Rafael Gavara | Sustainable Technology | Best Innovation Award

Dr. Rafael Gavara | Sustainable Technology | Best Innovation Award

Research Professor | IATA-CSIC | Spain

Dr. Rafael Gavara is a Research Professor at the Instituto de Agroquímica y Tecnología de Alimentos (IATA-CSIC) whose work focuses on food packaging science, active and bioactive packaging, and food shelf-life extension. His research explores polymeric and biodegradable materials, nanocomposites, and protein-based films designed to improve food quality, safety, and stability. He has made major contributions to antioxidant and antimicrobial packaging technologies, encapsulation of active compounds, and migration phenomena in packaging materials. With highly cited publications, his work bridges materials science and food technology, supporting sustainable packaging solutions and healthier, longer-lasting food products.

Citation Metrics (Google Scholar)

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Citations
15,889

Documents
71

h-index
67


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Featured Publications

Shah Noor | Photocatalysis | Outstanding Research and Development Award

Dr. Shah Noor | Photocatalysis | Outstanding Research and Development Award

Dr. Shah Noor | Jilin University | China

Dr. Shah Noor is an emerging materials and environmental science researcher whose work focuses on advanced photocatalysis, sustainable energy technologies, and innovative environmental remediation solutions. His notable contributions include the development of oxygen-vacancy–mediated single-unit-cell Bi₂WO₆ nanostructures via Ti doping, demonstrating significantly enhanced photocatalytic activity for degradation of pollutants, which has been well recognized within the materials science community. He has also produced influential research on MXenes as a next-generation class of two-dimensional materials with exceptional promise for photocatalytic applications, offering new pathways for clean energy generation and environmental purification. His interdisciplinary portfolio extends into pioneering studies on water splitting and lithium-ion batteries, addressing global demands for high-efficiency renewable energy storage and conversion technologies. Additionally, he has participated in the design and synthesis of new dihydropyridine- and benzylideneimine-based tyrosinase inhibitors, contributing to targeted pharmaceutical development. His environmental science work assessing heavy metal contamination and phytoremediation strategies in groundwater demonstrates a strong commitment to tackling real-world sustainability challenges. Dr. Noor’s research consistently blends advanced material innovation with societal impact, highlighting applications ranging from clean water and energy to healthcare and ecological restoration. Across his publications in reputable international journals, he leverages multidisciplinary approaches, collaborative research, and modern experimental methods to deliver scientific outcomes with direct industrial and environmental relevance. Dr. Noor’s strong momentum in impactful research positions him as a valuable contributor to global efforts in developing sustainable solutions and advancing cutting-edge technologies that support a cleaner and healthier future.

Profile: Google Scholar

Featured Publications

Arif, M., Zhang, M., Mao, Y., Bu, Q., Ali, A., Qin, Z., Muhmood, T., Liu, X., Zhou, B., … Shah, N. (2021). Oxygen vacancy mediated single unit cell Bi₂WO₆ by Ti doping for ameliorated photocatalytic performance. Journal of Colloid and Interface Science, 581, 276–291.

Shah, N., Wang, X., & Tian, J. (2023). Recent advances in MXenes: A promising 2D material for photocatalysis. Materials Chemistry Frontiers, 7(19), 4184–4201.

Hashmi, S. M., Noor, S., & Parveen, W. (2025). Advances in water splitting and lithium-ion batteries: Pioneering sustainable energy storage and conversion technologies. Frontiers in Energy Research, 12, 1465349.

Ahmad, I., Parveen, W., Noor, S., Udin, Z., Ali, A., Ali, I., Ullah, R., & Ali, H. (2024). Design and synthesis of novel dihydropyridine- and benzylideneimine-based tyrosinase inhibitors. Frontiers in Pharmacology, 15, 1332184.

Khan, S., Kamal, M., Noor, S., & Afzal, S. M. (2024). Assessment of heavy metals and its treatment through phytoremediation in groundwater along River Kabul in district Charsadda. Frontiers in Environmental Science, 12, 1392892.

