Marek Szczepanski | Academic Recognition | Distinguished Scientist Award

Global Scientist Day Awards

Marek Szczepanski
Poznan University of Technology, Poland

Marek Szczepanski
Affiliation Poznan University of Technology
Country Poland
Scopus ID 56956610000
Documents 9
Citations 115
h-index 4
Subject Area Academic Recognition
Event Global Scientist Day Awards
ORCID 0000-0002-8929-7490

The Global Scientist Day Awards recognizes researchers whose scholarly activities demonstrate sustained academic engagement, scientific integrity, and measurable research contributions. Marek Szczepanski of Poznan University of Technology has established a documented publication profile indexed in Scopus and contributes to academic scholarship through peer-reviewed research and scientific collaboration. His academic record reflects continuous participation in research activities relevant to his discipline and provides evidence of scholarly impact through publications and citations.[1]

Abstract

This article presents an academic overview of Marek Szczepanski in relation to the Global Scientist Day Awards. It summarizes his institutional affiliation, publication record, citation metrics, and scholarly influence based on publicly available academic indexing services. The profile emphasizes objective academic indicators commonly considered during professional recognition processes, including publication output, citation performance, and research visibility within international scholarly databases.[1]

Keywords

Global Scientist Day Awards, Marek Szczepanski, Poznan University of Technology, Scopus Author, Academic Recognition, Scholarly Publications, Citation Analysis, Research Impact, Poland, Scientific Excellence

Introduction

Academic recognition programs acknowledge researchers whose work contributes to scientific knowledge, innovation, education, and interdisciplinary collaboration. Evaluation generally incorporates bibliometric evidence, publication quality, research consistency, and measurable scholarly influence. The Global Scientist Day Awards applies these principles to recognize researchers demonstrating sustained academic engagement across their respective disciplines.[2]

Research Profile

Marek Szczepanski is affiliated with Poznan University of Technology in Poland. His Scopus-indexed research profile includes nine scholarly documents with a cumulative citation count of 115 and an h-index of 4. These indicators demonstrate an established record of peer-reviewed academic activity and evidence that his published research has been referenced within the scientific literature.[1]

Research Contributions

The research contributions associated with Marek Szczepanski illustrate continued engagement in scientific investigation and scholarly communication. His work contributes to the dissemination of technical knowledge through peer-reviewed publications while supporting collaboration within the broader research community. Citation activity indicates that elements of his published work have informed subsequent investigations and academic discussions.[1]

Publications

The research portfolio includes publications indexed within the Scopus database, providing internationally recognized bibliographic documentation of scientific output. Indexed publications support research discoverability, enable citation tracking, and contribute to long-term academic visibility. Representative scholarly works are commonly identified using Digital Object Identifiers (DOIs), facilitating persistent access to published literature.[3]

Research Impact

Research impact extends beyond publication quantity by considering citation performance, scholarly influence, and the accessibility of scientific findings. Marek Szczepanski’s citation metrics indicate that his publications have contributed to ongoing scientific discourse. Bibliometric indicators such as citations and the h-index provide standardized measures frequently employed during research assessment and academic recognition processes.[1]

Award Suitability

Based on publicly available bibliometric information, Marek Szczepanski demonstrates characteristics that align with the objectives of academic recognition programs. His documented publication record, measurable citation impact, institutional affiliation, and participation in scholarly research collectively indicate a sustained commitment to scientific advancement.[2]

Conclusion

Marek Szczepanski’s documented scholarly profile reflects continued engagement in academic research through peer-reviewed publications and measurable citation performance. His research activity contributes to scientific communication and demonstrates qualities commonly associated with professional academic recognition.[1]

References

  1. Elsevier (2026). Scopus author details: Marek Szczepanski, Author ID 56956610000. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=56956610000
  2. Global Scientist Day Awards (2026). Official Award Website.
    https://scientistday.org/
  3. The Application of Environmental, Social and Governance Standards in Operational Risk Management in SSC in Poland.
    https://www.mdpi.com/2071-1050/16/6/2413

Arumugam Muthu | Algal Biotechnology | Innovative Research Award

 Global Scientist Day Awards

Arumugam Muthu
Researcher Arumugam Muthu
Affiliation National Institute For Interdisciplinary Science and Technology
Country India
Google Scholar ID seGjLeQAAAAJ
Documents 65
Citations 2221
h-index 22
Subject Area Algal Biotechnology
Event Global Scientist Day Awards
ORCID 0000-0003-4697-6925

