Yuriy Sirenko | Cardiology | Editorial Board Member

Prof. Dr. Yuriy Sirenko | Cardiology | Editorial Board Member

Prof. Dr. Yuriy Sirenko | National MD Strazhesko Institute of Cardiology, Clinical and Regenerative Medicine | Ukraine
Prof. Dr. Yuriy Sirenko is a leading figure in contemporary cardiology, recognized for his extensive contributions to arterial hypertension, pulmonary hypertension, and cardiovascular hemodynamics. As Head of the Department of Arterial Hypertensions at the National Scientific Center “M.D. Strazhesko Institute of Cardiology, Clinical and Regenerative Medicine,” he has shaped national and international approaches to hypertension research and treatment for more than three decades. His career encompasses major clinical, research, and administrative roles, including leadership of the Pulmonary Arterial Hypertension Center and serving as Chief Cardiologist and Senior Adviser to the Ukrainian Ministry of Public Health, where he played a central role in advancing large-scale hypertension prevention and treatment programs. Prof. Sirenko has been deeply engaged in global scientific collaboration through active involvement in the European Society of Cardiology, European Society of Hypertension, International Society of Hypertension, International Society of Vascular Health, American Society of Hypertension, and American Heart Association. He has contributed to several landmark ESC/ESH and ESC/ERS guidelines, which significantly influence cardiovascular clinical practice worldwide. As Editor-in-Chief of the Ukrainian Journal of Arterial Hypertension and a member of multiple editorial boards, he supports the dissemination of high-impact cardiovascular research. With more than 600 publications indexed in major scientific databases, his work spans primary and secondary hypertension, pulmonary vascular disease, heart failure, right heart catheterization, hemodynamic profiling, and both pharmacological and non-pharmacological therapeutic strategies. His scientific leadership has been recognized through national awards, including the State Prize in Science and Technology and the title Honored Medical Doctor of Ukraine, underscoring his lasting impact on cardiovascular medicine.

Profile: Scopus | ORCID | Google Scholar

Featured Publications

Mancia, G., Fagard, R., Narkiewicz, K., Redon, J., Zanchetti, A., Böhm, M., … Sirenko, Y. (2013). 2013 ESH/ESC Guidelines for the management of arterial hypertension. Arterial Hypertension, 17(2), 69–168.

Williams, B., Mancia, G., Spiering, W., Agabiti Rosei, E., Azzi, E., … Sirenko, Y. (2018). 2018 ESC/ESH Guidelines for the management of arterial hypertension. European Heart Journal, 39(33), 3021–3104.

Galiè, N., Humbert, M., Vachiery, J., Gibbs, S., Lang, I., … Sirenko, Y. (2015). 2015 ESC/ERS Guidelines for the diagnosis and treatment of pulmonary hypertension. European Respiratory Journal, 46, 903–975.

Knuuti, J., Wijns, W., Saraste, A., Capodanno, D., Barbato, E., … Sirenko, Y. (2019). 2019 ESC Guidelines for the diagnosis and management of chronic coronary syndromes. European Heart Journal, 40, 1–90.

Humbert, M., Kovacs, G., Hoeper, M. M., Badagliacca, R., Berger, R. M. F., Brida, M., … Sirenko, Y. (2022). 2022 ESC/ERS Guidelines for the diagnosis and treatment of pulmonary hypertension: Developed by the task force for the diagnosis and treatment of pulmonary hypertension of the European Society of Cardiology and the European Respiratory Society. European Heart Journal, 43(38), 3618–3731.