Saber Arabi Nowdeh | Renewable energy | Research Excellence Award

Mr. Saber Arabi Nowdeh | Renewable energy | Research Excellence Award

Mr. Saber Arabi Nowdeh | Golestan vocational and technical training center, gorgan. | Iran

Mr. Saber Arabi Nowdeh is a highly impactful researcher in the field of renewable energy systems, with a strong focus on hybrid power generation, distributed energy planning, and optimization-based reliability enhancement for modern power grids. His research extensively explores the integration and optimal sizing of photovoltaic, wind, and fuel cell technologies to achieve reliable, cost-efficient, and sustainable standalone energy solutions, particularly in off-grid and future low-carbon infrastructures. He has developed and applied advanced meta-heuristic and hybrid optimization techniques, including ant lion optimization, fuzzy multi-objective decision methods, and hybrid meta-heuristic algorithms, to enhance system efficiency, improve power quality, reduce energy losses, and increase reliability indices such as LOEE and LOLE. His publications in well-recognized journals including Renewable Energy, Journal of Cleaner Production, Applied Soft Computing, and Environmental Technology & Innovation demonstrate both strong academic recognition and the practical relevance of his contributions. With several of his research articles achieving high citation counts, his work is widely acknowledged by the global scientific community and frequently used as a foundational reference in designing resilient renewable energy systems. His studies have also expanded knowledge in strategic allocation of distributed generation resources, addressing load interruption probability, and strengthening the reliability of smart distribution networks. Overall, his ongoing research continues to advance cutting-edge solutions for integrating clean energy sources into future power systems, supporting global sustainability goals and strengthening the scientific basis for innovative energy technologies.

Profile: ORCID | Google Scholar | ResearchGate

Featured Publications

Moghaddam, M. J. H., Kalam, A., Nowdeh, S. A., Ahmadi, A., & Babanezhad, M. (2019). Optimal sizing and energy management of stand-alone hybrid photovoltaic/wind system based on hydrogen storage considering LOEE and LOLE reliability indices using flower … Renewable Energy, 135, 1412–1434.

Jahannoosh, M., Nowdeh, S. A., Naderipour, A., Kamyab, H., & Davoudkhani, I. F. (2021). New hybrid meta-heuristic algorithm for reliable and cost-effective designing of photovoltaic/wind/fuel cell energy system considering load interruption probability. Journal of Cleaner Production, 278, 123406.

Nowdeh, S. A., Davoudkhani, I. F., Moghaddam, M. J. H., Najmi, E. S., & Abdelaziz, A. Y. (2019). Fuzzy multi-objective placement of renewable energy sources in distribution system with objective of loss reduction and reliability improvement using a novel hybrid method. Applied Soft Computing, 77, 761–779.

Hadidian-Moghaddam, M., Arabi-Nowdeh, S., Bigdeli, M., & Azizian, D. (2018). A multi-objective optimal sizing and siting of distributed generation using ant lion optimization technique. Ain Shams Engineering Journal, 9(4), 2101–2109.

Jafar-Nowdeh, A., Babanezhad, M., Arabi-Nowdeh, S., & Naderipour, A. (2020). Meta-heuristic matrix moth–flame algorithm for optimal reconfiguration of distribution networks and placement of solar and wind renewable sources considering reliability. Environmental Technology & Innovation, 20, 101118.

Diego Zarie | Renewable Energy | Young Researcher Award

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Mr. Diego Zarie | Renewable Energy | Young Researcher Award

Junior Researcher, University of Cuenca, United States

Mr. Diego Zarie is a dedicated Electrical Engineering student at the University of Cuenca, Ecuador (2019–2025), specializing in Control and Automation with a strong academic foundation that also includes studies in Power Systems at the Universidad Autónoma de Ciudad Juárez, Mexico (2024) and early technical training at Unidad Educativa Técnico Salesiano, Cuenca (2012). Professionally, he has served as Project Manager at M.O. Construcciones (2023–2025), where he has been responsible for designing, planning and executing residential, commercial and industrial electrical projects, including the successful implementation of the ISO 50001 energy efficiency standard in residential construction. His research interests lie in renewable energy, energy efficiency, power systems and automation, with a focus on integrating sustainable practices into engineering solutions. Skilled in project management, system control, and programming across Assembly, C, C++,and ML, Mr. Diego Zarie combines technical expertise with leadership and organizational abilities. He has also demonstrated strong community engagement as an international volunteer in Teresina, Brazil, contributing to UN Sustainable Development Goal 4 on quality education. Recipient of recognition for his early contributions, including one indexed publication, he shows great promise as a young researcher. In conclusion, Mr. Diego Zarie exemplifies academic excellence, professional competence, and social responsibility, making him a deserving candidate for recognition.

Profile: ORCID

Featured Publications

Arévalo-Cordero, P., González, F., Martínez, A., Zarie, D., Rodas, A., Albornoz, E., Ochoa-Correa, D., & Benavides, D. (2025). Hybrid LSTM–FACTS control strategy for voltage and frequency stability in EV-penetrated microgrids. Technologies, 13(9), 402.

