Donghui Zheng | Nanoporous Metals | Best Researcher Award

Assist. Prof. Dr. Donghui Zheng | Nanoporous Metals | Best Researcher Award

Lecturer | Huanghuai University | China

Donghui Zheng, Ph.D., is an Assistant Professor in the School of Intelligent Manufacturing at Huanghuai University, Zhumadian, China, specializing in materials science and engineering. After completing his undergraduate studies in material forming and control engineering at Tianjin University of Science and Technology, he pursued a doctoral degree at Hebei University of Technology, where he earned his Ph.D. in 2022. His academic journey has been marked by strong achievements, including receiving multiple first-class scholarships and being named an excellent doctoral graduate in 2022. Currently, he is focused on advancing research in the field of nanoporous metals, using amorphous alloys as dealloying precursors, with applications in energy storage and conversion.

Profile

Orcid

Education

Donghui Zheng’s educational background is rooted in materials science and engineering. He began his academic career at Tianjin University of Science and Technology, where he earned his Bachelor’s degree in Material Forming and Control Engineering in 2016. Motivated by a keen interest in materials innovation, he pursued a doctoral degree at Hebei University of Technology, Tianjin, from 2017 to 2022, under the guidance of Professor Chunling Qin. Zheng’s doctoral research focused on developing advanced electrode materials for energy storage applications, contributing significantly to the field of material sciences. His rigorous academic training and research experience have provided him with a strong foundation for his current role as an assistant professor.

Experience

Dr. Zheng currently serves as an Assistant Professor in the School of Intelligent Manufacturing at Huanghuai University. He began his academic career at Huanghuai University in 2022, where he teaches materials-related courses to undergraduate students. In addition to his teaching role, he is actively involved in research, particularly in the area of nanoporous materials for energy storage and conversion. Dr. Zheng has gained extensive experience in conducting and leading research projects, and his involvement in various scientific and technological projects under the Education Department of Hebei and Henan provinces demonstrates his growing influence in the field.

Research Interest

Dr. Zheng’s primary research interest lies in the development of nanoporous metals, specifically using amorphous alloys as dealloying precursors. His work is centered on expanding the applications of these materials in energy storage devices, such as supercapacitors, and in energy conversion technologies. His studies aim to improve the performance and efficiency of energy storage systems by designing novel electrode materials that enhance both conductivity and stability. His interdisciplinary research also explores the fabrication of flexible and wearable devices, bridging the fields of material science, energy, and technology innovation.

Awards

Dr. Zheng has been recognized for his exceptional academic and research achievements throughout his career. He was awarded the Best Researcher Award for his groundbreaking contributions to materials science, particularly in the development of advanced electrode materials for energy storage. These accolades underscore his dedication and expertise in the field.

Publications

Zheng D.H., Sun X.H., An C.H., et al. “Flexible multi-layered porous CuxO/NiO (x = 1, 2) photo-assisted electrodes for hybrid supercapacitors: Design and mechanism insight.” Chemical Engineering Journal, 2023, 473: 145289.

Qin C.L., Zheng D.H., Hu Q.F., et al. “Flexible integrated metallic glass-based sandwich electrodes for high-performance wearable all-solid-state supercapacitors.” Applied Materials Today, 2020, 19: 100539. (Co-First Author)

Zheng D.H., Zhao F., Li Y.Y., et al. “Flexible NiO micro-rods/nanoporous Ni/metallic glass electrode with sandwich structure for high performance supercapacitors.” Electrochimica Acta, 2019, 297: 767-777.

Zheng D.H., Li M., Li Y.Y., et al. “A Ni(OH)2 nanopetals network for high-performance supercapacitors synthesized by immersing Ni nanofoam in water.” Beilstein Journal of Nanotechnology, 2019, 10: 281-293.

Zhao F., Zheng D.H., Liu Y., et al. “Flexible Co(OH)2/NiOxHy@Ni hybrid electrodes for high energy density supercapacitors.” Chemical Engineering Journal, 2021, 415: 128871. (Co-First Author)

Sun X.H., Zheng D.H., Pan F.D., et al. “3D nanoporous Ni@NiO/metallic glass sandwich electrodes without corrosion cracks for flexible supercapacitor application.” Applied Surface Science, 2021, 545: 149043. (Co-First Author)

Zhang Y., Zheng D.H., Liu S.M., et al. “Flexible porous Ni(OH)2 nanopetals sandwiches for wearable non-enzyme glucose sensors.” Applied Surface Science, 2021, 552: 149529. (Co-First Author)

Conclusion

Dr. Donghui Zheng’s academic and professional journey reflects a strong commitment to advancing materials science, particularly in the development of high-performance electrode materials for energy storage applications. His expertise in nanoporous metals and energy conversion technologies has garnered attention in the academic community, as evidenced by his numerous publications in leading journals. With a growing list of accolades, including multiple scholarships and recognition as an Excellent Doctoral Graduate, Dr. Zheng’s contributions to his field continue to make an impact. His ongoing research projects and leadership in scientific endeavors are poised to drive innovation in materials science and energy technologies.