Abdulrahman Alhamzan | Biomass | Best Industrial Research Award

Prof. Abdulrahman Alhamzan | Biomass | Best Industrial Research Award

Professor | Imam Mohammad ibn Saud Islamic University (IMSIU) | Saudi Arabia

Abdulrahman Ghonaim A. Alhamazani is a Saudi Arabian chemist and Full Professor in the Department of Chemistry at Al-Imam Muhammad Ibn Saud University in Riyadh, recognized for his extensive contributions to eco-friendly sustainable materials and circular economy research. He holds a Bachelor of Science and a Master of Science in Chemistry from King Saud University, and a PhD in Chemistry from West Virginia University, USA. With a career spanning academic, research, and administrative leadership, he has served as Vice-Dean for Academic Affairs, Vice-Dean for Development and Quality, Laboratories Manager, and Chair of Chemical Technology, playing a key role in academic accreditation, strategic planning, and curriculum advancement. His scientific work focuses on converting agricultural biomass and industrial waste into value-added products, including adsorbent materials for wastewater treatment, nanocellulose and biopolymer applications, and sustainable fertilizers from protein-rich waste sources, alongside investigations in electroanalytical chemistry and novel organic materials. Professor Alhamazani has received multiple funded research grants, collaborated internationally—including partnerships involving Stony Brook University—and contributed significantly to high-impact scientific publications and patents in nanocomposites and biomass-derived materials. He has presented his work at global conferences and participated in professional training in intellectual property, design thinking, project management, and academic quality assurance. Fluent in Arabic and English, he is an active member of the Saudi Chemical Society and the American Chemical Society. His career reflects a strong commitment to advancing green chemistry, strengthening research innovation, and supporting the development of sustainable industrial and environmental solutions in line with modern scientific and societal needs.

Featured Publications

El-Shamy, N. T., Alkaoud, A. M., Hussein, R. K., Ibrahim, M. A., & Alhamzani, A. G. (2022). DFT, ADMET and molecular docking investigations for the antimicrobial activity of 6, 6′-diamino-1, 1′, 3, 3′-tetramethyl-5, 5′-(4-chlorobenzylidene) bis [pyrimidine-2, 4-dione]. Molecules, 27(3), 620.

Alghamdi, S. K., Abbas, F., Hussein, R. K., & Alhamzani, A. G. (2023). Spectroscopic characterization (IR, UV-Vis), and HOMO-LUMO, MEP, NLO, NBO analysis and the antifungal activity for 4-bromo-N-(2-nitrophenyl) benzamide; using DFT modeling. Journal of Molecular Structure, 1271, 134001.

Shaaban, S., Abdou, A., Alhamzani, A. G., Abou-Krisha, M. M., & Al-Qudah, M. A. (2023). Synthesis and in silico investigation of organoselenium-clubbed Schiff bases as potential Mpro inhibitors for the SARS-CoV-2 replication. Life, 13(4), 912.

Deghady, A. M., Hussein, R. H., Alhamzani, A. G., & Mera, A. (2021). Density functional theory and molecular docking investigations of the chemical and antibacterial activities for 1-(4-hydroxyphenyl)-3-phenylprop-2-en-1-one. Molecules, 26, 3631.

Yousef, T. A., Alhamzani, A. G., Abou-Krisha, M. M., Kumar, C. B. P., Raghu, M. S., Prashanth, M. K., & Jeon, B. H. (2023). Experimental and theoretical examinations of triazole linked saccharin derivatives as organic corrosion inhibitors for mild steel in hydrochloric acid. Journal of Molecular Structure, 1275, 134603.

Huang, X., Hadi, P., Joshi, R., Alhamzani, A., & Hsiao, B. (2023). A comparative study of mechanism and performance of anionic and cationic dialdehyde nanocelluloses for dye adsorption and separation. ACS Omega, 8(8).

Alhamzani, A. G., Yousef, T. A., Abou-Krisha, M. M., Kumar, K. Y., Prashanth, M. K., Parashuram, L., Jeong, B. H., & Raghu, M. S. (2023). Fabrication of layered In2S3/WS2 heterostructure for enhanced and efficient photocatalytic CO2 reduction and various paraben degradation in water. Chemosphere, 322.

Yousef, T. A., Alhamzani, A. G., Abou-Krisha, M. M., Kanthimathi, G., Raghu, M. S., & Prashanth, M. K. (2023). Retracted: Synthesis, molecular docking study and anticancer activity of novel 1, 3, 4-oxadiazole derivatives as potential tubulin inhibitors. Heliyon, 9(2).