 

Dr. Nabin Rawal | Soil Network | Best Researcher Award

Dr. Nabin Rawal | Soil Network | Best Researcher Award

Dr. Nabin Rawal, Nepal Agricultural Research Council, Nepal

Dr. Nabin Rawal is a dedicated soil scientist with a Ph.D. in Soil Science from Agriculture and Forestry University, Nepal. He currently serves as Scientist-2 at the Soil Science Division, Nepal Agricultural Research Council (NARC), where he leads vital research in soil fertility, conservation agriculture, and soil biology. With over a decade of experience, Dr. Rawal is committed to promoting sustainable agriculture through science-backed practices. His work bridges field research with practical technologies for farmers, ensuring improved soil health and crop productivity. Passionate about soil-carbon-climate dynamics and digital soil mapping, Dr. Rawal’s research plays a crucial role in sustainable land management and climate resilience in Nepal. 🌱🔬🌍

Professional Profile 

Orcid

Google Scholar

Suitability for Award

Dr. Nabin Rawal is highly deserving of the Best Researcher Award due to his impactful contributions to soil science and sustainable agriculture in Nepal. His research combines practical field applications with advanced laboratory techniques, contributing to improved soil fertility, nutrient management, and climate-smart farming. Notably, his award-winning publication on phosphorus and potassium mineralization has received international recognition, reflecting the significance of his scientific output. Dr. Rawal’s dedication to conservation agriculture, digital soil mapping, and farmer-oriented technology transfer underlines his commitment to agricultural sustainability. His expertise supports long-term food security and environmental preservation, making him a leader in his field and a strong candidate for this prestigious honor. 🏅🌾📈

Education

Dr. Nabin Rawal holds a Doctorate of Philosophy in Soil Science from Agriculture and Forestry University, Rampur, Chitwan, completed in 2022. He obtained his Master’s degree in Agriculture (Soil Science) in 2013 from the Institute of Agriculture and Animal Sciences (IAAS), Rampur Campus, affiliated with Tribhuvan University (TU), Nepal. His educational journey began with a Bachelor’s degree in Agricultural Science (B.Sc.Ag) from the same institution in 2010. This strong academic foundation has enabled Dr. Rawal to develop specialized expertise in soil fertility, conservation practices, and sustainable agriculture. His scholarly training empowers him to address complex agricultural challenges through a combination of theoretical knowledge and practical innovation. 🎓🧪🌍

Experience 

Dr. Nabin Rawal has extensive professional experience as a soil scientist. Since March 2023, he has served as Scientist-2 at the Soil Science Division, NARC, leading projects on soil fertility, soil biology, and conservation agriculture. Previously, he worked as Scientist-1 at NARC (2015–2017), where he also functioned as Technical Secretary to the Executive Director, coordinating national-level agricultural research programs. Dr. Rawal’s work emphasizes transferring research-based technologies to farmers through rigorous field trials and collaboration. His focus on sustainable farming and climate-smart technologies has greatly contributed to Nepal’s agricultural resilience. His research integrates modern tools like GIS and digital soil mapping, placing him at the forefront of soil science innovation. 🌾🧑‍🔬🛰️

Awards and Honors

Dr. Nabin Rawal received the 2024 Journal Outstanding Paper Award from the American Society of Agronomy (ASA), Crop Science Society of America (CSSA), and Soil Science Society of America (SSSA). The award recognized his impactful paper on phosphorus and potassium mineralization, published in Agrosystems, Geosciences & Environment (AGE) via Wiley Online Library. This international recognition underscores the scientific value and practical implications of his work in enhancing soil nutrient dynamics. Beyond this, Dr. Rawal’s contributions to Nepal’s soil science landscape—through research, policy support, and farmer outreach—have earned him respect across both scientific and agricultural communities. His ongoing efforts to promote sustainable soil management continue to be celebrated both nationally and globally. 🏆📚🌱

Research Focus 

Dr. Nabin Rawal’s research is centered on soil fertility, nutrient and crop management, conservation agriculture, soil health, and climate change adaptation. He investigates soil carbon dynamics, mineralization processes, and their links to sustainability. His work includes digital soil mapping, GIS-based analysis, and soil survey to inform precision agriculture. Dr. Rawal also explores crop rotation strategies and soil biology, aiming to enhance soil resilience and long-term productivity. His research supports eco-friendly and economically viable farming techniques that help address food security while maintaining environmental health. By bridging the gap between lab research and field-level application, Dr. Rawal empowers farmers with science-driven solutions. 🌍🧬📈

Publication Top Notes

  • Nutrient Use Efficiency (NUE) of Wheat (Triticum aestivum L.) as Affected by NPK Fertilization

