Farzaneh Barati | Biotechnology Awards | Research Excellence Award

Dr. Farzaneh Barati | Biotechnology Awards | Research Excellence Award

Dr. Farzaneh Barati | Alzahra University | Iran

Dr. Farzaneh Barati is a dedicated researcher in Microbial Biotechnology at Alzahra University, Tehran, where she is affiliated with the Department of Biotechnology, Faculty of Biological Sciences. She earned her PhD in Microbial Biotechnology after completing her BSc in Cellular and Molecular Biology–Biotechnology and MSc in Microbial Biotechnology, achieving top rankings and being admitted through a gifted-talent program. Her expertise spans microbial cloning, enzyme immobilization, green synthesis of nanoparticles, and the integration of bioinformatics into experimental design. She is also proficient in the design of experiments (DOE) and employs a broad range of bioinformatics and genetics software in her research. Dr. Barati has successfully completed several significant research projects, including cloning the phbC gene in Ralstonia eutropha to enhance polyhydroxybutyrate production, immobilization of microbial collagenase on metal nanoparticles using bioinformatic and experimental approaches, and isolation and molecular characterization of a native microbial species from soil contaminated with slaughterhouse waste, with GenBank accession documentation. Her work has resulted in multiple publications in internationally recognized journals indexed in Scopus and ISI, contributing to her scholarly impact. Her research is characterized by a focus on innovative biotechnological applications, combining molecular biology, enzyme engineering, and nanobiotechnology to address environmental and industrial challenges. Dr. Barati actively presents her findings at conferences and collaborates with fellow researchers, fostering knowledge exchange and advancing the field of microbial biotechnology. She is a full member of the Iranian Society of Microbial Science and Technology and maintains active academic profiles on Google Scholar and ResearchGate, reflecting her commitment to transparency and scholarly communication. Dr. Barati’s contributions highlight her dedication to advancing microbial biotechnology through innovative research, impactful publications, and practical applications, making her a distinguished candidate for the Research Excellence Award.

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Featured Publications

Barati, F., Hosseini, F., Vafaee, R., Sabouri, Z., Ghadam, P., Arab, S. S., Shadfar, N., & Piroozmand, F. (2024). In silico approaches to investigate enzyme immobilization: A comprehensive systematic review. Physical Chemistry Chemical Physics. https://doi.org/10.1039/d3cp03989g

Majidi Ghahfarokhi, S., Hosseini, F., Ghadam, P., & Barati, F. (2024). Isolation and characterization of a collagenase-producing bacterium from the soil contaminated with slaughterhouse waste. Biocatalysis and Agricultural Biotechnology. https://doi.org/10.1016/j.bcab.2024.103407

Barati, F., Hosseini, F., Ghadam, P., & Arab, S. S. (2024). Optimizing CuO nanoparticle synthesis via walnut green husk extract utilizing response surface methodology. Journal of Molecular Structure. https://doi.org/10.1016/j.molstruc.2024.139077

Barati, F., Asgarani, E., Gharavi, S., & Soudi, M. R. (2021). Considerable increase in Poly(3-hydroxybutyrate) production via phbC gene overexpression in Ralstonia eutropha PTCC 1615. BioImpacts. https://doi.org/10.34172/BI.2021.07

Barati, F., Hosseini, F., Habibi Moghadam, F., & Abbasi Dezfouli, S. (2021). Face mask as a tool to prevent the coronavirus disease 2019: The importance and challenges. International Journal of Health and Life Sciences. https://doi.org/10.5812/ijhls.109729

Barati, M., Javanmardi, F., Mousavi Jazayeri, S. M. H., Jabbari, M., Rahmani, J., Barati, F., Nickho, H., Davoodi, S. H., Roshanravan, N., & Mousavi Khaneghah, A. (2020). Techniques, perspectives, and challenges of bioactive peptide generation: A comprehensive systematic review. Comprehensive Reviews in Food Science and Food Safety. https://doi.org/10.1111/1541-4337.12578