Touha Nazrun | Composite Materials | Best Researcher Award

Mrs. Touha Nazrun | Composite Materials | Best Researcher Award

Mrs. Touha Nazrun | Western Sydney University | Australia

Mrs. Touha Nazrun is an emerging researcher in fire safety engineering whose work demonstrates strong scientific promise, technical depth, and consistent research productivity. Her role as a Casual Research Assistant at Western Sydney University involves conducting experimental studies on the application of developed intumescent coatings on aluminium sheets, ACP cladding panels, gypsum boards, and concrete materials, with a focus on enhancing fire resistance and evaluating material performance under high-temperature conditions. She has authored several peer-reviewed publications in reputable journals, including contributions to Sustainability, Progress in Organic Coatings, and Fire, covering topics such as sustainable biopolymer-based cladding materials, fire performance improvements of aluminium composite panels, and comprehensive reviews of intumescent coating formulations and manufacturing methods. Her conference paper on the fire behaviour of aluminium sheets coated with intumescent materials earned a Best Paper Award, underscoring the originality and impact of her research. She maintains an active research pipeline with submitted and ready-to-submit manuscripts addressing material characterization, polymer–mineral filler compositions, and the use of recycled silicon dioxide in coating systems. Her scientific contributions extend to practical fire safety advancements, sustainable material development, and performance evaluation of protective coatings, reflecting her commitment to solving real-world engineering challenges. Beyond research, she has participated in technical conferences, volunteered in professional events related to fire safety engineering, and engaged in community and organizational activities, demonstrating a strong service orientation alongside academic excellence. Her growing body of work positions her as a promising researcher contributing valuable knowledge to the fields of fire protection materials, sustainable cladding technologies, and applied fire safety engineering.

Profile:  Scopus | ORCID | Google Scholar | ResearchGate

Featured Publications

Nazrun, T., Hassan, M. K., Hossain, M. D., Ahmed, B., Hasnat, M. R., & Saha, S. (2024). Application of biopolymers as sustainable cladding materials: A review. Sustainability, 16(1), 27.

Nazrun, T., Hassan, M. K., Hasnat, M. R., Hossain, M. D., Ahmed, B., & Saha, S. (2025). A comprehensive review on intumescent coatings: Formulation, manufacturing methods, research development, and issues. Fire, 8(4), 155.

Nazrun, T., Hassan, M. K., Hasnat, M. R., Hossain, M. D., & Saha, S. (2025). Improving fire performance of solid aluminium and composite cladding panels incorporating intumescent coatings. Progress in Organic Coatings, 201, 109142.

Nazrun, T., Hassan, M. K., Hasnat, M. R., Hossain, M. D., & Saha, S. (2024). Comparative study on fire behaviour of solid aluminium sheets coated with intumescent materials. Proceedings of the International Conference on Fire Safety Engineering Research and Practice.

Sun Jae Yoo | Civil Engineering | FRP Engineering Excellence Award

Dr. Sun Jae Yoo | Civil Engineering | FRP Engineering Excellence Award

Researcher | University of Illinois at Urbana-Champaign | United States

Dr. Sun-Jae Yoo is a leading researcher in advanced FRP engineering, with a strong focus on the structural performance, bond behavior, and durability of CFRP bars used in concrete systems under normal and extreme conditions. His work significantly advances understanding of helically ribbed CFRP bar bonding, development length, flexural behavior, and lap-splice mechanics in UHPC and UHPFRC matrices, providing crucial insights for enhancing structural safety and design efficiency. He has conducted extensive research on the residual bond behavior of CFRP and steel reinforcements after elevated-temperature exposure, contributing to improved fire-resilience strategies for modern infrastructure. Dr. Yoo’s research portfolio further includes development of smart strengthening techniques for fire-damaged concrete structures using hybrid FRP bars and advanced cementitious composites, alongside major contributions to CNT-reinforced lightweight high-strength concrete, DfMA-based modular bridge systems, and electrically conductive concretes for EMP protection. His publications in high-impact journals highlight innovative findings on microstructural enhancement, creep reduction, and structural performance gains enabled by CNT and FRP technologies. Through participation in multiple national research programs, he has advanced solutions for zero-corrosion CFRP reinforcement, sustainable shelter-in-place systems, and next-generation composite materials. His achievements, supported by multiple awards for outstanding papers and research excellence, demonstrate his leadership in developing resilient, high-performance FRP-integrated structural systems.

Profile:  ORCID  |  Google Scholar

Featured Publications

  • Yoo, S. J., Hong, S. H., & Yoon, Y. S. (2023). Bonding behavior and prediction of helically ribbed CFRP bar embedded in ultra-high-performance concrete (UHPC). Case Studies in Construction Materials, 19, e02253.

  • Yoo, S. J., Kim, Y. H., Yuan, T. F., & Yoon, Y. S. (2022). Evaluation of residual bond behavior of CFRP and steel bars embedded in UHPC after exposure to elevated temperature. Journal of Building Engineering, 56, 104768.