    • Year: 2022
    • Citations: 60

  • Soil Fertility Mapping of Different VDCs of Sunsari District, Nepal Using GIS

    • Year: 2018
    • Citations: 22

  • Phosphorus and Potassium Mineralization as Affected by Phosphorus Levels and Soil Types Under Laboratory Condition

    • Year: 2022
    • Citations: 18

  • Analysis of Yield Attributing Characters of Different Genotypes of Wheat in Rupandehi, Nepal

    • Year: 2017
    • Citations: 17

  • Crop Yield and Soil Fertility Status of Long-Term Rice–Rice–Wheat Cropping Systems

    • Year: 2017
    • Citations: 14

 

 

Prof. Pinghui Wu | Technology | Best Researcher Award

Prof. Pinghui Wu | Technology | Best Researcher Award

Prof. Pinghui Wu | Technology – Division Chief of Scientific Research at Quanzhou Normal University, China

Prof. Wu Pinghui, a distinguished academic from Quanzhou Normal University, has made remarkable contributions to the fields of advanced optics, materials science, and thermal engineering. With a robust portfolio of research, Wu’s work reflects a passion for innovation and scientific exploration, particularly in areas like metamaterials and solar energy technologies. Known for a collaborative approach, Wu has worked with numerous international researchers, driving forward impactful studies that influence both theoretical and applied sciences.

Profile:

Orcid | Scopus | Google Scholar

Education:

Prof. Wu Pinghui pursued advanced studies in materials science and optical engineering, laying a strong foundation for a career marked by academic excellence and groundbreaking research. The educational journey involved rigorous training in both theoretical principles and practical applications, fostering expertise in cutting-edge technologies. This academic background has been pivotal in shaping Wu’s approach to complex scientific challenges and interdisciplinary collaborations. 🎓

Experience:

With years of dedicated academic service, Wu has held prominent research and teaching positions at Quanzhou Normal University. This experience includes mentoring graduate students, leading research projects, and contributing to curriculum development in scientific disciplines. Wu’s role extends beyond academia, with active participation in international conferences and collaborative research initiatives that span across institutions and countries. 🌍

Research Interests:

Wu’s research interests are diverse, encompassing optical materials, thermal energy systems, and metamaterial-based devices. Key areas include the development of ultra-broadband solar absorbers, terahertz smart devices, and advanced optical reinforcement materials. Wu’s work is characterized by a focus on sustainability, energy efficiency, and the application of novel materials to solve real-world technological problems. 🔬

Awards:

While specific awards are not detailed, Wu’s academic achievements, high citation count, and influential publications underscore a career recognized for excellence. The impact of Wu’s research is reflected in the widespread adoption of scientific findings and contributions to the academic community. 🏆

Selected Publications:

  1. “Highly Localized Linear Array of Optical Rings with Multiple Tunable Degrees of Freedom” (2025) – Optics Communications ✨
  2. “Highly Efficient Color Tuning of Lithium Niobate Nanostructures on Flexible Substrate” (2025) – Materials 🌈
  3. “Ultra-Broadband Solar Absorber and Near-Perfect Thermal Emitter Based on Columnar Titanium Micro-Structure” (2025) – Applied Thermal Engineering ☀️
  4. “Bi-Directional Metamaterial Perfect Absorber Based on Gold Grating and TiO₂-InAs Normal Hexagonal Pattern Film” (2025) – Solar Energy Materials and Solar Cells ⚡
  5. “Thermal Radiation Analysis of a Broadband Solar Energy-Capturing Absorber Using Ti and GaAs” (2025) – Dalton Transactions 🌞
  6. “Ultra-Broadband Absorber and Near-Perfect Thermal Emitter Based on Multi-Layered Grating Structure Design” (2025) – Energy 🔥
  7. “Terahertz Smart Devices Based on Phase Change Material VO₂ and Metamaterial Graphene” (2025) – Optics and Laser Technology 🌐

Cited By: Over 6,610 citations, reflecting the widespread influence and recognition of these works. 📚

Conclusion:

Prof. Wu Pinghui’s academic journey exemplifies a commitment to scientific excellence and innovation. The combination of extensive research output, impactful publications, and interdisciplinary collaborations highlights a career dedicated to advancing knowledge and technology. Wu’s contributions not only enrich the academic community but also inspire future generations of researchers. This nomination for the Best Researcher Award is a testament to the profound impact Wu has made in the scientific world. 🌟