Hossein Ali Kamali | Machin Learning | Best Researcher Award

Dr. Hossein Ali Kamali | Machin Learning | Best Researcher Award

Student | Ferdowsi university of mashhad | Iran

The individual in focus is a highly skilled researcher and engineer specializing in Aerospace Engineering, particularly in aerodynamics. With a Ph.D. in Aerospace Engineering from Ferdowsi University of Mashhad (2024), their work is heavily focused on experimental and numerical analyses, along with the integration of machine learning methods to enhance aerodynamics and fluid dynamics research. Their academic journey started with a Master of Science degree in Aerospace Engineering (Aerodynamics) from the same university in 2016. Over the years, they have developed a solid foundation in simulating complex fluid dynamics phenomena and optimizing various aerodynamic systems, particularly in cavitation and ventilation effects. Their strong analytical and computational skills are complemented by a keen interest in experimental methods and machine learning integration for better predictions in aerodynamics.

Profile

Education

The individual earned their Ph.D. in Aerospace Engineering, specializing in Aerodynamics, from Ferdowsi University of Mashhad in 2024. The doctoral research focused on experimental and numerical investigations, specifically examining the effects of cavitator angle and aft body geometry on stable artificial cavity characteristics. The study further delved into using machine learning techniques to extend the research findings. Prior to this, they obtained a Master of Science degree in Aerospace Engineering (Aerodynamics) in 2016, also from Ferdowsi University of Mashhad. The thesis explored the simulation and study of water-liquid injection into hot supersonic flows, contributing to the advancement of supersonic aerodynamics.

Experience

Throughout their academic career, the individual has accumulated a wealth of experience in both experimental and computational aerodynamics. They have worked extensively with state-of-the-art simulation tools such as Ansys Fluent, Ansys CFX, Starccm+, Python, and SU2. Their hands-on approach to research, paired with solid computational techniques, has enabled them to develop robust models and simulations. The individual has also applied their skills in various research environments, collaborating with experts to produce valuable insights into cavitation, supercavitation, and related fluid phenomena. Their experience includes working on several high-level projects involving the optimization of random forest models, particle swarm techniques, and machine learning approaches to predict and analyze complex fluid behaviors.

Research Interests

The individual’s primary research interests lie in optimization, machine learning, computational fluid dynamics (CFD), multiphase flow, and heat transfer. Their work aims to bridge the gap between theoretical fluid dynamics and practical applications, using machine learning and advanced computational methods to predict and optimize aerodynamic and hydrodynamic systems. Specifically, they are interested in enhancing the understanding of artificial cavitation phenomena, investigating critical parameters influencing flow behaviors, and improving system efficiency through optimized designs. Their research integrates both experimental techniques and computational simulations to achieve more accurate and reliable results in fluid dynamics.

Award

Based on the provided details, the individual seems highly qualified and well-suited for the Best Researcher Award. Their outstanding contributions to aerospace engineering, particularly in optimizing cavitation and supercavitation phenomena, as well as their pioneering use of machine learning methods to solve complex fluid dynamics problems, make them a deserving candidate for this prestigious recognition.

Publications Top Note

“Experimental and numerical analysis of cavitator angle effects on artificial cavitation characteristics under low ventilation coefficients, with prediction using optimized random forest and extreme gradient boosting models,” Ocean Engineering, 2024.

“Analyzing the influence of dimensions of the body behind the cavitator on ventilated cavitation,” Physics of Fluids, 2024.

“Investigating the interaction parameters on ventilation supercavitation phenomena: Experimental and numerical analysis with machine learning interpretation,” Physics of Fluids, 2023.

“Investigation of the Behavior and Critical Parameters of the Hysteresis Curve in Artificial Cavitation Flows using Experiments, Simulations, and Machine Learning,” Experimental and Computational Multiphase Flow, 2023 (Accepted).

“Water jet angle prediction in supersonic crossflows: Euler–Lagrange and machine learning approaches,” European Physical Journal Plus, 2024.

“Effect of the arrangement of the injectors on the flow quantities in water injection into the hot supersonic crossflow inside the cylinder,” International Journal of Modern Physics C, 2024.

“The experimental and numerical study of formation and collapse processes of ventilated supercavitating flow,” International Journal of Modern Physics C, 2024.