  • Hong, S. H., Choi, J. S., Yoo, S. J., Yoo, D. Y., & Yoon, Y. S. (2024). Reinforcing effect of CNT on the microstructure and creep properties of high-strength lightweight concrete. Construction and Building Materials, 428, 136294.

  • Yoo, S. J., Hong, S. H., Yoo, D. Y., & Yoon, Y. S. (2024). Flexural bond behavior and development length of ribbed CFRP bars in UHPFRC. Cement and Concrete Composites, 146, 105403.

  • Hong, S. H., Choi, J. S., Yoo, S. J., & Yoon, Y. S. (2023). Structural benefits of using carbon nanotube reinforced high-strength lightweight concrete beams. Developments in the Built Environment, 16, 100234.

Jay Baek | Joint Arthritis | Best Researcher Award

Mr. Jay Baek | Joint Arthritis | Best Researcher Award

Mr. Jay Baek | Medical University of South Carolina College of Medicine | United States

Mr. Jay Baek is an emerging biomedical researcher whose work demonstrates a strong commitment to advancing orthopaedic biomechanics, tissue engineering, and diagnostic imaging. His research contributions have significantly focused on understanding ligament mechanics, articular surface topography, and their associations with joint kinematics across various stages of osteoarthritis, as published in the high-impact journal Osteoarthritis and Cartilage (2025). Additionally, his collaborative work on developing a nucleus pulposus-derived cartilage analog scaffold for chondral repair and regeneration, published in the Journal of Biomedical Materials Research Part A (2024), reflects his contribution to regenerative medicine and biomaterials innovation. Mr. Baek has presented his findings through multiple podium and poster presentations at major scientific conferences, including the Orthopaedic Research Society (ORS) Annual Meeting, the Siegling Society Research Day, and the Medical University of South Carolina’s Flex Fair, demonstrating his active engagement in disseminating scientific knowledge. His research also extends into comparative imaging modalities for foot fracture detection, reflecting his interdisciplinary approach linking biomechanics and clinical diagnostics. His involvement in projects such as the Orthopaedic Implant Retrieval Program (CU-REPRO) highlights his hands-on experience in translational biomedical research and implant analysis. Recognized with distinctions including the Clemson Presidential Scholar, PDMA Carolinas Student Competition 1st Place, and active roles in engineering honor societies, he exemplifies research excellence, leadership, and collaboration. Through his multifaceted research and continued contributions to orthopaedic science and regenerative engineering, Mr. Jay Baek stands out as a dedicated and innovative researcher with a clear trajectory toward impactful scientific advancement.

Profile:  ORCID

Featured Publications

Baek, J., Jafri, S., & McBee, M. (2025, May 13). Radiographs vs. cross-sectional imaging in foot fracture detection [Poster presentation]. ACMS Research Symposium, Anderson, South Carolina.

Baek, J., Jafri, S., & McBee, M. (2025, April 10). Comparing imaging modalities for foot fractures: Is radiography enough? [Poster presentation]. Medical University of South Carolina Flex Fair, Charleston, South Carolina.

Baek, J., Gordon, D., Sun, S., Walker, L., Buchweitz, N., Zhao, J., Mah, E., Sumwalt, C., Blake-Wade, K., Bain, N., Slate, E., Chiaramonti, A., Daley, D., Yao, H., & Wu, Y. (2025, June 20). Association of ligament mechanical properties and articular surface topography with trapeziometacarpal kinematics across osteoarthritis stages [Poster presentation]. 31st Annual Siegling Society Research Day, Charleston, South Carolina.

Baek, J., Walker, L., Gordon, D., Kelley, J., Mukherji, M., Ye, T., Yao, H., Daley, D., & Wu, Y. (2025, June 20). Beak ligament architecture deteriorates at metacarpal enthesis in female osteoarthritic trapeziometacarpal joints [Podium presentation]. 31st Annual Siegling Society Research Day, Charleston, South Carolina.

Gordon, D., Walker, L., Sun, S., Baek, J., Chiaramonti, A., Mah, E., Wolf, J., Daley, D., Yao, H., & Wu, Y. (2024, February). Impact of ligament integrity on the stability of the trapeziometacarpal joint [Poster presentation]. ORS 2024 Annual Meeting, Long Beach, California.