Arumugam Muthu

Institution: National Institute For Interdisciplinary Science and Technology

Arumugam Muthu is an Indian researcher associated with the National Institute For Interdisciplinary Science and Technology, whose scholarly work primarily focuses on algal biotechnology and the biological significance of selenoproteins. His research portfolio reflects contributions to biotechnology, environmental sustainability, microalgal applications, and interdisciplinary biological sciences. According to publicly available academic records, his publications have received considerable scholarly attention, demonstrating continued influence within his research community.[1]

Abstract

This article summarizes the academic profile of Arumugam Muthu, highlighting his scholarly activities in algal biotechnology, selenoprotein research, biotechnology applications, and interdisciplinary environmental sciences. His publication record, citation metrics, and sustained research productivity demonstrate meaningful engagement in scientific advancement through peer-reviewed research and collaborative investigations.[1]

Keywords

Algal Biotechnology, Selenoproteins, Microalgae, Biotechnology, Environmental Biotechnology, Marine Biotechnology, Bioactive Compounds, Sustainable Biotechnology, Biofuels, Applied Biological Sciences.

Introduction

Modern biotechnology increasingly integrates environmental sustainability with molecular and applied biological research. Algal biotechnology has emerged as a significant discipline because of its applications in renewable resources, pharmaceuticals, nutrition, wastewater treatment, and environmental conservation. Researchers working in this field contribute toward expanding scientific understanding while supporting sustainable technological development.[2]

Research Profile

Arumugam Muthu has established a research profile characterized by interdisciplinary investigations connecting biotechnology, microbiology, environmental sciences, and algal biology. His publications address scientific challenges related to biological productivity, bioactive compounds, sustainable resource utilization, and molecular biological mechanisms. His Google Scholar profile indicates 65 indexed scholarly documents with more than 2,200 citations and an h-index of 22, reflecting consistent academic visibility.[1]

Publications

The researcher’s scholarly output includes peer-reviewed journal articles addressing algal biotechnology, environmental biotechnology, microbial applications, sustainable biological systems, and bioactive compounds. Representative publications are indexed in internationally recognized scholarly databases and include articles assigned Digital Object Identifiers (DOIs).[3]

Research Impact

The citation performance associated with Arumugam Muthu’s scholarly publications indicates continued recognition by the international scientific community. His research contributes to advancing knowledge in biotechnology and sustainable biological sciences while supporting future investigations through referenced academic literature.[1]

Award Suitability

Based on publicly available scholarly indicators, Arumugam Muthu demonstrates characteristics commonly considered during academic recognition, including sustained publication activity, measurable citation impact, interdisciplinary scientific contributions, and ongoing engagement with biotechnology research. These attributes align with the objectives of professional scientific recognition programs such as the Global Scientist Day Awards while remaining subject to the official evaluation criteria established by the award organizers.[1]

Conclusion

Arumugam Muthu has contributed to the advancement of algal biotechnology through interdisciplinary research, scientific publications, and collaborative academic activities. His documented research productivity and scholarly influence illustrate an active role in biotechnology research and support continued recognition within the international scientific community.[1]

References

  1. Google Scholar. (n.d.). Author profile: Arumugam Muthu (Scholar ID: seGjLeQAAAAJ).
    https://scholar.google.co.in/citations?user=seGjLeQAAAAJ0
  2. Elsevier. (2020). Biotechnology Advances. DOI Reference.
    https://doi.org/10.1016/j.biotechadv.2020.107623
  3. Targeted Metabolomic and Biochemical Changes During Nitrogen Stress Mediated Lipid Accumulation in Scenedesmus quadricauda CASA CC202
    https://www.doi.org/

Masanori Sugiyama | Microbiology & Ferentation Technology | Research Excellence Award

Global Scientist Day Awards

Masanori Sugiyama
Affiliation Hiroshima University
Country Japan
Scopus ID 55729893900
Documents 193
Citations 4,335
h-index 34
Subject Area Microbiology & Fermentation Technology
Event Global Scientist Day Awards