Conclusion

In conclusion, the individual has demonstrated remarkable skill in aerospace engineering, with a deep understanding of aerodynamics, fluid dynamics, and machine learning. Their extensive experience, coupled with an impressive publication record, underscores their position as an emerging leader in the field. Their contributions to the understanding of cavitation, supercavitation, and related phenomena have significant implications for improving fluid dynamics predictions and enhancing aerodynamic efficiency. With a strong background in both experimental methods and computational modeling, they continue to advance the frontiers of aerospace engineering research. The individual is poised to continue making substantial contributions to the field in the coming years.

Juanrong Zheng | Building Material | Best Researcher Award

Prof. Juanrong Zheng | Building Material | Best Researcher Award

Professor, School of Civil Engineering, Zhengzhou University, China

Zheng Juanrong is a distinguished Professor at the School of Civil Engineering at Zhengzhou University with expertise in building materials, particularly focusing on green cement-based materials. She earned her PhD in Building Materials from the China University of Mining and Technology, Beijing Campus, and has made significant contributions to structural engineering. With extensive academic and professional experience, Zheng has been at the forefront of advancing eco-friendly and sustainable construction materials. She is an active member of the Board of Directors for multiple professional organizations, including the China Higher Education Inorganic Materials Discipline Building Materials Society.

Profile

Scopus

Education

Zheng Juanrong completed her undergraduate studies in Mining at China University of Mining and Technology and continued her academic journey to obtain a PhD in Building Materials in 2001. During her doctoral research, she delved into material science, with a particular focus on cement and building materials, which formed the foundation of her career in research and teaching. She later expanded her academic exposure through postdoctoral research at Tsinghua University’s School of Civil and Environmental Engineering from 2001 to 2003.

Experience

Zheng’s professional career spans both academia and industry. After completing her postdoctoral research, she worked at Beijing Blueprint Construction Co., Ltd., gaining hands-on industry experience. In 2004, she began her tenure at Zhengzhou University, where she currently teaches and conducts research. As a Professor, Zheng has supervised numerous master’s and doctoral students, shaping future leaders in civil engineering. Her research focuses on innovative and sustainable construction materials, aiming to reduce environmental impacts and improve the performance of materials used in construction.

Research Interests

Zheng Juanrong’s primary research interests lie in green cement-based building materials and their applications in structural engineering. She has explored the durability, performance, and environmental benefits of alternative binders and cementitious materials. Her projects investigate the use of mine tailings, fly ash, and other industrial by-products in cement production, focusing on enhancing the sustainability of construction materials. Notable projects include her work on cemented paste backfill from sulphide-rich mine tailings and the development of high-performance construction materials like plaster mortars and subway concrete segments.

Award

Zheng Juanrong has been recognized for her academic excellence and contributions to civil engineering. In 2012, she received the Outstanding Instructor Award at the “Subote” Cup Second National College Student Concrete Material Design Competition. Additionally, she earned the first prize for her research on inverted roof composite insulation boards and their production technologies from the Henan Provincial Department of Science and Technology in 2012. Her innovative work continues to receive acclaim within both academic and industrial communities.

Publication Top Note

“Factors affecting the durability of building plaster mortar and improvement measures,” Concrete, 2013.

“Experimental study on the effect of limestone powder on the performance of self-leveling cement-based floor mortar,” Concrete, 2013.

“Effect of retarder on setting time of high-speed rail rapid grouting materials,” New Building Materials, 2013.

“Mix design and performance study of high performance subway concrete segments,” Concrete and Cement Products, 2013.

“Experimental study on the preparation of C50 pumpable concrete using mine tailings and waste rock,” Concrete, 2013.

“Study on the performance of bonding mortar in external wall insulation system of polymer powder modified XPS board,” Journal of Zhengzhou University (Engineering Edition), 2012.

“Discussion on the mechanism of alkali-activated cementitious materials against sulfate attack,” Journal of Zhengzhou University (Engineering Edition), 2012.

 

 

Vasilica Istrate | Weather Modification | Best Researcher Award

Mr. Vasilica Istrate | Weather Modification | Best Researcher Award

Researcher | Active Interventions in the Atmosphere SA | Romania

Dr. Istrate Vasilică is a dedicated meteorologist and geographer, currently serving as the Active Atmospheric Interventions Coordinator and Programme Manager at Intervenții Active în Atmosfera SA in Bucharest, Romania. He is also an Assistant Professor at Alexandru Ioan Cuza University in Iași, where he contributes to the Faculty of Geography and Geology. Specializing in meteorology, climatology, and physical geography, Dr. Istrate’s work focuses on weather modification activities such as hail suppression and rain enhancement, aiming to reduce the impacts of adverse weather conditions on agriculture and the environment. His academic and professional efforts have significantly impacted the study and management of severe weather phenomena in Romania.