María | Research Excellence | Research Excellence Award

Dr. María | Research Excellence | Research Excellence Award

Dr. María | University of Granada | Spain

María Vila Duplá is a multidisciplinary marine and aquatic scientist with expertise spanning microbial ecology, environmental monitoring, and ecosystem dynamics. Her academic foundation combines biology, marine science, and science communication, complemented by advanced training in imaging tools, bioinformatics, meta-omics, and plastic pollution assessment. This diverse educational background supports her integrated approach to studying aquatic ecosystems under global change. She has contributed to a range of research projects investigating phytoplankton dynamics, microbial consortia, ecosystem resilience, and the impacts of climate change and plastic pollution on freshwater and marine systems. Her work leverages experimental, observational, and computational methods, including field campaigns, mesocosm experiments, contaminant exposure assays, multivariate statistics, and predictive modeling. She is proficient in a wide array of laboratory techniques, from bacterial and algal culturing to flow cytometry, polymer analysis, and molecular biology workflows. In addition to research, María has extensive teaching experience at the undergraduate level in ecology, systems ecology, and environmental science, mentoring students through theses, capstone projects, and hands-on field and laboratory training. She also serves as a peer reviewer for high-impact journals and contributes as a journal specialist, highlighting her commitment to scientific rigor and dissemination. Her scientific contributions include high-quality publications in top-tier journals on topics such as microbial responses to environmental stressors, algal microbiome dynamics, and ecotoxicological effects of contaminants. She has actively presented her research at international conferences, showcasing her ability to communicate complex ecological processes to diverse audiences. María combines field expertise, laboratory proficiency, and computational skills with a strong commitment to mentorship, community engagement, and science communication. Fluent in Spanish, English, and French, she integrates interdisciplinary knowledge to address pressing environmental challenges and advance understanding of aquatic ecosystem resilience, making her a dynamic researcher, educator, and advocate for sustainable aquatic management.

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Featured Publications

Vila Duplá, M., González-Olalla, J. M., Villar-Argaiz, M., Medina-Sánchez, J. M., & Carrillo, P. (2025). Fluctuating high temperature hinders long-term phytoplankton acclimation to Saharan dust. Journal of Environmental Sciences. Advance online publication. https://doi.org/10.1016/j.jes.2025.11.051

Cabrerizo, M. J., González-Olalla, J. M., Medina-Sánchez, J. M., Vila Duplá, M., & Carrillo, P. (2025). Warming fluctuations strengthen the photo-phagotrophic coupling in mixoplanktonic protists. Microbial Ecology. Advance online publication. https://doi.org/10.1007/s00248-025-02658-2

Vila Duplá, M. (2021). Dynamics of a macrophyte-driven coastal ecotone: Underlying factors and ecological implications. Estuarine, Coastal and Shelf Science, 259, 107481. https://doi.org/10.1016/j.ecss.2021.107481

Chnar Aziz | Nanotechnology Innovations | Research Excellence Award

Dr. Chnar Aziz | Nanotechnology Innovations | Research Excellence Award

Dr. Chnar Aziz | Sulaimani Polytechnic University | Iraq

Dr. Chnar Hussein Aziz is a dedicated lecturer in the Communication Department at the Technical College of Engineering, Sulaimani Polytechnic University. With a multidisciplinary background in physics, nanoscience, and English language and literature, he brings a unique blend of technical expertise and communication skills to academia. His research primarily focuses on nanoferrite particles, including their synthesis, characterization, and applications, as well as electromagnetic interference (EMI) shielding nanocomposite materials, water pollution treatment, renewable energy, supercapacitors, antennas, and metamaterials. Dr. Aziz has authored multiple high-impact publications in international journals, addressing topics such as dysprosium-doped cobalt ferrites, Mg-substituted nanoferrites, and the influence of metamaterials on microstrip patch antennas. He has contributed significantly to advancing knowledge in nanomaterials and electromagnetic applications, reflecting a commitment to both fundamental research and practical innovations. Beyond research, he has extensive teaching experience in physics, electronics, electromagnetics, antennas, and web publishing, guiding students at both undergraduate and postgraduate levels. He also actively participates in training programs and workshops, covering computational physics, molecular dynamics simulations, nanostructure modeling, advanced analytical instrumentation, and pedagogical methods. Dr. Aziz is engaged in academic leadership and service, having held departmental leadership positions and contributing as a reviewer for international journals. His involvement extends to professional organizations, where he plays an active role in promoting materials science and nanotechnology through membership in national and regional scientific associations. He combines his academic and research pursuits with community engagement, participating in initiatives ranging from community-based rehabilitation programs to agricultural monitoring projects. Proficient in English, Arabic, and Kurdish, and skilled in computational tools and analytical software, Dr. Aziz exemplifies a scholar committed to advancing science, technology, and education while fostering meaningful societal impact.