Masanori Sugiyama

Hiroshima University, Japan

Masanori Sugiyama is a researcher affiliated with Hiroshima University whose scholarly work has contributed to the fields of microbiology and fermentation technology through research publications, scientific collaboration, and academic dissemination. His publication record demonstrates sustained contributions across microbial science, industrial biotechnology, and related biological disciplines. According to Scopus metrics, his research profile reflects extensive scholarly productivity and measurable citation impact within his area of expertise.[1]

Abstract

This article provides an overview of Masanori Sugiyama’s academic profile, institutional affiliation, publication metrics, and scientific contributions relevant to microbiology and fermentation technology. The profile summarizes scholarly productivity, research influence, and academic engagement while presenting publicly available bibliometric indicators suitable for academic recognition and professional reference.[1]

Keywords

Microbiology, Fermentation Technology, Industrial Biotechnology, Microbial Engineering, Scientific Research, Academic Publications, Citation Analysis, Hiroshima University, Global Scientist Day Awards.

Introduction

Microbiology and fermentation technology remain essential scientific disciplines supporting food science, healthcare, pharmaceuticals, industrial biotechnology, and environmental sustainability. Researchers working within these areas contribute to advances in microbial physiology, fermentation processes, enzyme production, and bioprocess optimization. Masanori Sugiyama’s academic activities align with these scientific objectives through sustained research and publication efforts documented in international scholarly databases.[2]

Research Profile

Affiliated with Hiroshima University, Masanori Sugiyama has established a substantial publication record consisting of 193 indexed documents together with more than four thousand citations and an h-index of 34 according to available Scopus data. These indicators demonstrate sustained scholarly activity and continued engagement within internationally recognized scientific literature.[1]

Publications

The research portfolio includes journal articles and collaborative publications indexed by Scopus. Representative publications are accessible through the author’s Scopus profile, while many articles are linked with Digital Object Identifiers (DOIs) to facilitate persistent scholarly access.[1][3]

Research Impact

Bibliometric indicators provide evidence of continued academic engagement, including publication productivity, citation performance, and collaborative scholarship. Citation statistics suggest that the published research has received sustained attention from the scientific community, contributing to knowledge development within microbiology and fermentation technology.[1]

Award Suitability

Based on publicly available scholarly metrics, institutional affiliation, publication history, and documented scientific contributions, Masanori Sugiyama demonstrates characteristics commonly associated with candidates considered for international scientific recognition. Evaluation for the Global Scientist Day Awards would typically consider bibliometric performance, research originality, scientific influence, collaboration, and overall academic contribution alongside any additional nomination materials submitted for review.[1]

Conclusion

Masanori Sugiyama has developed an established academic profile supported by extensive publications, measurable citation impact, and sustained contributions to microbiology and fermentation technology. The available bibliometric evidence reflects continued participation in international scientific research and provides an objective basis for academic recognition within professional award programs.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Masanori Sugiyama, Author ID 55729893900. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=55729893900
  2. Integrator Complex Subunit 6 Regulates Biological Nature of Hepatocellular Carcinoma by Modulating Epithelial-Mesenchymal Transition
    https://www.ncbi.nlm.nih.gov/
  3. Stevia Leaf Extract Fermented with Plant-Derived Lactobacillus plantarum SN13T Displays Anticancer Activity to Pancreatic Cancer PANC-1 Cell Line
    https://doi.org/10.1000/182
  4. Global Scientist Day Awards. (n.d.). Official Award Website.
    https://scientistday.org/

Dawit Girma | Research Excellence | Research Excellence Award

Mr. Dawit Girma | Research Excellence | Research Excellence Award 

Wolkite University | United Kingdom

Dawit Girma Burayu is a skilled civil and hydraulic engineer with strong expertise in water resources engineering, hydrology, and geospatial analysis. He holds advanced academic qualifications and has extensive experience in teaching, research, and professional engineering practice. His work focuses on rainfall analysis, flood risk assessment, groundwater potential mapping, and irrigation planning using GIS, remote sensing, and modeling tools. He has authored multiple peer-reviewed publications in reputable journals, achieving 108 citations, an h-index of 4, and an i10-index of 2, reflecting the impact of his research contributions. Proficient in programming and engineering software, he effectively addresses complex environmental and water management challenges.

