Assist. Prof. Dr. Chunlong Zou – Fusion – Best Researcher Award

Assist. Prof. Dr. Chunlong Zou - Fusion - Best Researcher Award

Institute of Plasma Physics, Chinese Academy of Sciences - China 

Author Profile 

SCOPUS 

Early academic pursuits 🎓

Chunlong Zou embarked on his academic journey with a strong foundation in superconducting physical device technologies. his passion for advancing research in superconducting magnets led him to pursue his doctoral studies at the institute of plasma physics, chinese academy of sciences. his early academic years were dedicated to understanding the principles of superconductivity, magnetic field measurements, and their applications in high-energy physics and engineering. his rigorous training and commitment to excellence laid the groundwork for his future endeavors in superconducting magnet development and innovation.

Professional endeavors 🏢

With a deep expertise in superconducting magnet technologies, chunlong zou has played a pivotal role in several high-profile projects. as a technical leader, he has been instrumental in the research and development of key superconducting systems, including the main superconducting magnet for a high-energy (>200 mev) superconducting cyclotron, superconducting magnets for high-speed maglev suspension systems, and large-aperture superconducting magnets for fusion divertor system test platforms. his professional journey also includes serving as an evaluation expert in the hefei science and technology bureau’s expert database, further cementing his influence in the field.

Contributions and research focus 🔍

Chunlong zou’s research primarily focuses on the development and application of superconducting magnet technology. he has made significant strides in designing high-current low-temperature superconducting magnets for various industrial and scientific applications. his work integrates cutting-edge methodologies to enhance the efficiency and functionality of Fusion superconducting devices, thereby contributing to advancements in energy systems, high-speed transportation, and fusion research. his expertise in precision magnetic field measurement has been instrumental in optimizing magnet performance for high-energy physics experiments.

Accolades and recognition 🏅

Throughout his career, chunlong zou has received numerous accolades for his contributions to superconducting magnet research. he has been honored with the first prize for scientific and technological progress by the china electrotechnical society in 2022, recognizing his outstanding technical innovations. additionally, he received the third prize for standard innovation Fusion contribution in anhui province in 2021. his excellence in research has also been acknowledged through prestigious grants, including the young scientists fund from the national natural science foundation of china, an excellent postdoctoral fund, and a first-class funded project from the china postdoctoral science foundation. his participation in the 2018 national postdoctoral "international academic exchange program" further highlights his standing in the global research community.

Impact and influence 🌍

Chunlong zou’s work has had a profound impact on the field of superconducting magnet research and its real-world applications. his innovations in superconducting magnet technology have Fusion significantly contributed to advancements in high-energy particle accelerators, maglev transportation, and nuclear fusion research. his contributions to the drafting of two published standards in anhui province underscore his role in shaping the regulatory framework and technical benchmarks for superconducting technologies. through his research and development efforts, he continues to drive progress in the field, inspiring future innovations.

Legacy and future contributions 🔮

with a robust portfolio of research, patents, and publications, chunlong zou has established himself as a leading figure in superconducting magnet development. he has authored 15 scientific papers, with 9 of them being sci-indexed as the first or corresponding author, showcasing his significant contributions to academic literature. his successful applications for 8 patents, including a pct international patent, further highlight his innovative mindset. as he continues his research, his legacy is defined by groundbreaking advancements in superconducting technologies that will shape the future of high-energy physics, transportation, and sustainable energy solutions. his dedication to pushing the boundaries of scientific knowledge ensures that his work will leave a lasting impact on both academia and industry.

Notable Publications 

  • Title: The Preliminary design of SUNIST-2: A Spherical Tokamak
    Authors: C. Zou, Chunlong; H. Xu, Hao; Y. Tan, Yi; Q. Yang, Qingxi; Z. Gao, Zhe
    Journal: Fusion Engineering and Design, 2025
  • Title: Analysis of the critical current and electromagnetic forces of HTS segments in multiple pairs of current leads used in the current lead box of a fusion reactor
    Authors: H. Cheng, Hu; Y. Dong, Yujun; S. Du, Shuangsong; C. Zou, Chunlong; K. Ding, Kaizhong
    Journal: Cryogenics, 2025
  • Title: Structure Design and Optimization of Helium Cooling Tube for Nuclear Fusion Poloidal Coil
    Authors: C. Zou, Chunlong; S. Du, Shuangsong; F. Jiang, Feng; G. Shen, Guang; R. Peter, Readman
    Journal: Power Generation Technology, 2024

Dr. Szilvia Kassai – grief – Best Researcher Award

Dr. Szilvia Kassai - grief - Best Researcher Award

University of Szeged, Albert Szent-Györgyi Medical School, Department of Behavioral Sciences - Hungary

Author Profile 

ORCID 

🌱 Early academic pursuits

Szilvia Kassai embarked on her academic journey with a passion for understanding human psychology. she earned her ph.d. in clinical psychology and addictology in 2019, specializing in addiction and recovery. her doctoral research laid the foundation for her lifelong commitment to exploring the intricate relationship between addiction, family dynamics, and personal growth. her academic achievements reflect her dedication to comprehensively addressing mental health challenges and the human experiences associated with them.