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Featured Publications

Aziz, C., & Azhdar, B. (2022). Synthesis of dysprosium doped cobalt ferrites nanoparticles by sol-gel auto-combustion method and influence of grinding techniques on structural, morphological, and magnetic properties. Journal of Magnetism and Magnetic Materials, 542, 168577.

Aziz, C. H. (2016). Electromagnetic effect of rectangular spiral metamaterial on microstrip patch antenna performance. Journal of Modeling and Simulation of Antennas and Propagation, 2(1), 13–21.

Aziz, C. H., Abdul, N. A., Ali, R. A., Salih, A. M., Rasul, H. I., Raheem, S. M., & Yaqub, K. Q. (2025). From farm to fallout: Agriculture’s role in America’s environmental crisis. Asian Journal of Advances in Agricultural Research, 25(6), 16–29.

Narayankar, C. U., Aziz, C. H., Koheil, H., Patil, R. H., Patil, S. B., Hosseini-Bandegharaei, A., Keshta, B. E., Ayyar, M., Patil, R. P., Gnanasekaran, L., Mohanavel, V., Santhamoorthy, M., & Santhoshkumar, S. (2025). Impact of Mg²⁺ ions substitution on structural, morphological and electrical impedance study of magnetic Ni₀.₆₋ₓMgₓCo₀.₄Fe₂O₄ (x = 0.1, 0.2, 0.3, 0.4, 0.5) nanoferrites. Journal of Superconductivity and Novel Magnetism, 38(5), 208.

Aziz, C. (2025). Effects of grinding technique and Dy³⁺ doping on optical and impedance properties of cobalt ferrites synthesized by the sol-gel auto-combustion method. Ceramic International. https://doi.org/10.1016/j.ceramint.2025.11.305

Yun Liu | Material Science | Research Excellence Award

Ms. Yun Liu | Material Science | Research Excellence Award 

Ms. Yun Liu | Beihua University | China

Yun Liu is a materials researcher affiliated with Beihua University, specializing in wood protection, wood anatomy, and weather-resistant material modification. With a strong academic foundation supported by a Master’s degree in Materials and Chemical Engineering, Yun Liu has developed expertise in material characterization, performance testing, and advanced analytical techniques used to evaluate structural, chemical, and aesthetic changes in lignocellulosic materials. A key contribution of Yun Liu’s work is the innovative investigation into the dynamic weathering behavior of heat-treated wood. This research integrates continuous monitoring of visual and structural degradation with in-depth chemical analysis, offering a holistic framework for understanding the durability of modified wood materials. By correlating changes in color, gloss, and surface properties with transformations in lignin, extractives, and microstructural features, the study provides essential insights into how heat treatment influences early-stage weathering. Importantly, the findings reveal that heat treatment adjusts the degradation pathways of lignin, contributing to enhanced color stability rather than merely slowing chemical deterioration. This mechanistic understanding supports the development of targeted modification strategies for improving the long-term service life and aesthetic performance of outdoor wood products. Yun Liu has published as first author in the journal Polymers, where the study on dynamic weathering of heat-treated Chinese fir highlights the scientific and practical relevance of this research. This work establishes a foundation for future advancements in sustainable wood protection technologies and environmentally conscious material engineering. Committed to academic integrity and professional growth, Yun Liu maintains active research links through recognized scholarly platforms and contributes to the broader scientific community through collaboration and knowledge dissemination. With a focus on innovation, material durability, and eco-friendly wood modification, Yun Liu aims to advance high-impact research aligned with the standards of the Research Excellence Award category.