Citation Metrics (Google Scholar)

200
150
100
50
0

Citations
108

Documents
4

h-index
2

Citations

Documents

h-index


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Mojtaba Asgari | Research Excellence | Research Excellence Award

Mr. Mojtaba Asgari | Research Excellence | Research Excellence Award 

TU Dortmund University | Germany

Dr. Mojtaba Asgari is a sport scientist and researcher specializing in injury prevention, neuromuscular training, and biomechanics, with a strong focus on football performance and ACL risk reduction. He has developed innovative warm-up programs such as Football+, integrating advanced techniques like 3D motion analysis, electromyography, and isokinetic testing. His work includes extensive peer-reviewed publications, international research collaborations, and large-scale projects on athlete injury risk. Alongside his research, he actively teaches and supervises students while contributing as an associate editor and reviewer for leading journals. His background as a former professional football player further strengthens his applied research expertise.


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Featured Publications

Genetu Tesfa | Environmental Science | Research Excellence Award

Mr. Genetu Tesfa | Environmental Science | Research Excellence Award

Addis Ababa Science and Technology University | Ethiopia

Genetu Tesfa is an Ethiopian postgraduate researcher in Environmental Engineering at Addis Ababa Science and Technology University, specializing in water and wastewater treatment with a strong focus on the removal of antibiotics and pharmaceutical contaminants using advanced oxidation processes such as iron slag–based electro-Fenton systems. His research addresses critical challenges related to hospital wastewater pollution, antimicrobial resistance, and sustainable environmental remediation. He has published in SCI and Scopus-indexed international journals and contributed to nature-based treatment methods using vetiver grass, as well as waste valorization through composting and alternative fertilizers. His work emphasizes low-cost, environmentally sustainable solutions tailored to developing-country contexts, supported by active interdisciplinary collaborations in environmental science and engineering.


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Featured Publications

M. Mottakin | Research Excellence | Research Excellence Award

Assist. Prof. Dr. M. Mottakin | Research Excellence | Research Excellence Award

Assist. Prof. Dr M. Mottakin | Gopalganj Science and Technology University, Bangladesh | Bangladesh

Dr. Mottakin is an accomplished Assistant Professor in the Department of Applied Chemistry and Chemical Engineering at Gopalganj Science and Technology University, Bangladesh, with a strong focus on advancing research and education in chemical sciences. His career is driven by a commitment to innovation and knowledge creation, aiming to develop practical solutions that address both national and global challenges. He holds a PhD in Solar Energy from the National University of Malaysia, building on a solid academic foundation with a Master’s and Bachelor’s degree in Applied Chemistry and Chemical Technology from the University of Rajshahi. Throughout his academic journey, he has consistently excelled, earning top positions in his department and demonstrating exceptional scholarly performance. Dr. Mottakin has contributed extensively to high-impact research in areas including solar energy, electrocatalysis, energy storage, and environmentally sustainable chemical processes. He has authored numerous publications in internationally recognized journals, covering topics such as perovskite solar cells, water splitting electrocatalysts, and eco-friendly energy materials. His research combines experimental and numerical approaches, emphasizing both innovation and practical applicability. In addition to his research, Dr. Mottakin actively participates in national and international conferences, sharing his expertise and fostering collaborations. He has received multiple awards and scholarships in recognition of his academic excellence and research contributions. He is fluent in both English and Bangla and demonstrates a strong ability to communicate complex scientific concepts effectively. Dr. Mottakin’s professional philosophy centers on integrating teaching, research, and community engagement, mentoring the next generation of scientists while contributing to sustainable technological advancements. With a proven track record in research, teaching, and international collaboration, Dr. Mottakin continues to drive innovation in applied chemistry and chemical engineering, aiming to create impactful solutions that benefit society and the scientific community.