Alper Bideci | Cementitious Materials | Best Review Paper Award

Prof. Dr. Alper Bideci | Cementitious Materials | Best Review Paper Award

Academician | Düzce University | Turkey

Prof. Dr. Alper Bideci is a distinguished researcher specializing in building materials, with a particular focus on concrete, cement, composite materials, and coated aggregates. His research has significantly advanced the understanding of sustainable construction materials, especially in the development and application of polymer-coated lightweight aggregates and concretes that enhance mechanical performance, durability, and environmental efficiency. Dr. Bideci’s investigations encompass experimental and analytical studies on waste materials, polymer modifications, and the use of alternative aggregates to promote eco-friendly construction practices. His published works in leading journals such as Construction and Building Materials and Composites Part B: Engineering explore critical topics including the effects of hemp fibers on mortar performance, the influence of polymer admixtures on high-strength concretes, and life cycle assessment analyses of composite façade panels. Through his studies, he provides valuable insights into the chemical, mechanical, and petrographic characteristics of traditional and modern building materials, contributing to the advancement of sustainable material science and heritage restoration techniques. His findings on polymer-coated pumice aggregates and the utilization of industrial and agricultural waste materials in concrete have provided innovative solutions for both modern construction and environmental conservation. By integrating experimental rigor with sustainability principles, Dr. Bideci’s work bridges the gap between performance optimization and ecological responsibility, positioning him as a leading figure in the global research community dedicated to green construction technologies and advanced building material innovations.

Profile:  Scopus  |  ORCID Google Scholar  |  ResearchGate

Featured Publications

Çomak, B., Bideci, A., & Bideci, Ö. S. (2018). Effects of hemp fibers on characteristics of cement-based mortar. Construction and Building Materials, 169, 794–799.

Doğan, M., & Bideci, A. (2016). Effect of Styrene Butadiene Copolymer (SBR) admixture on high-strength concrete. Construction and Building Materials, 112, 378–385.

Bideci, A., Öztürk, H., Salli Bideci, Ö., & Emiroğlu, M. (2017). Fracture energy and mechanical characteristics of self-compacting concretes including waste bladder tyre. Construction and Building Materials, 149, 669–678.

Yılmaz, E., Arslan, H., & Bideci, A. (2019). Environmental performance analysis of insulated composite facade panels using life cycle assessment (LCA). Construction and Building Materials, 202, 806–813.

Bideci, Ö. S., Bideci, A., Gültekin, A. H., Oymael, S., & Yildirim, H. (2014). Polymer coated pumice aggregates and their properties. Composites Part B: Engineering, 67, 239–243.

Abishek G L | Civil Engineering | Best Academic Researcher Award

Mr. Abishek G L | Civil Engineering | Best Academic Researcher Award

Assistant Professor | Mar Ephraem College of Engineering and Technology | India

Dr. G. L. Abishek has established himself as a dedicated researcher in the field of Civil and Structural Engineering, with a primary focus on the performance, durability, and innovation of construction materials and structural systems. His research contributions emphasize the experimental and analytical investigation of advanced materials such as fiber-reinforced polymers (FRP), self-curing concrete, geopolymer concrete, and sustainable waste-based composites. He has published impactful works in high-quality international journals, including Elsevier’s Journal of Building Engineering and Computers and Concrete, addressing critical issues in enhancing structural performance, load-bearing capacity, and the long-term reliability of reinforced concrete systems. His recent studies on the lateral load behavior of aramid (Kevlar) and CFRP-strengthened concrete piles provide valuable insights into improving infrastructure resilience and service life under complex loading conditions. Dr. Abishek’s academic career is marked by a balance between theoretical understanding and practical application, bridging research and engineering practice. Beyond publishing, he actively engages in professional development through participation in national workshops focused on earthquake-resistant structures, finite element modeling, optimization, and modern computational tools such as MATLAB and Python for structural analysis. His continuous exploration of sustainable construction materials and innovative strengthening techniques underscores his commitment to advancing the field of structural engineering and promoting environmentally responsible design solutions. Dr. Abishek’s research reflects a forward-looking approach aimed at improving the safety, sustainability, and efficiency of civil infrastructure systems through material innovation and scientific rigor.

Profile: Google Scholar

Featured Publications

Abishek, G. L. (2016). Experimental investigation of high-strength characteristics of self-curing concrete. International Journal for Modern Trends in Science and Technology, 2(7), 61–65.