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Featured Publications

Liu, Y., Gao, C., Wang, Q., Hadili, B., Miao, Y., Cui, X., & Matsumura, J. (2025). Dynamic weathering behavior of heat-treated Chinese fir: Surface properties, chemical composition, and microstructure. Polymers, 17(23), 3143. https://doi.org/10.3390/polym17233143

Rim Hachana | Research Excellence | Research Excellence Award

Prof. Rim Hachana | Research Excellence | Research Excellence Award 

Prof. Rim Hachana | ESDES Business School – Lyon Catholic University | France

Dr. Rim Hachana is an accomplished Associate Professor of Strategy, Entrepreneurship, and International Business at ESDES Lyon Business School, Catholic University of Lyon (France), and a Full Professor at the Mediterranean School of Business (Tunisia). With more than two decades of academic and research experience, she has held progressive roles across leading universities in France and Tunisia, including Paris Dauphine University, Tunis Business School, and Manouba University. Her scholarly expertise spans corporate governance, entrepreneurship, responsible management, innovation, emotional competencies, and AI–human interaction in management. She has built a robust interdisciplinary research trajectory, publishing extensively in internationally recognized journals classified by ABS, CNRS, FNEGE, and contributing thought-leadership pieces for outlets such as The Conversation.Dr. Hachana has supervised numerous PhD dissertations (including several international cotutelle programs), producing award-winning doctoral research on organizational resilience, territorial governance, entrepreneurial competencies, and emotional intelligence in management. A committed educator and academic leader, she teaches a diverse portfolio of courses including Strategic Management, Corporate Governance, Responsible Management, Research Methodology, International Management, and Entrepreneurship & Innovation. She has also directed major research laboratories (RIGUEUR) and led multiple scientific initiatives and research programs. Her academic journey includes a Doctorate in Management from Paris Dauphine University, multiple international qualifications, and dual recognitions of HDR (Habilitation à Diriger des Recherches) in both France and Tunisia. Across her career, Dr. Rim Hachana has established herself as an influential voice in strategic management, innovation, ethics, and socially responsible governance, consistently bridging research, education, and societal impact.

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Featured Publications

Hachana, R. (2025). Shadows and lights: Disabled workers’ use of digital technologies in the workplace. Equality, Diversity and Inclusion: An International Journal. https://doi.org/10.1108/EDI-06-2024-0246

Hachana, R., Najar, T., & Ivanaj, S. (2025). Exploring the effect of institutional trust on the relationship between environmental consciousness and household recycling behavior. Environmental Management. https://doi.org/10.1007/s00267-024-02090-1

Hachana, R., & Gilormini, P. (2024). An alternative understanding of social entrepreneurs in terms of resonance and vulnerability: Based on Hartmut Rosa’s philosophy and sociology. Philosophy of Management. https://doi.org/10.1007/s40926-024-00247-w

Ben Zammel, I., & Hachana, R. (2023). Rethinking training transfer: A practice theory perspective. The Learning Organization. https://doi.org/10.1108/TLO-11-2021-0130

Hachana, R., Gharbi, S., & Chichti, F. (2021). De l’éthique du care et du travail émotionnel : Quelle réalité dans les EHPAD français installés en Tunisie ? Management & Avenir Santé, 7, 77–97. https://doi.org/10.3917/mavs.007.0077

Shivam Tripathi | Research Excellence | Research Excellence Award

Assist. Prof. Dr. Shivam Tripathi | Research Excellence | Research Excellence Award

Assist. Prof. Dr. Shivam Tripathi | Indian Institute of Technology Kanpur | India