Profile: Orcid | Scopus

Featured Publications

Patwary, M. A., Shafin, A. A., Alam, M. M., Singh Durjoy, R. K., Ludin, N. A., Su’ait, M. S., Akhtaruzzaman, M., & Mottakin, M. (2025). Optoelectronic properties and device simulation of ZnS polymorphs as buffer layers for CZTSSe solar cells. RSC Advances. https://doi.org/10.1039/D5RA07195J

Sultana, S., Sonia, Z. A., Mahmud, M., Mottakin, M., Haider, J. B., Ahmed, S., & Hossen, M. M. (2024). An investigation of cellulose, hemicellulose and lignin co-extraction from water hyacinth. Advanced Journal of Chemistry, Section A. https://doi.org/10.48309/ajca.2024.412642.1402

Mottakin, M., Su’Ait, M. S., Chelvanathan, P., Islam, M. A., Shahiduzzaman, M., Ibrahim, M. A., Muhammad, G., & Akhtaruzzaman, M. (2024). Correlation between defect properties and the performance of eco-friendly CsSnI₃-based perovskite solar cells. Semiconductor Science and Technology. https://doi.org/10.1088/1361-6641/ad208b

Mottakin, M., Su’ait, M. S., Selvanathan, V., Chelvanathan, P., Ibrahim, M. A., & Akhtaruzzaman, M. (2024). Effect of sulfidation on ethaline-assisted electrodeposited iron sulfide-based electrocatalyst for efficient saline water splitting. International Journal of Hydrogen Energy. https://doi.org/10.1016/j.ijhydene.2024.06.181

Mottakin, M., Selvanathan, V., Su’ait, M. S., Razali, S. A., Islam, M. A., Ibrahim, M. A., Muhammad, G., & Akhtaruzzaman, M. (2024). Enhancing pseudocapacitive energy storage system performance with electrodeposited CuSₓ and CoSₓ biphasic transitional metal sulfide (TMS) based nanostructured electrode on nickel foam. Journal of Physics and Chemistry of Solids, 186, 111795. https://doi.org/10.1016/j.jpcs.2023.111795

Mottakin, M., Su’ait, M. S., Chelvanathan, P., Ibrahim, M. A., Ludin, N. A., Abdullah, H., Almohamadi, H., & Akhtaruzzaman, M. (2024). Facile electrodeposited sandwich-like CuSₓ/MnSₓ electrocatalyst for efficient hydrogen evolution in seawater splitting. Journal of Solid State Chemistry, 339, 124913. https://doi.org/10.1016/j.jssc.2024.124913

Gabriele Sirtori | Research Excellence | Research Excellence Award

Dr. Gabriele Sirtori | Research Excellence | Research Excellence Award

Dr. Gabriele Sirtori | ISAE Supaero | France

Gabriele Sirtori is an aerospace engineer and researcher specializing in sustainable aviation, hydrogen-powered aircraft design, and environmentally optimized flight operations. With advanced academic training culminating in a research doctorate in aerospace engineering from Politecnico di Milano, his work focuses on the integration of emerging propulsion technologies, environmental impact assessment, and the future evolution of air transport systems. His doctoral research explored hydrogen-powered aviation with an emphasis on aircraft design innovation and operational scenario development, earning top academic recognition. He also holds a master’s degree in aeronautical engineering with a thesis dedicated to evaluating the environmental benefits of hybrid propulsion for regional aircraft. International academic exposure includes studies at ENAC in Toulouse and an early exchange program in the United States, strengthening his multicultural competence and broadening his understanding of global aviation ecosystems. Gabriele currently serves as a postdoctoral researcher at ISAE Supaero in Toulouse, contributing to studies on air traffic management inefficiencies and assessing mitigation strategies to reduce climate impacts through optimized flight operations. His experience also includes leadership and community engagement through active roles in Rotaract, where he served as vice president and contributed to social and service-oriented initiatives. He has authored numerous scientific publications spanning hydrogen propulsion, hybrid-electric aircraft concepts, environmental benefits of advanced technologies, and infrastructure requirements for future sustainable fleets. His work appears in peer-reviewed journals, major international conferences, and multidisciplinary aerospace research platforms. Gabriele’s technical competencies include advanced programming in MATLAB and Python, strong proficiency in word processing and scientific documentation tools, and solid analytical abilities in data handling and modeling. He is fluent in English and French, with additional proficiency in Spanish, enabling effective collaboration in international research environments. Driven by a commitment to sustainable aviation, he aims to contribute to the transition toward cleaner, more efficient air transport through rigorous research, innovative design methodologies, and future-oriented technological analysis.

Profile: Google Scholar

Featured Publications

Aigner, B., Garcia Garriga, A., Sirtori, G., Riboldi, C. E. D., Trainelli, L., Mariani, C., … (2022). Overview and preliminary results of the scalability investigation of hybrid electric concepts for next-generation aircraft (SIENA) project. In 12th EASN Conference.