Abishek, G. L. (2016). Experimental investigation in effect of low-calcium fly ash geopolymer concrete. International Journal of Engineering Research, 5(9), 762–767.

Abishek, G. L. (2017). Experimental study on behaviour of paper sludge concrete. Institute of Integrative Omics and Applied Biotechnology Journal (IIOABJ), 8(S3), 73–78.

Abishek, G. L., Murugesan, R., & Murugan, M. (2025). Performance analysis of aramid (Kevlar) fiber reinforced polymer wrapped concrete piles under lateral loads. Journal of Building Engineering, 106, 112336.

Abishek, G. L., Murugesan, R., & Murugan, M. (2025). Reliability and performance of CFRP-strengthened RC piles under static lateral loads: Enhancing durability and load-bearing capacity. Computers and Concrete, 36(3), 351–360.

Gang Liu | Decomposition | Best Researcher Award

Dr. Gang Liu | Decomposition | Best Researcher Award

Dr. Gang Liu | China University of Petroleum (East China) | China

Dr. Gang Liu is an emerging researcher whose work centers on advancing electrocatalytic conversion processes using innovative materials such as polyoxometalates and metalloporphyrin-based fibers. His research contributes significantly to sustainable chemical transformations, focusing on the development of efficient and scalable catalytic systems for environmental and energy-related applications. Dr. Liu’s recent investigations emphasize photoassisted indirect electrocatalytic decomposition of hydrogen sulfide (H₂S), an environmentally hazardous compound, into valuable sulfur and hydrogen products. By designing metalloporphyrin-based polymer fibers with exceptional strength, flexibility, photosensitivity, and sulfur tolerance, he has achieved remarkable progress in enhancing the performance and durability of electrocatalytic systems. His approach employs solid-phase polymer fibers as heterogeneous redox mediators in photoassisted electrolysis, reaching up to 99% efficiency in H₂S removal—an achievement that offers a sustainable alternative for industrial gas treatment. Dr. Liu’s work also explores polyoxometalate-based foams for electrocatalytic bond formation, enabling efficient synthesis of sulfenamides, S–N, and S–S bond compounds under mild conditions. These studies, published in leading international journals such as Advanced Materials, Journal of Materials Chemistry A, and Inorganic Chemistry Frontiers, reflect a strong focus on green chemistry, catalyst design, and process scalability. His contributions extend to developing cosolvent electrolyte systems to boost indirect electrolysis efficiency, further bridging the gap between laboratory innovation and industrial application. Through his creative methodologies and commitment to environmental sustainability, Dr. Liu has demonstrated exceptional research potential in catalysis, energy conversion, and pollution mitigation, marking him as a rising figure in advanced electrochemical research.

Profile: ORCID

Featured Publications

  • Liu, G., et al. (2023). Flowing scalable production of sulfenamides by active site-tuned lacunary polyoxometalate foams. Journal of Materials Chemistry A, 11(22), 12258–12265.

  • Liu, G., et al. (2023). Indirect electrocatalysis S–N/S–S bond construction by robust polyoxometalate-based foams. Advanced Materials, 35(23), 2304716.

  • Liu, G., et al. (2025). One-pot cascade conversion of fructose to 2,5-diformylfuran enabled by a polyionic liquids-based porous catalyst. Inorganic Chemistry Frontiers, 12(8), 4703–4711.

  • Liu, G., et al. (2025). A three-phase indirect electrolysis system for kilo-scale generation of C–S bond products. Chinese Journal of Chemistry, 43(9), 1968–1976.

  • Liu, G., et al. (2025). A cosolvent electrolyte boosting H₂S decomposition via three-phase indirect electrolysis. Energy & Environmental Materials, 0, e70123.