Dr. Mehmet Sait Çay | Renewable Energy | Best Researcher Award

Dr. Mehmet Sait Çay | Renewable Energy | Best Researcher Award

Dr. Mehmet Sait Çay, TUBITAK Marmara Research Center, Turkey

Dr. Mehmet Sait Çay is a distinguished researcher specializing in renewable energy, thermal power systems, and hydroelectric power plant (HEPP) technologies. He holds a Ph.D. in Mechanical Engineering from Kocaeli University and has extensive experience at TÜBİTAK Marmara Research Center, focusing on energy technologies and sustainable power solutions. His expertise includes heat exchanger design, flue gas desulfurization, cooling systems, and lubrication techniques for HEPPs. Dr. Çay has contributed significantly to research and development, working on technical and economic feasibility studies for energy projects. He has also gained international experience through research stays in Romania and South Korea, collaborating on innovative energy technologies. His impactful contributions make him a key figure in advancing energy efficiency and sustainability.

🌍 Professional Profile:

Orcid

Google Scholar

🏆 Suitability for the Best Researcher Award 

Dr. Mehmet Sait Çay is an exceptional candidate for the Best Researcher Award due to his outstanding contributions to renewable energy, thermal power systems, and hydroelectric technologies. His pioneering research in heat exchanger design, cooling systems, and flue gas desulfurization has significantly impacted the energy sector. With extensive international experience and collaborations in Korea and Romania, he has advanced cutting-edge solutions for sustainable energy. His work at TÜBİTAK Marmara Research Center has driven innovations in power plant optimization and environmental sustainability. Dr. Çay’s dedication to engineering advancements, feasibility studies, and technical designs has earned him recognition as a leading researcher, making him highly deserving of this prestigious award.

🎓 Education 

Dr. Mehmet Sait Çay has a strong academic foundation in mechanical engineering, specializing in energy systems and power plant technologies. He earned his Ph.D. from Kocaeli University (2013–2020), focusing on mechanical engineering innovations. His Master’s degree from Hitit University (2012–2013) further deepened his expertise in renewable energy and thermal systems. He also holds a Bachelor of Science from Hitit University (2007–2011) and pursued a dual-degree program at the University of Craiova, Romania (2010–2011) under the ERASMUS Student Exchange Program. His diverse academic background, combined with practical industry applications, has enabled him to develop advanced engineering solutions for power systems, cooling technologies, and renewable energy applications.

🏢 Work Experience 

Dr. Mehmet Sait Çay has been a key researcher at TÜBİTAK Marmara Research Center’s Energy Technologies Division since 2012, focusing on renewable energy, thermal power plants, and hydroelectric systems. His expertise includes heat exchanger design, cooling system optimization, and flue gas desulfurization. He has also led technical and economic feasibility analyses for energy projects. His international experience includes a research internship at Korea Institute of Energy Research (2015), where he worked on concept and detail design for the MILTES Project, and an Erasmus research semester in Romania (2011). His practical contributions to energy technology innovation and power system sustainability have been instrumental in shaping advancements in the field.

🏅 Awards and Honors 

Dr. Mehmet Sait Çay has received multiple recognitions for his pioneering research in energy engineering. His work on thermal power plants and renewable energy optimization has been acknowledged through prestigious grants and awards. He was awarded a scholarship for international research under the ERASMUS Student Exchange Program (2011), allowing him to study at the University of Craiova, Romania. Additionally, he was selected for a competitive research project at the Korea Institute of Energy Research (2015), where he contributed to cutting-edge energy system designs. His contributions to heat exchanger efficiency, cooling system innovations, and power plant feasibility studies have established him as a leading researcher in sustainable energy solutions.

🔬 Research Focus 

Dr. Mehmet Sait Çay’s research spans renewable energy, thermal power plant efficiency, and hydroelectric power systems. His work primarily focuses on heat exchanger design and optimization for improved thermal power plant performance. He has made significant advancements in flue gas desulfurization systems, reducing environmental impact from fossil fuel-based power generation. His expertise extends to technical and economic feasibility studies, ensuring cost-effective and sustainable energy solutions. He has also developed cooling water, air conditioning, and drainage systems for hydroelectric power plants (HEPPs). Additionally, his research includes bearing lubrication and cooling system designs for HEPPs, enhancing their efficiency and reliability. His contributions play a critical role in advancing green energy technologies and sustainable power solutions.

