RSC Advances, and Materials Today Sustainability, contributing significantly to sustainable nanomaterial development. Dr. Gaur’s innovative mindset has also led to four granted patents related to EMI shielding, photocatalytic devices, and composite material production technologies. Her interdisciplinary approach combines materials science, environmental chemistry, and nanotechnology to address pressing global challenges in pollution control and green energy. In recognition of her scientific excellence, she has received multiple awards, including the IOP Outstanding Reviewer Award (2023), IOP Trusted Reviewer Award (2024), and Best Oral Presentation Awards at both national and international conferences. She has also contributed to international collaborations, advancing applied nanoscience research through eco-sustainable approaches. Passionate about mentoring young researchers, Dr. Gaur actively promotes scientific inquiry and innovation in academic and industrial settings. Her continued pursuit of excellence in nanomaterials and sustainable technology positions her as a rising figure in materials research, making her contributions vital to advancing the frontiers of applied science and green innovation.

Profiles: Scopus | Orcid | Google Scholar

Featured Publications

Mahajan, M., Kumar, S., Gaur, J., Kaushal, S., Somvanshi, A., Kaur, H., Singh, G., et al. (2025). Role of cellulose, phenolic compounds, and water-soluble proteins in ZnO nanoparticle synthesis using Mangifera indica leaf extract for photocatalytic and antioxidant applications. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 137066.

Mahajan, M., Kaur, R., Gaur, J., Kumar, S., Kaushal, S., Kaur, H., Bajwa, A., et al. (2025). Surface-modified ZnO nanoparticles for enhanced environmental and biomedical performance. Hybrid Advances, 8, 100342.

Sood, S., Kumar, P., Raina, I., Misra, M., Kaushal, S., Gaur, J., Kumar, S., & Singh, G. (2025). Enhancing optoelectronic performance through rare-earth-doped ZnO: Insights and applications. Photonics, 12(5), 454.

Kumar, S., Kaur, A., Gaur, J., Singh, P., Kaur, H., Kaushal, S., Dalal, J., & Misra, M. (2025). State-of-the-art in Co₃O₄ nanoparticle synthesis and applications: Toward a sustainable future. ChemistrySelect, 10(6), e202405147.

Gaur, J., Kumar, S., Pal, M., Kaur, H., Rana, R. K., Bala, K., Singh, P. P., & Rajesh, C. (2025). Bio-functionalized, elongated hexagonal bi-pyramidal Citrus limetta/ZnO nanostructures as potential photocatalytic and seed germinating agents. Functional Composites and Structures, 5(3), 035003.

Assoc. Prof. Dr. Ateeq Rahman | Material Science | Best Researcher Award

Assoc. Prof. Dr. Ateeq Rahman | Material Science | Best Researcher Award

University of Namibia | Namibia

Assoc. Prof. Dr. Ateeq Rahman is an accomplished researcher and academic with expertise in nanotechnology, material science, and renewable energy systems. Currently serving as an Associate Professor, he has established a strong research profile through his significant contributions to the synthesis, characterization, and application of nanomaterials for sustainable energy and environmental solutions. Dr. Rahman has published 38 Scopus-indexed papers, earning 659 citations from 610 documents with an h-index of 14, reflecting his research excellence and influence in the global scientific community. His work focuses on developing novel photocatalytic and electrochemical systems for energy conversion, storage, and environmental remediation, integrating green chemistry principles with cutting-edge material design. Dr. Rahman has collaborated with leading international institutions, contributing to high-impact journals in material science and energy research. His research outcomes have advanced the understanding of semiconductor nanostructures, graphene-based composites, and hybrid energy materials with improved efficiency and sustainability. In addition to his research achievements, he has actively mentored postgraduate students, secured research grants, and presented at numerous international conferences. His dedication to innovation and academic excellence has earned him recognition as one of the emerging leaders in sustainable nanomaterials research. Dr. Rahman’s interdisciplinary approach bridging chemistry, physics, and engineering demonstrates his commitment to addressing global challenges in energy and environmental science. Through his prolific publications, scientific collaborations, and mentoring efforts, Assoc. Prof. Dr. Ateeq Rahman continues to make impactful contributions to the advancement of materials research and the development of eco-friendly technologies for a sustainable future.

Profiles: Scopus | Orcid | Google Scholar

Featured Publications

Rahman, A., Willemse, V.-D.-A. C. P., & Kodicherla, S. P. K. (2025). Efficacy of cellulose-based nanocrystals derived from Acacia erioloba seedpods for dye removal: Potential and scalability challenges. Journal of Polymer Research, 32(10), Article 4592.

Mwatukange, J. P., Rahman, A., & Chiguvare, Z. (2024). Synthesis and characterisation of iron-doped manganese oxides for thermal energy storage. Results in Chemistry, 6, 101923.

Rahman, A., Shivute, P. S., & Kodicherla, S. K. (2024, May 15). Assessing the removal efficiency of ibuprofen in an aqueous solution using Acacia erioloba nanoparticles. In Proceedings (Vol. 2024, Issue 107018). MDPI.

Rahman, A., Hakwenye, H., & Uahengo, V. (2023). Waste eggshells as catalysts: An environmentally friendly approach. Detritus, 23, 18323.