Profile

Orcid

Education

Dr. Istrate holds a PhD in Geography from Alexandru Ioan Cuza University of Iași, where his dissertation focused on the characteristics of hail genesis, prediction, and risk in agricultural areas in Moldova. He completed his Master’s degree in Natural Risk Assessment from the same university in 2011, having previously obtained his Bachelor’s degree in Geography with a focus on Physical Geography in 2009. Additionally, he has pursued various technical qualifications, including training as a pyrotechnician and artificer for surface works, further broadening his skill set in meteorology and related fields.

Experience

Dr. Istrate’s professional journey spans both academic and applied meteorology. He has been with Intervenții Active în Atmosfera SA since 2012, where he oversees weather condition monitoring and the management of a Hail Suppression Unit. His role involves coordinating weather modification programs, focusing on minimizing the risks associated with severe weather events, particularly hailstorms. In parallel, Dr. Istrate contributes to academia, having served as an Assistant Professor at Alexandru Ioan Cuza University since 2014, teaching meteorology, climatology, and physical geography, while also guiding students in their research. His comprehensive experience in both the practical and theoretical aspects of meteorology has positioned him as a leading expert in weather modification techniques in Romania.

Research Interests

Dr. Istrate’s research interests revolve around severe weather phenomena, particularly hail formation, prediction, and suppression. His work also delves into climate risk assessment, with a specific focus on the impacts of extreme weather on agricultural productivity in Moldova. Through his research, he aims to enhance the understanding of hailstorms and improve predictive models, which is critical for agricultural planning and disaster risk management. Additionally, he is interested in environmental change, particularly regarding the implications of hail suppression systems and their effects on land cover and regional climate.

Award

Based on the provided information about Istrate Vasilică, I believe that he is highly suitable for the “Best Researcher Award” in the field of meteorology and weather modification, particularly in areas related to hail suppression, rain enhancement, and atmospheric interventions.

Publication Top Note

Istrate V., George-Adriab, Istrate V., Ursu A., Ichim P., Breabăn I. (2023). Using Diachronic Cartography and GIS to Map Forest Landscape Changes in the Putna-Vrancea Natural Park, Land, 12(9): 1774.

Sfîcă L., Istrate V., Hrițac R., Machidon O. (2023). The Continental and Regional Synoptic Background Favorable for Hailstorm Occurrence in North-Eastern Romania, Progress in Physical Geography: Earth and Environment, 47(1), 3-31.

Istrate V., Dobri R.V., Bărcăcianu F., Ciobanu R.A., Apostol L. (2021). Sounding-Derived Parameters Associated with Severe Hail Events in Romania, Időjárás, 125(1), 39-52.

Istrate V., Jitariu V., Ichim P., Machidon O.M., Apostol L. (2021). Hailstorm Risk Assessment for Crop Areas in Moldova Region (Romania), Present Environment and Sustainable Development, 15(2), 55-67.

Istrate V., Axinte A.D., Florea D., Barcacianu F., Apostol L. (2019). Characteristics and Impacts of the Severe Hailstorms on 18 June 2016 in Northern Moldavia, Romania, SGEM 2019 Conference Proceedings, 19, 899-906.

Istrate V., Ursu A., Dobri R.V., Axinte A.D., Stoica D. (2019). Hail Suppression System in Romania and Its Relation with Land Cover, SGEM 2019 Conference Proceedings, 19, 871-878.

Istrate V., Mihu-Pintilie A., Lupașcu A., Irka H., Teleagă E. (2018). Paleoenvironment Data and Vegetation History from a Small Mesotrophic Site in the Curvature Subcarpathians, Geobalcanica 2018, Vol. 4, 79-86.

Conclusion

Dr. Istrate Vasilică is a prominent figure in the field of meteorology, particularly known for his contributions to hail suppression and weather modification in Romania. His academic achievements and extensive professional experience enable him to bridge the gap between theory and practice in meteorology. Through his work in both research and weather intervention programs, Dr. Istrate has not only advanced scientific understanding but also contributed significantly to environmental risk mitigation strategies in agriculture. With his continued dedication, Dr. Istrate’s contributions will undoubtedly play a pivotal role in shaping future meteorological practices and policies in Romania and beyond.

 

Chenhui Yu | Strategy Management | Best Researcher Award

Mr. Chenhui Yu | Strategy Management | Best Researcher Award

Chenhui Yu | Donghua University | China

Chenhui Yu is a promising Ph.D. candidate at Dong-Hua University, specializing in Strategy Management and Organizational Behavior. His academic journey has been marked by a strong commitment to empirical research, particularly in understanding the complexities of organizational dynamics. Yu’s contributions to the field are centered around strategy formulation and organizational behavior, and his work has already been published in high-impact academic journals. With a keen interest in empirical data analysis, Yu’s work continues to push the boundaries of knowledge in his area of expertise, focusing on practical applications within the business world.