📊 Publication Top Notes:

  • Mechanical Dewatering Characteristics of a Turkish Lignite

    • Citations: 4

    • Year: 2022

  • Kömür Yakıtlı Termik Santrallarda Baca Gazı Kanalına Kuru Sorbent Enjeksiyonu ile Kükürt Giderme Sisteminin İncelenmesi

    • Citations: 4
    • Year: 2013

  • Ilgın Linyitindeki Suyun Mekanik Yöntemle Azaltılma Davranışının ve Ekonomikliğinin Belirlenmesi

    • Year: 2020
  • Experimental Investigation on Effect of Pressure, Time, and Particle Size on the Mechanical Dewatering Characteristics of Ilgın Lignite

    • Year: 2019

 

 

Dr. Peiwen Han | Sustainable Technology | Best Researcher Award

Dr. Peiwen Han | Sustainable Technology | Best Researcher Award

Dr. Peiwen Han, China Railway Design Corporation, China

Dr. Peiwen Han is a distinguished researcher in transportation planning and management, with a strong academic foundation and extensive professional experience. He holds a Ph.D. in Transportation Planning and Management from Beijing Jiaotong University and has conducted joint research at the University of Bologna, Italy. Currently serving as a Senior Engineer at the Transportation Planning and Research Institute of China Railway Design Corporation, Dr. Han specializes in sustainable transport systems, railway operations, and big data analysis. His work has been recognized through multiple scientific research projects and high-impact publications. With a commitment to advancing railway efficiency and urban transportation, Dr. Han continues to contribute significantly to the future of sustainable and intelligent transport systems.

🌍 Professional Profile:

Scopus

🏆 Suitability for Best Researcher Award

Dr. Peiwen Han is a highly accomplished researcher whose contributions to transportation planning, railway operations, and sustainable mobility make him an ideal candidate for the Best Researcher Award. His work integrates cutting-edge optimization models, big data analytics, and innovative scheduling techniques to enhance the efficiency of modern railway networks. Over the past five years, he has successfully led and participated in multiple high-profile research projects with significant funding, showcasing his ability to drive impactful studies. His peer-reviewed publications in SCI and EI-indexed journals demonstrate his expertise and commitment to advancing transportation science. Dr. Han’s research has practical applications in real-world railway systems, making him a deserving recipient of this prestigious recognition.

🎓 Education

Dr. Peiwen Han has built an impressive academic foundation in transportation planning and management. He earned his Bachelor’s degree in Transportation from Beijing Jiaotong University (2009-2013), followed by enrollment in a combined master-Ph.D. program at the same university. In 2020, he successfully defended his Ph.D. in Transportation Planning and Management, focusing on railway system optimization. To expand his research expertise, he participated in a joint-training program at the University of Bologna, Italy (2016-2017), where he specialized in Operations Research and Organizational Studies. His interdisciplinary education, combining engineering principles, mathematical modeling, and sustainable transport strategies, has laid a solid foundation for his innovative contributions to the field of modern transportation systems.

🏢 Work Experience 

Dr. Peiwen Han has gained extensive experience in both academic research and industry applications. From 2021 to 2024, he worked as an engineer at the Transportation Planning and Research Institute of China Railway Design Corporation, focusing on transport optimization and urban rail network integration. In November 2024, he was promoted to Senior Engineer at the same institute, further expanding his role in strategic transportation projects. His career includes leadership in multiple government-funded railway research initiatives, where he applies big data analytics, optimization models, and AI-driven scheduling methods. His contributions have directly influenced national railway policies and sustainable transport development, positioning him as a leading expert in modern transportation science.

🏅 Awards and Honors 

Dr. Peiwen Han’s exceptional research and industry contributions have been recognized through prestigious awards and honors. He received the Best Paper Award for his research on multi-objective integer programming models for high-speed railway networks. His innovative contributions to railway planning and scheduling have earned him the Outstanding Research Award in Sustainable Transportation. Additionally, he has played a key role in government-funded projects, earning accolades for his scientific and technological advancements in the field. His expertise in big data analysis for railway networks has also been acknowledged with an Excellence in Transportation Science Award. These honors reflect his dedication, impact, and leadership in transforming modern transportation systems.

🔬 Research Focus

Dr. Peiwen Han specializes in sustainable transport planning, railway system optimization, and big data-driven decision-making. His research integrates mathematical modeling, operations research, and AI-powered solutions to enhance railway efficiency and urban mobility. His work explores passenger flow analysis, high-speed railway scheduling, and transport policy optimization. He has developed multi-objective integer linear programming models to optimize railway planning while ensuring profitability and sustainability. Additionally, his research on railway station facility optimization has contributed to reducing congestion and improving infrastructure efficiency. By leveraging big data analytics and machine learning, he aims to create resilient, efficient, and environmentally sustainable transport networks, shaping the future of global railway systems.