🎓 Professional endeavors

Currently serving as an assistant professor at the albert szent-györgyi medical school, university of szeged, szilvia plays a pivotal role in shaping the next generation of medical professionals. her teaching portfolio includes medical psychology and thanatology, where she brings an empathetic and research-driven approach to the classroom. over the past five years, she has also led collaborative research initiatives that explore the impact of addiction on families, with a particular focus on children growing up in such environments and their transition into adulthood.

🧠 Contributions and research focus

Szilvia’s research primarily utilizes person-centered qualitative methods to delve into the personal narratives of those affected by addiction. her work has uncovered critical insights into the grief recovery processes for individuals using psychoactive and synthetic substances, as well as the grieving processes of children who lose a parent struggling with addiction. her studies emphasize the significance of subjective experiences in psychotherapeutic support, illuminating the challenges faced by affected individuals. her research outcomes contribute meaningfully to understanding addiction and its psychological ramifications, fostering empathy and innovation in the field.

🏆 Accolades and recognition

Szilvia’s dedication to addiction and recovery research has earned her significant academic recognition. she has published 11 high-impact journal articles, contributing valuable knowledge to grief the fields of addiction studies and clinical psychology. with 3 authored books and a citation index of 294, her work has gained international acknowledgment, strengthening her reputation as a leading voice in qualitative psychological research.

🌍 Impact and influence

Through her pioneering studies, szilvia has brought attention to the often-overlooked familial consequences of addiction. her research provides a voice to children and families affected by grief these issues, ensuring their experiences are understood and addressed in scientific and therapeutic contexts. her commitment to shedding light on addiction-related grief and recovery processes has influenced both academic discourse and clinical practices, making a tangible difference in the lives of countless individuals.

✨ Legacy and future contributions

Szilvia’s legacy lies in her ability to connect personal narratives with scientific inquiry. by bridging the gap between lived experiences and academic research, she inspires a more empathetic approach to addressing mental health challenges. her ongoing studies into the grieving processes of children who lose parents to addiction are set to further enrich the field, offering fresh perspectives and actionable insights. as an educator and researcher, her influence continues to shape both academic scholarship and the well-being of affected communities.

Notable Publications 

  • Title: Folktales of Recovery – From Addiction to Becoming a Helper: Deep Structures of Life Stories Applying Propp’s Theory: A Narrative Analysis
    • Author(s): Dániel Kiss, Zsolt Horváth, Szilvia Kassai, Anna V. Gyarmathy, József Rácz
    • Journal: Journal of Psychoactive Drugs
  • Title: Using Interpretative Phenomenological Analysis (IPA) to Assess Recovery Processes: A Qualitative Analysis of Experience and Identity
    • Author(s): Szilvia Kassai
    • Journal: Book (Published by Crossref)

Dr. Walid Dachraoui – Chemistry and Materials Science -Best Researcher Award

Dr. Walid Dachraoui - Chemistry and Materials Science -Best Researcher Award

Empa––Swiss Federal Laboratories for Materials Science and Technology - Switzerland

AUTHOR PROFILE

SCOPUS

EARLY ACADEMIC PURSUITS 🎓

Dr. Walid Dachraoui began his academic journey with a profound interest in materials science, which led him to pursue a Ph.D. at the Electron Microscopy for Materials Science (EMAT) center at the University of Antwerp, Belgium. His early academic work focused on the intricate world of electron microscopy, laying a strong foundation for his future endeavors in advanced materials research.

PROFESSIONAL ENDEAVORS 🧪

Currently a Senior Scientist at the Electron Microscopy Center at Empa—Swiss Federal Laboratories for Materials Science and Technology in Switzerland, Dr. Dachraoui is at the forefront of cutting-edge research. His work primarily revolves around operando liquid electrochemical transmission electron microscopy (TEM) for battery materials and in situ liquid TEM for nanomaterial growth. His expertise has positioned him as a key figure in the field of electron microscopy, where he continues to push the boundaries of what is possible.