Trainelli, L., Riboldi, C. E. D., & Sirtori, G. (2024). Methodologies for the preliminary sizing of hydrogen-powered aircraft and supporting airport infrastructures. ICAS Proceedings, 1–12.

Aigner, B., Wehrle, E., Struiwig, W., Sirtori, G., Riboldi, C., & Trainelli, L. (2023). Consideration of technology scalability in the design of electric propulsion system architectures. In Aerospace Europe Conference 2023—Joint 10th EUCASS–9th CEAS Conference (pp. 1–11).

Sirtori, G., Aigner, B., Wehrle, E., Riboldi, C. E. D., & Trainelli, L. (2025). Innovative aircraft propulsive configurations: Technology evaluation and operations in the SIENA project. Aerospace, 12(3), 240.

Sirtori, G., Trainelli, L., & Lahmam, Z. (2024). Hydrogen tankering: Tools for economic and environmental impact scenario studies. ICAS Proceedings, 1–13.

Sirtori, G., & Trainelli, L. (2025). Transient in operations: From jet-fuel to hydrogen-powered aircraft. In Towards Sustainable Aviation Summit (TSAS 2025) (pp. 1–8).

Sirtori, G., Trainelli, L., & Riboldi, C. E. D. (2024). Prediction of environmental benefits introducing hybrid-electric propulsion on regional aircraft. Journal of Physics: Conference Series, 2716(1), 012015.

Xingwang Bian | Scientific Breakthroughs | Research Excellence Award

Mr. Xingwang Bian | Scientific Breakthroughs | Research Excellence Award

Mr. Xingwang Bian | Beijing Vacuum Electronics Research Institute | China

Xingwang Bian is a senior-level researcher at the Beijing Vacuum Electronics Research Institute, working in the domain of vacuum electronics and high-frequency device engineering. He specializes in the research, design, and experimental development of traveling-wave tubes (TWTs) operating at millimeter-wave and terahertz (THz) frequencies — especially in the G-band. His work leverages advanced slow-wave structure designs, electron-beam systems, and optimized focusing/magnetics, aiming to push the power, bandwidth, and efficiency envelope for THz vacuum-electronic amplifiers.  Among his important contributions: he co-authored demonstration of a broadband continuous-wave G-band TWT providing multi-GHz bandwidth and tens of watts of output power — a promising step toward practical THz wireless communications and radar systems.  Bian has also been centrally involved in the development of pulsed G-band TWTs for radar applications, combining innovations in slow-wave structure (modified folded waveguide), high-current electron beams, and phase-velocity tapering to reach high output power levels (on the order of 100 W+ in pulsed operation) in a compact, vacuum-electronic device.  Through these efforts, Bian has helped advance what is arguably one of the leading THz-band vacuum-electronic technology pipelines from BVERI, contributing to both academic publications and applied-device development.  In sum: Bian is a specialized vacuum-electronics engineer/scientist whose expertise lies at the intersection of electromagnetic design, electron-beam physics, and high-frequency amplifier fabrication — with a clear emphasis on making high-power, wide-band, THz-band TWTs viable for radar, sensing, and communication applications.

Publication Profile

Scopus | ORCID

Featured Publications 

Bian, X., Pan, P., Du, X., Feng, Y., Li, Y., Song, B., & Feng, J. (2025). Design and experiment of modified folded waveguide slow wave structure for 60-W G-band traveling wave tube. IEEE Microwave and Wireless Technology Letters.

Bian, X., Pan, P., Xian, S., Yang, D., Zhang, L., Cai, J., & Feng, J. (2025). A G-band pulsed wave traveling wave tube for THz radar. Preprints.

Zhu, M., Cai, Y., Zhang, L., Zhang, J., Hua, B., Ma, K., Ding, J., Bian, X., et al. (2025). Surpassing kilometer-scale terahertz wireless communication beyond 300 GHz enabled by hybrid photonic–electronic synergy. Research Square.

Bian, X., Pan, P., Du, X., Song, B., Zhang, L., Cai, J., & Feng, J. (2024). Demonstration of a high-efficiency and wide-band 30-W G-band continuous wave traveling wave tube. IEEE Electron Device Letters.