Dr. Shivam Tripathi is a materials engineering researcher and faculty member specializing in atomistic simulations, machine learning–driven materials discovery, and the design of next-generation functional materials. With training from globally recognized institutions in materials science and computational engineering, he integrates advanced molecular dynamics, density functional theory, and data-driven modeling to address challenges in catalysis, shape memory alloys, energy storage, electronic materials, and space-relevant systems. His academic foundation combines rigorous theoretical knowledge with extensive hands-on experience in computational methods, including large-scale molecular dynamics, enhanced sampling, and ab-initio simulations. During his postdoctoral research, he worked on dynamic mechanisms of ammonia synthesis on iron surfaces under operando conditions, unveiling fundamental insights into nitrogen adsorption, dissociation, and poisoning pathways using machine-learning-accelerated simulation frameworks. His doctoral research provided breakthroughs in understanding nanoscale precipitate effects on martensitic transformations, enabling guidelines for designing low-fatigue, ultra-fine-grain shape memory alloys and uncovering mechanisms governing superelasticity and phase transformation behavior. Dr. Tripathi’s research portfolio extends to designing tunable transformations in lightweight alloys, modeling environment-dependent atomic-level properties in complex-concentrated alloys, and unraveling phonon transport mechanisms in nanoscale copper hybrids for nanoelectronics. He has contributed to multiple high-impact publications across catalysis, materials physics, and computational materials science, and his work has been recognized through awards, research honors, and competitive travel grants. His technical expertise includes Python, C, VASP, LAMMPS, PLUMED, Quantum Espresso, TensorFlow, and advanced materials characterization methods. Beyond research, he has contributed significantly to academic service and outreach through leadership roles, mentoring, teaching computational and experimental materials science courses, and developing open-access scientific software tools used by the broader materials community. His contributions reflect a commitment to innovation, academic excellence, and advancing computational materials engineering.

Profile: Google Scholar

Featured Publications

Perego, S., Bonati, L., Tripathi, S., & Parrinello, M. (2024). How dynamics changes ammonia cracking on iron surfaces. ACS Catalysis, 14(19), 14652–14664.

Tripathi, S., Bonati, L., Perego, S., & Parrinello, M. (2024). How poisoning is avoided in a step of relevance to the Haber–Bosch catalysis. ACS Catalysis, 14, 4944–4950.

Tripathi, S., Vishnu, K. G., Titus, M. S., & Strachan, A. (2020). Tunability of martensitic transformation in Mg–Sc shape memory alloys: A DFT study. Acta Materialia, 189, 1–9.

Tripathi, S., Verma, V., Brown, T. W., & Kulkarni, K. N. (2017). Effect of small amount of manganese on the interdiffusivities in Fe–Al alloys. Journal of Phase Equilibria and Diffusion, 38(2), 135–142.

Tripathi, S., Vishnu, K. G., Titus, M. S., & Strachan, A. (2022). Uncovering the role of nanoscale precipitates on martensitic transformation and superelasticity. Acta Materialia, 229, 117790.

Farnell, M. S., McClure, Z. D., Tripathi, S., & Strachan, A. (2022). Modeling environment-dependent atomic-level properties in complex-concentrated alloys. The Journal of Chemical Physics, 156(11).

Ahsan Khan | Biomedical Engineering | Research Excellence Award

Dr. Ahsan Khan | Biomedical Engineering | Research Excellence Award

Dr. Ahsan Khan | Tongji University | China

Dr. Ahsan Riaz Khan is an accomplished researcher specializing in chemical engineering, environmental sciences, corrosion science, surface engineering, and biomaterials. He holds advanced academic qualifications in Chemical Engineering and Environmental Sciences, complemented by strong interdisciplinary training across materials development, environmental health, and biomedical applications. He is currently serving as a Postdoctoral Researcher at the School of Medicine, Tongji University, Shanghai, where he contributes to cutting-edge research on biomaterials, corrosion-resistant surfaces, biocompatibility, drug-release systems, and in-vivo/in-vitro implant evaluations. Dr. Khan’s research expertise spans the development of novel, sustainable, and cost-effective coating materials; surface modification of metals and alloys; tribology; anticorrosion technology; adhesion engineering; electrochemical methods; and advanced techniques in cell culture, toxicity analysis, and immunohistochemistry. His interdisciplinary background enables him to work at the intersection of engineering, materials science, medicine, and environmental sustainability. He has published 28 peer-reviewed research papers, contributing significantly to high-impact journals in materials science, corrosion protection, biomaterials, environmental pollution, electrochemistry, and regenerative medicine. His publications have received over 330 citations with an H-index above 10, reflecting strong academic influence and global research engagement. His work includes notable contributions to magnesium alloys, smart scaffolds, hybrid biomaterials, environmental risk assessments, supercapacitive materials, and psychological health investigations. Dr. Khan has earned multiple academic honors, including innovation awards, competitive scholarships, excellence certificates, and internship recognitions. He has participated in a wide range of international conferences, workshops, and training programs in environmental management, materials engineering, GIS, chemical engineering, and waste management. Skilled in a broad array of analytical and characterization techniques—such as SEM, TEM, XPS, XRD, TGA, ICP-OES, GC-MS, Raman spectroscopy, and electrochemical workstations—Dr. Khan combines technical depth with strong research leadership. Fluent in English, Urdu, and conversational Chinese (HSK-3), he remains committed to advancing global research in materials innovation, corrosion engineering, environmental sustainability, and biomedical technology.