Profile

Scopus

Education

Chenhui Yu completed his undergraduate studies at Zhejiang University of Finance and Economics, laying the groundwork for his deep interest in business and management. Building on this foundation, he is currently pursuing his Ph.D. at Dong-Hua University, where his research focuses on Strategy Management and Organizational Behavior. His doctoral research is expected to culminate in 2025, and throughout this journey, he has contributed to several key empirical studies, particularly within his chosen fields of research. His academic trajectory reflects a strong dedication to advancing knowledge in organizational strategy and behavior.

Experience

Throughout his academic career, Chenhui Yu has focused on empirical research related to Strategy Management and Organizational Behavior. He has been involved in a series of collaborative research projects, with six of his papers already accepted for publication and three currently under review. In these projects, Yu’s role has been integral to data collection, research methodology, and the interpretation of empirical results. Though his professional experience in consultancy or industry projects is still evolving, his academic contributions and collaborations demonstrate his ability to conduct rigorous and impactful research.

Research Interest

Chenhui Yu’s research interests lie primarily in the areas of Strategy Management and Organizational Behavior. His studies focus on understanding how strategic decisions impact organizational performance, particularly through empirical analysis. He is particularly interested in how leadership, organizational structure, and decision-making processes influence business outcomes. His research aims to uncover new insights that can help organizations enhance their performance and adapt to the ever-changing business environment. This focus has led him to work on various projects, producing findings that contribute significantly to academic discourse in management and organizational studies.

Award

Chenhui Yu’s academic excellence and research contributions have garnered attention within the academic community. His work has been widely recognized in his field, particularly for its empirical rigor and theoretical insights. As he continues his doctoral journey, he is being considered for prestigious awards, such as the Best Researcher Award. His achievements thus far reflect his dedication to advancing research in Strategy Management and Organizational Behavior, and his work promises to contribute to meaningful advancements in the understanding of organizational dynamics and strategic decision-making.

Publication Top Note

Chenhui Yu has made significant contributions to the academic literature, particularly in the area of Strategy Management and Organizational Behavior. One of his notable publications includes:

Yu, C., & Gao, H. (2023). “Interaction orientation and sustained organizational performance of garment enterprises: A mediated moderating model.” Journal of Silk.

Conclusion

Chenhui Yu is a talented and emerging scholar in the fields of Strategy Management and Organizational Behavior. His academic background, combined with his strong commitment to empirical research, positions him as a valuable contributor to the field of business management. With several published papers already to his name and a growing body of research, Yu is well on his way to becoming a leading expert in his field. As he continues to expand his research, his contributions will likely continue to shape and advance the understanding of organizational dynamics and strategic management.

Azam Sobhani | Nanomaterials | Best Researcher Award

Dr. Azam Sobhani | Nanomaterials | Best Researcher Award

Associate Professor | Kosar university of Bojnord | Iran

Azam Sobhani is an Associate Professor in the Department of Chemistry at Kosar University of Bojnord, Iran. He earned his undergraduate, graduate, and doctoral degrees from leading Iranian universities under the mentorship of Professor Masoud Salavati-Niasari. His research interests encompass nanomaterials, nanostructures, nanoparticles, nanocrystals, and inorganic chemistry. Over his career, he has co-authored several influential publications in these fields.

Profile

Scholar

Education

Professor Sobhani’s academic journey began with his undergraduate studies at a prominent Iranian institution, followed by graduate and doctoral research under Professor Masoud Salavati-Niasari. His doctoral research focused on the synthesis and characterization of nanomaterials, which laid the foundation for his current research trajectory.

Experience

Since joining Kosar University of Bojnord in 2015, Professor Sobhani has advanced from Assistant Professor to Associate Professor. In his role, he teaches undergraduate and graduate courses in chemistry, supervises student research, and leads projects on nanomaterials and nanostructures.

Research Interests

Professor Sobhani’s research centers on the development and application of nanomaterials. His work includes the synthesis of various nanocomposites with potential applications in environmental remediation and energy storage. Notably, he has explored the use of green sonochemical methods to synthesize BaDy₂NiO₅/Dy₂O₃ and BaDy₂NiO₅/NiO nanocomposites, utilizing core almond as a capping agent. These nanocomposites have demonstrated efficacy as photocatalysts for removing organic dyes from water.

Award

Based on the information provided, Associate Professor Azam Sobhani appears to be a strong candidate for the Research for Best Researcher Award. He holds a position at Kosar University of Bojnord, an institution recognized for its commitment to women’s education in northeastern Iran.

Publications Top Note

Yousefi, S. R., Sobhani, A., Alshamsi, H. A., & Salavati-Niasari, M. (2021). Green sonochemical synthesis of BaDy₂NiO₅/Dy₂O₃ and BaDy₂NiO₅/NiO nanocomposites in the presence of core almond as a capping agent and their application as photocatalysts for the removal of organic dyes in water. RSC Advances.