Feng, Y., Bian, X., Song, B., Li, Y., Pan, P., & Feng, J. (2022). A G-band broadband continuous wave traveling wave tube for wireless communications. Micromachines

Seyyed Javad Hosseini-Vashan | Research Excellence | Research Excellence Award

Assoc. Prof. Dr. Seyyed Javad Hosseini-Vashan | Research Excellence | Research Excellence Award

Assoc. Prof. Dr. Seyyed Javad Hosseini-Vashan | University of Birjand | Iran

Dr. Seyyed Javad Hosseini-Vashanis an Associate Professor of Animal Science at the University of Birjand, specializing in Poultry Science and Poultry Nutrition. With an academic path beginning with a diploma in Natural Sciences and progressing through B.Sc. and M.Sc. degrees in Animal and Poultry Science from the University of Birjand, followed by a Ph.D. in Poultry Science from Ferdowsi University of Mashhad, he has built a strong research portfolio in poultry nutrition, antioxidant strategies, heat-stress mitigation, feed additives, and improvement of poultry performance, immunity, lipid metabolism, skeletal health, intestinal morphology, and meat quality. His M.Sc. and Ph.D. dissertations focused on enriching egg yolk n-3 fatty acids and evaluating natural antioxidants in diets containing vegetable oils and tallow under heat stress in Arian broilers. Since joining academia in , Dr. Hosseini-Vashan has held key administrative roles as Head of the Animal Science Department and Head of the Animal Science Research Laboratory, and has served as Secretary of the First National Congress on Advances in Animal Sciences. He is an active member of several professional bodies including WPSA and the Iran Genetics Association. His teaching portfolio spans Poultry Production, Poultry Health, Nutrition, Biochemistry, Physiology, Diet Formulation, and Advanced Bioenergetics. He has authored numerous conference papers and peer-reviewed journal publications in prestigious Iranian and international journals, addressing nutritional interventions such as pomegranate peel, tomato pomace, turmeric, grape pomace, hempseed, nanoselenium, saffron petal extract, and functional feed additives in poultry and ostrich production systems. His research consistently emphasizes enhancing animal health and productivity under challenging environmental conditions, especially heat stress, and exploring natural, cost-effective, and sustainable dietary solutions for the modern poultry industry.

Profile: Google Scholar

Featured Publications

Hosseini-Vashan, S. J., Golian, A., & Yaghobfar, A. (2016). Growth, immune, antioxidant, and bone responses of heat stress-exposed broilers fed diets supplemented with tomato pomace. International Journal of Biometeorology, 60(8), 1183–1192.

Hosseini-Vashan, S. J., Golian, A., Yaghobfar, A., Zarban, A., Afzali, N., & … (2012). Antioxidant status, immune system, blood metabolites and carcass characteristic of broiler chickens fed turmeric rhizome powder under heat stress. African Journal of Biotechnology, 11(94), 16118–16125.

Safdari-Rostamabad, M., Hosseini-Vashan, S. J., Perai, A. H., & Sarir, H. (2017). Nanoselenium supplementation of heat-stressed broilers: Effects on performance, carcass characteristics, blood metabolites, immune response, antioxidant status, and jejunal morphology. Biological Trace Element Research, 178(1), 105–116.

Hosseini-Vashan, S. J., Safdari-Rostamabad, M., Piray, A. H., & Sarir, H. (2020). The growth performance, plasma biochemistry indices, immune system, antioxidant status, and intestinal morphology of heat-stressed broiler chickens fed grape (Vitis vinifera) pomace. Animal Feed Science and Technology, 259, 114343.

Sharifian, M., Hosseini-Vashan, S. J., Nasri, M. H. F., & Perai, A. H. (2019). Pomegranate peel extract for broiler chickens under heat stress: Its influence on growth performance, carcass traits, blood metabolites, immunity, jejunal morphology, and meat quality. Livestock Science, 227, 22–28.

Hosseini-Vashan, S. J., & Raei-Moghadam, M. S. (2019). Antioxidant and immune system status, plasma lipid, abdominal fat, and growth performance of broilers exposed to heat stress and fed diets supplemented with pomegranate pulp. Journal of Applied Animal Research, 47(1), 521–531.