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Featured Publications

Khan, A. R., Grewal, N. S., Zhou, C., Yuan, K., Zhang, H. J., & Jun, Z. Recent advances in biodegradable metals for implant applications: Exploring in vivo and in vitro responses. Results in Engineering, 20, 101526.

Zafar, Z., Mehmood, M. S., Ahamad, M. I., Chudhary, A., Abbas, N., Khan, A. R., … Trend analysis of the decadal variations of water bodies and land use/land cover through MODIS imagery: An in-depth study from Gilgit-Baltistan, Pakistan. Water Supply, 21(2), 927–940.

Rehman, A. U., Shah, M. Z., Ali, A., Zhao, T., Shah, R., Ullah, I., Bilal, H., Khan, A. R., … Thermochemical heat storage ability of ZnSO₄·7H₂O as potential long-term heat storage material. International Journal of Energy Research, 45(3), 4746–4754.

Khan, M., Tiehu, L., Hussain, A., Raza, A., Zada, A., Alei, D., Khan, A. R., Ali, R., … Physiochemical evaluations, mechanical attenuations and thermal stability of graphene nanosheets and functionalized nanodiamonds loaded pitch-derived carbon foam composites. Diamond and Related Materials, 126, 109077.

Khan, Z. U., Razzaq, A., Khan, A., Rehman, N. U., Khan, H., Khan, T., Khan, A. U., … Physicochemical characterizations and pharmacokinetic evaluation of pentazocine solid lipid nanoparticles against inflammatory pain model. Pharmaceutics, 14(2), 409.

Vassilis Kostopoulos | Engineering Achievements | Best Researcher Award

Prof. Vassilis Kostopoulos | Engineering Achievements | Best Researcher Award

Prof. Vassilis Kostopoulos | University of Patras | Greece

Professor Vassilis Kostopoulos is a leading Greek academic in applied mechanics, composite materials, and aerospace engineering. He holds a degree in Mechanical Engineering from the National Technical University of Athens and a PhD in Applied Mechanics from the University of Patras, specializing in wave propagation, scattering, and non-destructive testing of composite materials. He has served as Professor and Director of the Applied Mechanics & Vibrations Laboratory at the University of Patras, contributing significantly to its international visibility and research impact. He has held prestigious international appointments as a Visiting Scientist at JRC Petten in the Netherlands, as a Visiting Professor at the University of Delaware in the United States, and most recently at George Emil Palade University of Medicine, Pharmacy, Science, and Technology of Târgu Mureș in Romania. Professor Kostopoulos has played influential roles in major European aerospace and composite-materials initiatives, serving on the Technical Committee of Clean Aviation, the Advisory Council for Aviation Research and Innovation in Europe, and the Council of the European Society for Composite Materials, where he also served as President. He has additionally contributed to several European research and innovation program committees and evaluation panels. His expertise spans a broad teaching portfolio at undergraduate and graduate levels, including mechanics, composite materials, wave propagation, elasticity, fatigue, structural design, non-destructive inspection, and aerospace technologies. His research interests include lightweight composite structures, structural health monitoring, nano-engineered composites, high-strain-rate behavior, additive manufacturing, space technologies, unmanned aerial systems, and biomechanics. Professor Kostopoulos has an extensive scholarly record, with hundreds of publications in international journals and conferences, several books and book chapters, invited lectures, and numerous technical reports. He has coordinated a large number of international research projects funded by European and global organizations, supervised many PhD and MSc theses, co-organized numerous international conferences, and holds multiple European, US, and national patents. His work has earned thousands of citations, high bibliometric indices, and multiple international awards in aerospace, innovation, and space-related competitions.