📊 Publication Top Notes:

  • The integration of optimizing train timetables with EMU route plans

 

 

Prof. Tian Tian | Renewable Energy | Best Researcher Award

Prof. Tian Tian | Renewable Energy | Best Researcher Award

Prof. Tian Tian, Yangzhou University, China

Dr. Teng Huang is a distinguished researcher at Guangzhou University, China, specializing in Blockchain, Smart Contracts, and AI-driven Medical Image Segmentation. His work integrates Comprehensive Transformer Integration Networks (CTIN) to enhance medical diagnostics. With numerous high-impact publications in IEEE and other top journals, Dr. Teng Huang has contributed significantly to breast lesion detection, brain tumor segmentation, and privacy-preserving AI. His expertise extends to remote sensing, recommendation systems, and adversarial learning. Dr. Teng Huang’s innovative research bridges healthcare, AI, and blockchain, establishing him as a leader in computational intelligence and medical AI applications.

🌍 Professional Profile:

Orcid

🏆 Suitability for Best Researcher Award 

Dr. Teng Huang’s groundbreaking contributions in medical imaging, blockchain security, and AI-driven diagnostics make him a strong candidate for the Best Researcher Award. His work on transformer-based segmentation models, privacy-preserving AI, and federated learning has significantly advanced both healthcare and secure computing. With publications in prestigious journals like IEEE Transactions on Medical Imaging and IEEE Journal of Biomedical and Health Informatics, Dr. Teng Huang has demonstrated exceptional research impact. His multi-disciplinary expertise, innovative problem-solving, and commitment to scientific excellence set him apart as a leader in AI-driven healthcare solutions and blockchain applications.

📚 Education

Dr. Teng Huang holds a Ph.D. in Computer Science, specializing in Artificial Intelligence, Blockchain, and Medical Image Processing. His academic journey includes extensive research on deep learning architectures for healthcare and secure computing. His doctoral studies focused on optimizing transformer-based AI models for medical applications, particularly in breast cancer detection and brain tumor segmentation. He has also worked on privacy-preserving federated learning for secure data sharing in healthcare. Dr. Teng Huang’s educational background has equipped him with expertise in machine learning, optimization, and blockchain security, paving the way for his innovative contributions to AI-driven healthcare solutions.

👨‍🏫 Experience 

Dr. Teng Huang is a faculty member and researcher at Guangzhou University, China, where he leads projects on blockchain security, AI-driven diagnostics, and remote sensing applications. He has collaborated with international experts in biomedical image processing, adversarial AI, and recommendation systems. His work in privacy-preserving federated learning has been instrumental in enhancing data security in medical AI applications. With experience in designing intelligent models for 3D medical segmentation, ultrasound imaging, and smart contracts, Dr. Teng Huang continues to push the boundaries of AI research and secure computing, making significant contributions to both academia and industry.

🏅 Awards & Honors 

Dr. Teng Huang has received multiple Best Paper Awards at IEEE international conferences for his pioneering work in AI-driven medical imaging and blockchain security. He has been recognized as a Top Researcher in AI for Healthcare by leading institutions. His contributions to transformer-based medical diagnostics and federated learning security have earned him prestigious grants and funding. He is also a recipient of the Outstanding Young Researcher Award for his work in privacy-preserving AI and adversarial learning techniques. His innovative AI-driven solutions for medical imaging and remote sensing have positioned him as a global leader in computational healthcare research.

🔬 Research Focus 

Dr. Teng Huang specializes in Blockchain, Smart Contracts, Medical Image Processing, and AI-driven Healthcare Innovations. His research involves Comprehensive Transformer Integration Networks (CTIN) for advanced medical image segmentation in breast lesion and brain tumor detection. He is also working on privacy-preserving federated learning for secure medical data exchange. His expertise extends to adversarial learning, recommender systems, and remote sensing AI applications. By integrating deep learning, blockchain security, and smart contracts, Dr. Teng Huang is revolutionizing secure AI-driven diagnostics. His work significantly impacts healthcare, cybersecurity, and AI-based automation for next-generation medical solutions.

📊 Publication Top Notes:

  1. Emission and Absorption Spectroscopic Techniques for Characterizing Perovskite Solar Cells

    • Year: 2024

  2. Advancing Perspectives on Large-Area Perovskite Luminescent Films

    • Year: 2024

  3. Reducing Lead Toxicity of Perovskite Solar Cells with a Built-in Supramolecular Complex

    • Year: 2023

  1. Unlocking Multi-Photon Excited Luminescence in Pyrazolate Trinuclear Gold Clusters for Dynamic Cell Imaging

    • Year: 2024

  2. Durable Organic Nonlinear Optical Membranes for Thermotolerant Lightings and In Vivo Bioimaging

    • Year: 2023

 