 

Boris Noutegomo | Natural Fibers | Excellence in Research Award

Dr. Boris Noutegomo | Natural Fibers | Excellence in Research Award

Dr. Boris Noutegomo | University of Bamenda | Cameroon

Dr. Boris Noutegomo is an accomplished researcher and educator in mechanical and industrial engineering, with extensive experience in maintenance diagnostics, product design, and advanced manufacturing systems. His research integrates key areas such as mechanical system reliability, industrial automation, and material behavior under applied stresses. Through his work on maintenance engineering and production optimization, he has contributed to developing innovative methodologies for improving equipment performance, energy efficiency, and operational safety in industrial systems. His teaching and research activities encompass diverse subjects including computer-aided design and manufacturing, mechanics of structures, welding technologies, thermodynamics, and mechatronic systems, reflecting a broad command of engineering science. He has conducted and supervised applied research projects in areas such as the design and optimization of mechanical components, development of agro-industrial equipment, and maintenance planning for complex industrial setups. His applied industrial experience in mechanical design, manufacturing, and thermal energy systems bridges theory with real-world engineering solutions, fostering innovation and sustainable practices. Dr. Boris Noutegomo has published in reputable journals and his research has received citations demonstrating scholarly recognition (2 citations, h-index: 1). His ongoing academic engagement at prominent technical institutions contributes to advancing interdisciplinary research that links mechanical innovation, automation, and sustainability. With a focus on practical engineering solutions, reliability enhancement, and industrial productivity, Dr. Boris Noutegomo continues to make meaningful contributions to the field of mechanical and industrial engineering, demonstrating a strong alignment with the objectives of the Excellence in Research Award.

Profile: Scopus

Featured Publications

(2025). Multi-scale modelling of the hygro-mechanical behavior of Rhecktophyllum camerunense vegetable fibers. Results in Materials.

Eman Abdeall | Health & Medicine | Best Researcher Award

Prof. Eman Abdeall | Health & Medicine | Best Researcher Award

Head of Department | Beni-Suef Univeristy | Egypt

Prof. Eman K. A. Abdelall is an accomplished researcher specializing in pharmaceutical organic chemistry with a focus on drug synthesis, molecular design, and structure-activity relationship studies. Her extensive research portfolio demonstrates a strong commitment to the discovery and development of bioactive compounds targeting critical human diseases. She has made significant advancements in the design and synthesis of novel molecules with anti-inflammatory, anticancer, and antiviral properties, employing a multidisciplinary approach that integrates organic synthesis, computational modeling, and biological evaluation. Her recent studies include the development of quinazolinone-based compounds as dual STAT-3 and c-Src inhibitors, the design of antipyrine-celecoxib hybrid analogues with dual COX-2 and SARS-CoV-2 Mpro inhibitory activities, and the synthesis of new pyrazoles with selective anti-inflammatory potential. Prof. Abdelall’s work, published in high-impact journals such as Bioorganic Chemistry, Bioorganic and Medicinal Chemistry Letters, and Drug Development Research, reflects her expertise in rational drug design and her ability to translate molecular innovations into pharmacologically relevant candidates. With 46 peer-reviewed publications, over 1,045 citations, and an h-index of 20, her research demonstrates both quality and global impact. Her findings contribute to understanding molecular mechanisms underlying inflammation, cancer proliferation, and viral replication, offering new therapeutic strategies with enhanced efficacy and safety. Through her sustained publication record, interdisciplinary research, and consistent scientific innovation, Prof. Abdelall has established herself as a leading contributor in pharmaceutical chemistry, advancing the field of rational drug design and synthesis with high translational value for modern medicine.

Profile: Scopus | ORCID | Google Scholar

Featured Publications

  • Abdelall, E. K. A., Lamie, P. F., Fadaly, W. A. A., & Abdelgawad, Y. Y. M. (2025). Development of novel quinazolinone-based compounds with anti-proliferative activity as dual STAT-3 and c-Src inhibitors: Design, synthesis and molecular dynamic studies. Bioorganic Chemistry, 163, 108753.

  • Abdelall, E. K. A., Elshemy, H. A. H., Labib, M. B., Philoppes, J. N., Ali, F. E. M., & Ahmed, A. K. M. (2025). Synthesis of new selective agents with dual anti-inflammatory and SARS-CoV-2 Mpro inhibitory activity: Antipyrine-celecoxib hybrid analogues; COX-2, COVID-19 cytokine storm and replication inhibitory activities. Bioorganic Chemistry, 160, (Article number not specified).

  • Abdelall, E. K. A., EL-Nahass, E. S., Abdellatif, K. R. A., Abdel-Rahman, H. M. (2021). Design, synthesis, biological assessment and in silico ADME prediction of new 2-(4-(methylsulfonyl)phenyl) benzimidazoles as selective cyclooxygenase-2 inhibitors. RSC Advances, 11, 27659.