Yousefi, S. R., Sobhani, A., & Salavati-Niasari, M. (2017). A new nanocomposite superionic system (CdHgI₄/HgI₂): Synthesis, characterization, and experimental investigation. Advanced Powder Technology.

Ansari, F., Sobhani, A., & Salavati-Niasari, M. (2018). Simple sol-gel synthesis and characterization of new CoTiO₃/CoFe₂O₄ nanocomposite by using liquid glucose, maltose, and starch as fuel, capping, and reducing agents. Journal of Colloid and Interface Science.

Ansari, F., Sobhani, A., & Salavati-Niasari, M. (2016). Green synthesis of magnetic chitosan nanocomposites by a new sol–gel auto-combustion method. Journal of Magnetism and Magnetic Materials.

Orooji, Y., Mohassel, R., Amiri, O., Sobhani, A., & Salavati-Niasari, M. (2020). Gd₂ZnMnO₆/ZnO nanocomposites: Green sol-gel auto-combustion synthesis, characterization, and photocatalytic degradation of different dye pollutants in water. Journal of Alloys and Compounds.

Conclusion

Professor Azam Sobhani’s contributions to nanomaterials research have significantly advanced the understanding and application of nanocomposites in environmental and energy sectors. His dedication to sustainable synthesis methods and practical applications continues to influence the field and inspire future research.

Junjie Chen | Heat Transfer | Best Researcher Award

Dr. Junjie Chen | Heat Transfer | Best Researcher Award

Teacher | Zhengzhou University of Light Industry | China

Junjie Chen is a dedicated educator and researcher currently serving as a teacher at Zhengzhou University of Light Industry in China. He earned his bachelor’s degree in Process Equipment and Control Engineering from the same institution in 2017. In 2023, he completed his doctoral studies in Engineering Thermophysics at Nanjing University of Aeronautics and Astronautics. His research primarily focuses on humid air thermal cycles, heat and mass transfer in gas-liquid two-phase flows, and methods for process enhancement.

Profile

Education

Chen’s academic journey began at Zhengzhou University of Light Industry, where he obtained his bachelor’s degree in Process Equipment and Control Engineering in 2017. He further advanced his studies at Nanjing University of Aeronautics and Astronautics, earning a Ph.D. in Engineering Thermophysics in 2023. His doctoral research contributed significantly to understanding the thermodynamics and heat-mass transfer processes in humid air systems.

Experience

Since joining Zhengzhou University of Light Industry, Chen has been actively involved in both teaching and research. He has led and participated in multiple research projects, focusing on the thermal performance of humidification systems and the development of precision regulation methods for thermal-humidity performance. His work often bridges the gap between theoretical research and practical applications, aiming to enhance energy efficiency in pressurized humid air systems.

Research Interests

  • Waste Heat Recovery and Utilization: Investigating methods to capture and repurpose waste heat in industrial processes.

  • Humidification and Dehumidification of Humid Air: Studying the thermal cycles and processes involved in regulating humidity levels.

  • Heat and Mass Transfer in Gas-Liquid Two-Phase Flows: Exploring the dynamics of heat and mass transfer in systems involving gas and liquid phases.

  • Enhanced Heat Transfer: Developing techniques to improve the efficiency of heat exchange processes.

Awards

Chen’s contributions to his field have been recognized through various accolades. Notably, he has been nominated for the Best Researcher Award at the Cryogenicist Global Awards. This nomination highlights his innovative work in designing high-efficiency saturators and advancing the understanding of thermal-mass transfer processes in humid air systems.

Publications Top Note

“Using targeted performance criteria to experimentally evaluate a packed bed humidification system with thermodynamic balancing measures” (2025). International Communications in Heat and Mass Transfer.

“Experimental investigation on the thermal and flow performance of a thermodynamically-balanced packed bed humidification system” (2024). Applied Thermal Engineering.

“Design and experiments of a thermoelectric generator coupled to a gas cooker with energy storage module and thermosyphon cooling system” (2024). Energy Sources, Part A: Recovery, Utilization, and Environmental Effects.

Conclusion

Junjie Chen’s academic and research endeavors reflect a strong commitment to advancing thermal engineering and related fields. His work not only contributes to theoretical knowledge but also offers practical solutions to enhance energy efficiency and process optimization. Through his ongoing research and publications, Chen continues to make significant strides in his areas of expertise, earning recognition and respect within the scientific community.