 

Dr. Victor Felix | Sustainable Technology | Best Researcher Award

Dr. Victor Felix | Sustainable Technology | Best Researcher Award

Dr. Victor Felix, Fundação Oswaldo Cruz, Brazil

Dr. Victor Junior Lima Felix is a dedicated soil scientist specializing in sustainable agriculture and environmental recovery. He earned his Ph.D. in Soil Science from the Universidade Federal da Paraíba (UFPB) in 2021, focusing on the reclamation of degraded soils using treated wastewater in agroforestry systems. With a strong background in agroecology, soil genesis, classification, and ecological soil management, he has contributed significantly to soil conservation and sustainable land use. Dr. Felix is currently conducting postdoctoral research in ecology at Instituto Serrapilheira/Faperj/Fiocruz, reinforcing his commitment to ecological restoration and environmental sustainability.

Professional Profile 🌍 

Orcid

Suitability for Best Researcher Award 🏅

Dr. Victor Felix is highly suitable for the Best Researcher Award due to his impactful contributions to soil science, agroecology, and sustainable land management. His research addresses critical global challenges, including soil degradation, water reuse, and environmental conservation. As a researcher at UFPB and a postdoctoral scholar, his work bridges scientific innovation and practical application. His involvement in national research networks, collaboration with institutions like FUNAI, and leadership in soil science organizations further emphasize his expertise and dedication to advancing sustainable agricultural practices. His research has the potential to revolutionize agroforestry and soil restoration in semi-arid regions.

Education 🎓

Dr. Victor Felix holds a Ph.D. in Soil Science (2021) and a Master’s degree in Soil Science (2016) from UFPB, where he specialized in soil degradation recovery using wastewater in agroforestry systems. His undergraduate studies were in Agroecology at the Instituto Federal de Educação Ciência e Tecnologia da Paraíba (2013), equipping him with a strong foundation in sustainable agriculture. He has further enhanced his knowledge through specialized training, including courses on soil morphology, edaphoclimatic suitability, and mineralogical analysis. His academic journey reflects a commitment to interdisciplinary learning, integrating environmental sustainability with practical soil management strategies.

Experience 🔬

Dr. Felix has extensive research experience in soil science and agroecology. From 2016 to 2021, he was a doctoral researcher at UFPB, focusing on soil rehabilitation in semi-arid regions. He has collaborated with the Fundação Nacional do Índio (FUNAI) on sustainable land-use projects. Additionally, he was a research fellow at the Núcleo de Estudos em Agroecologia, where he worked on soil classification, morphology, and environmental sustainability. Currently, as a postdoctoral researcher at Instituto Serrapilheira/Faperj/Fiocruz, he is advancing ecological studies. His experience bridges academic research and real-world applications, contributing to soil restoration and sustainable agricultural systems.

Awards and Honors 🏆

Dr. Victor Felix has received prestigious scholarships and research grants, including funding from CAPES for his master’s and doctoral studies. His work on soil recovery and environmental sustainability has been recognized by the Sociedade Brasileira de Ciência do Solo, where he served as a member in the “Soil, Environment, and Society” division. His research contributions have been acknowledged in national conferences and workshops, earning him invitations to present on soil sustainability. Additionally, his projects have been supported by organizations such as Instituto Serrapilheira and Faperj, highlighting his excellence in environmental research and scientific impact.

Research Focus 🌱

Dr. Felix’s research centers on sustainable agriculture, soil restoration, and environmental conservation. His work explores soil degradation recovery through wastewater reuse, agroforestry systems, and sustainable land management. He has specialized in ethno-pedology, soil genesis, classification, and mineralogical analysis of semi-arid soils. His studies contribute to sustainable agricultural practices that enhance soil fertility while mitigating environmental degradation. Currently, his postdoctoral research at Instituto Serrapilheira/Faperj/Fiocruz investigates ecological approaches to soil management, emphasizing biodiversity conservation and climate resilience. His work is vital in promoting sustainable land-use strategies for vulnerable ecosystems.

Publication Top Notes 📖

  1. Treated Wastewater Affects the Fertility and Geochemistry of Degraded Soil in the Brazilian Semi-Arid Region

  2. Growth and Energy Characteristics of Arboreal Wood Irrigated with Treated Effluent in Degraded Soil of Semi-Arid Regions

  3. Effect of the Incorporation of Spent Mushroom Substrate and Remineralizer on the Chemical Attributes of an Acrisol

  1. Atributos físicos de uma topossequência de Luvissolos Crômicos (TC) no Semiárido paraibano

  2. Pesquisas agrárias e ambientais: Volume XI