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Featured Publications

Karatzas, E., Nikolaou, E., Pitsis, A., Alexopoulos, S., Roussos, S., Georgantakis, E., Lappas, V., & Kostopoulos, V. (2026). Conceptual design and analysis of a tube-launched fixed-wing UAV with integrated folding wing systems. Aerospace Science and Technology. https://doi.org/10.1016/j.ast.2025.111248

Moica, S., Lucian, T., Kostopoulos, V., & Mostafa, N. A. (2025). GenAI technology approach for sustainable warehouse management operations: A case study from the automotive sector. Sustainability. https://doi.org/10.3390/su17209081

Tsokanas, P., Santandrea, F., Momm, G. G., Rajčić, V., Skejić, D., Rajnovic, D., da Silva, L. F. M., & Kostopoulos, V. (2025). Certification of adhesively bonded structures: Review and outlook. International Journal of Adhesion and Adhesives. https://doi.org/10.1016/j.ijadhadh.2025.104041

Bouzoukis, K.-P., Moraitis, G., Kostopoulos, V., & Lappas, V. (2025). An overview of CubeSat missions and applications. Aerospace. https://doi.org/10.3390/aerospace12060550

Nikolaou, E., Karatzas, E., Kilimtzidis, S., & Kostopoulos, V. (2025). Winglet design for class I mini UAV—Aerodynamic and performance optimization. Engineering Proceedings. https://doi.org/10.3390/engproc2025090111

Petropoulos, G. N., Tsokanas, P., Kotrotsos, A., & Kostopoulos, V. (2025). Recycled glass fibre–epoxy composites based on recovered fabrics from an environment-friendly combined solvolysis and thermolysis route. Composites Science and Technology. https://doi.org/10.1016/j.compscitech.2025.111048

Isabelle Boutron | Research Excellence | Research Excellence Award

Prof. Isabelle Boutron | Research Excellence | Research Excellence Award

Prof. Isabelle Boutron | Université Paris Cité | France

Dr. Fatimah Ibrahim Qassadi is a dedicated academic, pharmacist, and emerging research leader with extensive experience across clinical, academic, and scientific research environments. With over four years of service in one of Riyadh’s largest governmental hospitals and current appointment as a Lecturer at Prince Sattam bin Abdulaziz University (PSAU), she brings a powerful blend of clinical expertise, teaching excellence, and research innovation. Her previous role as a Teaching Assistant at the University of Nottingham’s School of Pharmacy strengthened her international academic exposure and commitment to high-quality pharmaceutical education. Dr. Qassadi is deeply passionate about fostering supportive learning environments, mentoring future pharmacy professionals, and enhancing students’ communication, leadership, teamwork, and critical-thinking skills. Her work strongly aligns with Saudi Vision 2030, where she contributes to transforming healthcare and higher education through innovative teaching methodologies, advanced pharmaceutical research, and patient-centered care. She is committed to elevating the quality of pharmacy education and strengthening healthcare outcomes across Saudi Arabia’s evolving knowledge-based economy. In addition to her academic and clinical achievements, Dr. Qassadi has established a strong research footprint. Her Scopus profile demonstrates 45,400 citations across 40,318 citing documents, with 181 published documents and an h-index of 62—reflecting substantial scholarly impact and global research influence. These metrics highlight the depth and reach of her contributions in pharmaceutical sciences, microbiology, and therapeutic innovation. (Note: The Scopus “View h-index” button is disabled in preview mode.) With a proven record in scientific writing, clinical research, and interdisciplinary collaboration, Dr. Qassadi continues to advance impactful research while supporting the next generation of healthcare professionals.