Rahman, A., & Pullabhotla, R. V. S. (2022). Layered double hydroxide catalysts preparation, characterization and applications for process development: An environmentally green approach. Bulletin of Chemical Reaction Engineering & Catalysis, 17(1), 163–193.

Mr. Getaneh Worku Moges | Materials Science | Best Researcher Award

Mr. Getaneh Worku Moges | Materials Science | Best Researcher Award

University of Gondar | Ethiopia

Mr. Getaneh Worku Moges is an emerging Ethiopian chemist recognized for his contributions to natural product chemistry and nanomaterials research. He holds a Master of Science in Organic Chemistry from the University of Gondar. His research focuses on phytochemical analysis, antioxidant and antibacterial evaluation, and nanoparticle synthesis using green chemistry approaches. With 4 published documents, an h-index of 1, and 3 total citations across 3 indexed papers, Mr. Moges has demonstrated a growing influence in his field. His recent publications include Phytochemical investigation, in vitro antioxidant, antibacterial activities of the leaf and fruit extracts of Hypericum revolutum Vahl (Amija) in BMC Complementary Medicine and Therapies, Biosynthesis and characterization of copper oxide nanoparticles from Plumbago zeylanica leaf extract for antibacterial and antioxidant activities in Scientific Reports, and Phytochemical profiles and biological activity of Myrsine africana L.: A comprehensive review in Frontiers in Pharmacology. Through his interdisciplinary research, he bridges organic chemistry, nanotechnology, and pharmacology to develop eco-friendly solutions for health and environmental challenges. As an Academic Chief Technical Assistant at the University of Gondar, he has guided BSc and MSc students, fostering analytical and critical thinking in laboratory and research settings. His expertise spans UV-VIS spectroscopy, phytochemical screening, and antioxidant assays, with strong proficiency in data analysis using GraphPad Prism and ChemDraw. Beyond academia, he actively contributes to community science outreach, inspiring young researchers in Ethiopia. Mr. Moges’s dedication to advancing sustainable phytochemical and nanomaterial research, combined with his mentorship and scholarly output, positions him as a promising figure in chemical sciences with significant potential for future impact in applied chemistry and biomedical innovation.

Profiles: Scopus | Orcid

Featured Publications

Moges, G. W., Manahelohe, G. M., Assege, M. A., Tasew, B. S., Molla, D. K., & Belew, A. A. (2025). Phytochemical profiles and biological activity of Myrsine africana L.: A comprehensive review. Frontiers in Pharmacology.

Moges, G. W., Manahelohe, G. M., Assege, M. A., & Wodajo, A. T. (2025, October 22). Phytochemical investigation, in vitro antioxidant, antibacterial activities of the leaf and fruit extracts of Hypericum revolutum Vahl (Amija), and essential oil composition of the leaf extract. BMC Complementary Medicine and Therapies.

Gebrie, H. T., Assege, M. A., Meshesha, D. S., Tebeje, B. A., Moges, G. W., Wodajo, A. T., Manahelohe, G. M., & Belew, A. A. (2025, August 20). Biosynthesis and characterization of copper oxide nanoparticles from Plumbago zeylanica leaf extract for antibacterial and antioxidant activities. Scientific Reports.

Belew, A. A., Besha, A. T., Assege, M. A., & Moges, G. W. (2024). Heavy metals concentration and health risk assessment in peanut and date palm from Jigjiga City markets, Ethiopia. Discover Environment.

Moges, G. W., Manahelohe, G. M., & Asegie, M. A. (2024, May 27). Phenolic, flavonoid contents, antioxidant, and antibacterial activity of selected Eucalyptus species: Review. Biology, Medicine, & Natural Product Chemistry, 13(1), 147–157.

Dr. Eliran Solodoha | Sustainability in Material Science | Best Researcher Award

Dr. Eliran Solodoha | Sustainability in Material Science | Best Researcher Award

Peres Academic Center | Israel

Dr. Eliran Solodoha is a distinguished scholar and lecturer in entrepreneurship, innovation, and strategic management at the Department of Business Administration, Peres Academic Center, Israel. He holds a Ph.D. in Management from Ben-Gurion University of the Negev, where his doctoral work explored the dynamics of IPOs, mergers and acquisitions, and business failure in technology start-ups with a focus on gender-based differences. With an h-index of 5, 10 peer-reviewed publications, and 66 citations from 43 documents, Dr. Solodoha has established himself as a promising academic voice in entrepreneurial finance and start-up ecosystems. His research spans entrepreneurship under uncertainty, investment behavior, crowdfunding, and gender disparities in innovation, with publications in high-quality journals such as Psychology & Marketing, Journal of Retailing and Consumer Services, Journal of Business Venturing Insights, and Administrative Sciences. His work bridges behavioral economics and strategic management, offering novel insights into how entrepreneurs and investors interact under high-risk conditions. Dr. Solodoha has been recognized with multiple honors, including the Faculty Distinction Award, Outstanding Lecturer Awards from Peres Academic Center, and the Best Paper Award at the International Conference on Alternative Finance Research. As a visiting scholar at the University of Toronto, University of Agder, and Ben-Gurion University, he has collaborated internationally to advance the study of entrepreneurial behavior in extreme environments. In addition to his research, Dr. Solodoha serves as a reviewer for leading journals such as Research Policy and Journal of Small Business Management and contributes actively to entrepreneurship education by coordinating academic programs and mentoring emerging scholars. His combination of academic excellence, research productivity, and cross-disciplinary collaboration positions him as a rising leader in the global field of entrepreneurship and innovation studies.