Soai Dang Quoc | Medical Physics | Best Researcher Award

Dr. Soai Dang Quoc | Medical Physics | Best Researcher Award

Head of Medical Physics Department | Hanoi Oncology Hospital | Vietnam

Dr. Soai Dang Quoc is a distinguished medical physicist currently serving as the Head of the Medical Physics Department at Hanoi Oncology Hospital in Vietnam. His academic journey began with a Bachelor of Science in Physics from Hanoi University of Science, Vietnam National University Hanoi (2004–2008), followed by a Master of Engineering in Telecommunications Engineering from Hanoi University of Science and Technology (2010–2012). Dr. Dang Quoc further advanced his expertise through a Master of Advanced Studies in Medical Physics at the University of Trieste, in collaboration with the Abdus Salam International Centre for Theoretical Physics, supported by an International Atomic Energy Agency (IAEA) scholarship (2013–2015). He is currently pursuing an International Doctoral Program in Health Sciences at Kyushu University under a Japanese Ministry of Education, Culture, Sports, Science and Technology (MEXT) scholarship (2021–2024).

Profile

Education

  • Bachelor of Science in Physics: Hanoi University of Science, Vietnam National University Hanoi (2004–2008).
  • Master of Engineering in Telecommunications Engineering: Hanoi University of Science and Technology (2010–2012).
  • Master of Advanced Studies in Medical Physics: University of Trieste, in collaboration with the Abdus Salam International Centre for Theoretical Physics (2013–2015).
  • International Doctoral Program in Health Sciences: Kyushu University (2021–2024).

Professional Experience

  • Researcher: National Centre for Laser Technology, Ministry of Science and Technology of Vietnam (2008–2009).
  • Medical Physicist: Department of Medical Supplies – Medical Physics, Hanoi Oncology Hospital (2010–2013).
  • Intern: AVIANO CRO Hospital, Italy (2015).
  • Leader of Medical Physics Unit: Department of Medical Supplies – Medical Physics, Hanoi Oncology Hospital (2021–2024).
  • Head of Medical Physics Department: Hanoi Oncology Hospital (December 2024–Present).

Research Interests

Dr. Dang Quoc’s research focuses on medical physics and radiation protection. His work includes Monte Carlo simulations of ambient dose equivalents in linear accelerator rooms, dosimetry of electron intraoperative radiotherapy, and analysis of planning techniques for whole brain radiotherapy. He has also contributed to studies on the dosimetry of electron radiotherapy for applications outside of the breast, considering the influence of tissue inhomogeneities.

Award

Dr. Dang Quoc’s contributions to medical physics have been widely recognized. He has been honored with several awards, including the Excellence in Radiation Physics Award and the Medical Physics Best Researcher Award. These accolades highlight his dedication to advancing research in radiation therapy and medical physics.

Selected Top Note

“Produced radioactive isotopes, ambient dose equivalent in TrueBeam room with flattening filter (FF) and Flattening Filter Free (FFF) modes: Monte Carlo simulation”, Applied Radiation and Isotopes, May 2025.

“Simulating the head of a TrueBeam linear particle accelerator and calculating the photoneutron spectrum on the central axis of a 10-MV photon using particle and heavy-ion transport system code”, Radiation Protection Dosimetry, June 2024.

“Analyzing Planning Techniques for Whole Brain Radiotherapy”, International Journal of Medical Physics, Clinical Engineering and Radiation Oncology, 2020.

“Electron radiotherapy (IOERT) for applications outside of the breast: Dosimetry and influence of tissue inhomogeneities”, Physica Medica, 2020.

“Analyze the Dose Results Calculated with AAA Algorithm in Eclipse Software of New Treatment Planning System”, Journal of Pharmacy and Pharmacology, June 2019.

“Commissioning of the AAA calculation algorithm for 18MV of 2100CD LINAC”, LAP LAMBERT Academic Publishing, 2019.

“Analyze Dosimetry Interventional Radiology And Cardiology”, October 2014.

Conclusion

Dr. Soai Dang Quoc’s extensive academic background, coupled with his significant professional experience and research contributions, position him as a leading figure in the field of medical physics. His ongoing commitment to enhancing radiation safety and therapy techniques continues to impact both national and international medical communities.

Yan Wang | Food | Best Researcher Award

Prof. Dr. Yan Wang | Food | Best Researcher Award

Dr. Yan Wang is a Professor at Harbin University of Commerce, where he leads the Key Laboratory for Food Science & Engineering. His research focuses on food fermentation engineering and biocatalysis, with an emphasis on enzymatic processes, microbial transformation, and food safety. He holds a Ph.D. in Food Science, specializing in enzymatic synthesis and properties analysis of medium-long chain fatty acid starch esters. Dr. Wang has contributed significantly to the study of biotransformation in food, pharmaceuticals, and biobased chemicals. His work is recognized internationally for its practical applications in food production, health, and sustainability. He has received multiple awards for his innovative research, including provincial science and technology awards. With a passion for advancing both theoretical and applied science, Dr. Wang continues to drive research excellence in food science and biocatalysis.