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Featured Publications

Xinping Duan | Green Chemistry | Research Excellence Award

Prof. Xinping Duan | Green Chemistry | Research Excellence Award

Prof. Xinping Duan | Xiamen University | China

Prof. Xinping Duan of Xiamen University, China, is an internationally recognized researcher in catalysis, materials chemistry, and sustainable chemical transformations. With a distinguished academic career spanning nearly two decades, he has established himself as a leading figure in the fields of heterogeneous catalysis, CO₂ conversion, selective hydrogenation, photocatalysis, and advanced nanomaterials. His research contributions have significantly advanced the understanding of catalytic mechanisms, metal–support interactions, and rational catalyst design for energy-efficient and environmentally friendly chemical processes. Prof. Duan’s scientific impact is reflected in his outstanding publication metrics: over 72 papers, an H-index of 33, and more than 3,318 citations. His work consistently appears in top-tier journals, including Science, Nature Communications, Science Advances, ACS Catalysis, Chemical Engineering Journal, Journal of Catalysis, and Chemical Science. Several of his landmark papers—such as those on copper–silica nanocatalysts, selective CO₂ hydrogenation, and novel metal oxide interfaces—have received exceptional citation counts and have influenced both academic research and industrial catalyst development. A hallmark of Prof. Duan’s research is his ability to integrate advanced nanostructures, metal phosphides, metal carbides, and polyoxometalates to achieve high catalytic selectivity and stability. His studies on hydrogenolysis, hydrogenation, and biomass-derived oxygenate conversion have contributed to the development of greener pathways for producing fuels, fine chemicals, and value-added intermediates. He has also explored cutting-edge topics such as oxygen vacancy engineering, interfacial electron localization, spillover effects, and ambient-pressure catalytic processes. Through his rigorous research approach and sustained scientific productivity, Prof. Xinping Duan has earned a strong reputation as a catalyst innovation leader in China and abroad. His work continues to shape modern heterogeneous catalysis, clean energy conversion, and sustainable chemical engineering, positioning him as a prominent contributor to global scientific advancement.

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Featured Publications

Lin, H., Liang, X., Wen, Z., Jiao, W., Wang, R., Lian, Y., & Duan, X. (2025). The superiority of W⁶⁺ overturns the CO₂ hydrogenation selectivity of iridium. Chemical Communications. https://doi.org/10.1039/D5CC02796A

Cheng, T., Liu, Y., Miao, F., Duan, X., & Liu, Y., & Jiao, W. (2025, July). Catalytic ozonation degradation of sulfamethoxazole by high gravity coupled monolithic catalyst Ce–Co/CH: Efficacy, mechanism, pathways and toxicity. Chemical Engineering Journal. https://doi.org/10.1016/j.cej.2025.163553

Duan, X., Zhao, Y., Chou, H.-L., Zuo, J., Wang, R., Jiao, W., Fang, H., Zheng, Y., Lin, H., Ye, L., et al. (2025, March 7). Reversible spillover wakens reactivity of dormant modular hydrochlorination catalysts. ACS Catalysis. https://doi.org/10.1021/acscatal.4c06661

Duan, X., Zuo, P., Li, N., Lu, J., Zhang, J., Wen, Z., Fang, H., Jiao, W., Wang, R., & Lin, H. (2024, October 22). Collective redox-shuttling properties of nanoalloys boost water electrolysis of nitrides [Preprint]. https://doi.org/10.21203/rs.3.rs-5236379/v1

Ji, X., Zhang, J., Li, N., Qiu, L., Zhang, G., Duan, X., & Wang, R. (2024, May 13). Accelerated “electron converter” characteristics of NiCo-LDH for a CdS-carbide photocatalytic system with a dual heterointerface. ACS Sustainable Chemistry & Engineering. https://doi.org/10.1021/acssuschemeng.4c00778

Ji, X., Zhang, J., Zhang, G., Li, N., Wang, R., Lin, H., & Duan, X. (2024, April). Dual interfacing with metallic cobalt boosts the electron shuttle of CdS-carbide nanoassemblies. Journal of Colloid and Interface Science. https://doi.org/10.1016/j.jcis.2024.01.142