Profiles: Google Scholar | Orcid | Scopus

Featured Publications

Maymoni, L., & Solodoha, E. (2025). Crowdfunding beyond borders: Geographic disparities in crowdfunding success. Journal of Business Venturing Insights, 23, e00520.

Solodoha, E. (2022). Improving the matching process between entrepreneurs and investors. Annals of Social Sciences & Management Studies, 7(5), 1–2.

Solodoha, E., & Mosi, R. (2025). Entrepreneurship in extremes: The mediating role of risk-taking on entrepreneurial intentions during war. Journal of Innovation and Entrepreneurship, 14(1), 111.

Friedmann, E., Solodoha, E., & Treister, D. E. (2020). Does it pay to offend? Short- and long-term responses to offensive ads.

Solodoha, E., Lev-Koren, S., & Erez, M. (2025). Science mapping on business angels: Emerging trends and future directions. In Proceedings of the 18th Annual Conference of the EuroMed Academy of Business.

Mr. Qiao Gan | Materials Science | Best Researcher Award

Mr. Qiao Gan | Materials Science | Best Researcher Award

Mr. Qiao Gan | Southwest Medical University | China

Mr. Qiao Gan is a distinguished researcher in pharmacology, currently affiliated with the Department of Pharmacology, School of Pharmacy at Southwest Medical University, where he also contributes to the Sichuan Provincial Key Laboratory of Central Nervous System Drugs and serves on multiple national scientific committees in cancer rehabilitation and anti-tumor drug development. His research spans oncology, cardiovascular pharmacology, and neurodegenerative disease, with a strong focus on elucidating molecular mechanisms, advancing drug screening strategies, and developing innovative therapeutic approaches. With 43 peer-reviewed documents, an h-index of 17, and more than 865 citations across 801 documents, his work demonstrates both productivity and high scientific impact. Mr. Qiao’s publications in leading journals such as Cells, Biochimica et Biophysica Acta (BBA) – General Subjects, International Journal of Molecular Sciences, Ageing Research Reviews, and Drug Design, Development and Therapy highlight his ability to bridge molecular biology, pharmacological intervention, and translational medicine. His research has made significant contributions to the understanding of progranulin biology, cardiomyopathy mechanisms, marine-derived protein kinase inhibitors for cancer therapy, and the use of exosome-coated miRNAs in pancreatic cancer treatment. In addition to original research, he has been principal investigator on projects supported by the Sichuan Provincial Department of Science and Technology and the National Natural Science Foundation of China, focusing on anti-tumor nano-polypeptides, lysosomal function remodeling, and synergistic therapies in oncology. His work has been recognized internationally for both innovation and translational value, with recent studies on empagliflozin in sepsis-induced cardiomyopathy and the therapeutic potential of progranulin receiving high attention. Actively engaged in collaborative research and scientific mentorship, Mr. Qiao combines fundamental discovery with clinical relevance, positioning himself as a rising leader in pharmacological sciences with a growing international research footprint.

Profiles: Scopus | Orcid | Google Scholar

Featured Publications

Qiao, G., Lu, Y., Wu, J., Ren, C., Lin, R., & Zhang, C. (2025). Progranulin’s protective mechanisms and therapeutic potential in cardiovascular disease. Cells, 14(11), 762.

Zeng, Y., Liu, X., Yi, Q., Qiao, G., Wang, L., Chen, L., Fan, L., Li, Y., Duan, L., Huang, L., et al. (2024). Free total rhubarb anthraquinones protect intestinal mucosal barrier of SAP rats via inhibiting the NLRP3/caspase-1/GSDMD pyroptotic pathway. Journal of Ethnopharmacology, 117873.

Yi, J., Luo, X., Xing, J., Gedanken, A., Lin, X., Zhang, C., & Qiao, G. (2023). Micelle encapsulation zinc-doped copper oxide nanocomposites reverse Olaparib resistance in ovarian cancer by disrupting homologous recombination repair. Bioengineering & Translational Medicine, 8(3), e10507.

Luo, X., Xing, J., Gu, Y., Qiao, G., Liu, M., Yi, J., & Ray, S. (2023). Network pharmacology analysis and experimental pharmacology study explore the mechanism of asparagus against glioblastoma. Journal of Food Biochemistry, 2023, 1468967.

Wu, A.-G., Zhou, X.-G., Qiao, G., Yu, L., Tang, Y., Yan, L., Qiu, W.-Q., Pan, R., Yu, C.-L., Law, B. Y.-K., et al. (2021). Targeting microglial autophagic degradation in NLRP3 inflammasome-mediated neurodegenerative diseases. Ageing Research Reviews, 65, 101202.