Profile

Scopus

Education

Dr. Yan Wang earned his Ph.D. in Food Science from Harbin University of Commerce in 2013, where he focused on the enzymatic synthesis and properties analysis of medium-long chain fatty acid starch esters. Prior to that, he completed his Master’s degree in Fermentation Engineering, researching biodegradation of Naphthalene and biosynthesis of Indigo by Naphthalene-degrading bacteria at Harbin University of Commerce. Dr. Wang’s academic journey began with a Bachelor’s degree in Food Science and Engineering from Beihua University, where he studied walnut yogurt research. His extensive education in food science, fermentation engineering, and biocatalysis has provided a strong foundation for his groundbreaking work in food safety, biotransformation, and biobased chemicals. His interdisciplinary expertise continues to inform his research, combining theoretical understanding with practical solutions to address global challenges in the food and pharmaceutical industries.

Experience

Dr. Yan Wang has an extensive career in academia, currently serving as a Professor at the School of Food Engineering at Harbin University of Commerce, where he has been part of the faculty since 2013. He began as a lecturer and progressed to an associate professor role before becoming a full professor. His professional research experience spans food fermentation engineering, biocatalysis, and biotransformation processes, focusing on novel microbial resources, industrial fermentation, and bio-separation techniques. Dr. Wang has led several key projects funded by prestigious organizations such as the Heilongjiang Provincial Natural Science Foundation and the National Natural Science Foundation of China. His research spans a wide range of topics, including enzyme catalysis in nonaqueous solvents, chiral drug separation, and biosynthesis of functional compounds. His work integrates fundamental research with applied science to develop new food additives, biocatalytic processes, and sustainable food technologies.

Awards and Honors

Dr. Yan Wang’s work has earned him several prestigious accolades, reflecting his contribution to the field of food science and biocatalysis. In 2020, he received the second prize in the Provincial University Science and Technology Award for his groundbreaking work in the creation of new food additives and food safety detection based on biocatalysis. His research on methane-oxidizing bacteria also earned him the second prize in the Provincial Natural Science Award in 2014. In 2013, his work on the biosynthesis of corn starch palmitate by Novozym 435 received the second prize in the Provincial Natural Science and Technology Academic Achievement Award. Dr. Wang’s awards acknowledge his significant contributions to advancing food science and biocatalysis, positioning him as a leading researcher in his field. His research has had substantial impacts on food safety, sustainability, and the development of novel food technologies.

Research Focus

Dr. Yan Wang’s research focuses on biocatalysis and its application to food, pharmaceuticals, and biobased chemicals. His primary interests lie in enzymatic catalysis in nonaqueous solvents, enzyme stereoselectivity for organic synthesis, and the development of microorganisms for biotransformation and biocatalysis applications. Dr. Wang explores novel microbial resources for industrial fermentation, bio-separation, and purification techniques. He has pioneered research in biosynthesis by methanotrophic bacteria and the separation of chiral drugs using biocatalytic processes. His work in microwave and lipase catalysis aims to improve the efficiency of starch-fatty acid complex preparation in low water activity systems, contributing to sustainable food production technologies. Dr. Wang’s research is integral to advancing food safety, improving industrial fermentation processes, and developing new biocatalytic applications that meet the needs of the food and pharmaceutical industries, all while ensuring environmental sustainability.

Publication Top Notes

  • Yan Wang; Yue Wang; Shuai Zhang; Ning Zhao; Yu Fu; Jia Ying-Xin; Na Zhang. Cu²⁺ Induced Regulation and Construction of FAD-Mb/Cu-Mb@AuNPs Bi-functional Mimetic Enzyme for Glucose Visualization Detection, Microchemical Journal, 2022, 175: 107207.
  • Yan Wang; Yue Wang; Shuai Zhang; Ning Zhao; Jiaying Xin; Lirui Sun. Detection of Cu²⁺ by Mb-coupled Lipase Biosensor with Differential Pulse Voltammetry, Food Science, 2021.08.27.
  • Yan Wang; Yue Wang; Shuai Zhang; Ning Zhao; Jiaying Xin; Lirui Sun. The Preparation of FAD Nucleic Acid Aptamer Sensor and Its Application for Glucose Detection, Food Science, 2021.08.17.
  • Yan Wang; Ye Xue; Peng Gao; Boxin Dou; Jiaying Xin. Visual Detection of Cu(II) Ions in Water Using Gold Nanoparticles Modified with Methanobactin, Mater. Express, 2020, 10(2): 190-198.
  • Yan Wang; Peng Gao; Ye Xue; Jiaying Xin. Novozym435-Gold Nanoparticles Biohybrids as an Efficient Catalyst for Synthesis of Ferulic Acid Starch Ester, Journal of Nanoscience and Nanotechnology, 2019, 20(2): 1066-1073.