CONTRIBUTIONS AND RESEARCH FOCUS 🔍

Dr. Dachraoui’s research is pioneering, particularly in the area of battery materials. His work has significantly contributed to understanding critical processes such as Solid Electrolyte Interphase (SEI) growth, lithium plating, and dendrite formation. Through the use of operando Chemistry and Materials Science electrochemical liquid cell scanning transmission electron microscopy (ecLC-STEM), he has provided unprecedented insights into nanoscale processes at the anode-electrolyte interface. His findings on the growth mechanisms of SEI and the evolution of lithium dendrites are vital for the development of safer and longer-lasting batteries.

ACCREDITATIONS AND RECOGNITION 🏅

With over 38 publications to his name and citations by 1,775 documents, Dr. Dachraoui’s work has been widely recognized in the scientific Chemistry and Materials Science community. He has been a guest editor for JoVE and actively collaborates with leading research institutions like EMAT-Belgium and RS2E-Amiens. His research has not only been published in renowned journals but has also led to significant advancements in the field of battery technology.

IMPACT AND INFLUENCE 🌍

Dr. Dachraoui’s contributions extend beyond academia, influencing the future of energy storage technology. His research on battery materials is crucial for the advancement of electric vehicles and renewable energy storage systems. By revealing the underlying mechanisms of battery Chemistry and Materials Science degradation, his work is helping to pave the way for the next generation of high-performance, durable batteries, impacting both industry and environmental sustainability.

LEGACY AND FUTURE CONTRIBUTIONS 🔮

Dr. Walid Dachraoui’s legacy is rooted in his groundbreaking research in electron microscopy and battery materials. As he continues to explore new frontiers in nanomaterials and energy conversion, his work will undoubtedly inspire future generations of scientists. His dedication to improving battery technology through innovative microscopy techniques ensures that his influence will resonate in the scientific community for years to come.

NOTABLE PUBLICATIONS

Dr. Wenjun Yuan – chemical fluid mechanics – Best Researcher Award

Dr. Wenjun Yuan - chemical fluid mechanics - Best Researcher Award

Xi’an Jiaotong University - China

AUTHOR PROFILE

SCOPUS

ORCID

EARLY ACADEMIC PURSUITS 📘

Born on November 4, 1991, Wenjun Yuan embarked on his academic journey at Xi’an Jiaotong University in China. He earned his Bachelor's degree in Process Equipment & Control Engineering in 2013. Excelling in his field, he continued his education at the same institution, enrolling in an MS-PhD track in Chemical Process Machinery under the guidance of Prof. Jianqiang Deng. By 2015, he had transitioned to a PhD program in Power Engineering & Engineering Thermophysics, again mentored by Prof. Deng. Yuan's quest for knowledge then took him to the Norwegian University of Science and Technology, where he pursued a Joint PhD in Fluid Mechanics, guided by Prof. Helge I. Andersson and Adjunct Prof. Lihao Zhao, completing it in 2018.

PROFESSIONAL ENDEAVORS 🏢

Yuan's professional career began at the National University of Singapore (NUS), where he has been making significant contributions since 2018. Initially serving as a Research Scientist at Temasek Laboratories, he advanced to the position of Research Fellow in the Department of Mechanical Engineering in 2019. His research at NUS has been supervised by distinguished academics including Prof. Boo Cheong Khoo and Assistant Prof. Mengqi Zhang. Yuan’s work at NUS has solidified his reputation as a leading researcher in his field.

CONTRIBUTIONS AND RESEARCH FOCUS 🔬

Yuan’s research focuses on multiphase and non-Newtonian flows, interfacial fluid mechanics, and transport phenomena. His primary aim is to achieve a deeper understanding of complex fluids and rheology through precise numerical modeling and experimentation. His work has chemical fluid mechanics significant implications for the realistic prediction of multiphysics flow applications and the development of new tools and devices for the chemical engineering, advanced manufacturing, and sustainable energy industries.

ACCOLADES AND RECOGNITION 🏅

Yuan has received numerous awards and honors throughout his academic and professional career. Notable among these are the Chinese chemical fluid mechanics Government Scholarship for Overseas Study, the Outstanding Graduated Student of Shaanxi Province, and multiple scholarships and excellence awards from Xi’an Jiaotong University. His computational projects have also earned him significant resources, including extensive computation time on ASPIRE1 at the National Supercomputing Centre in Singapore.

IMPACT AND INFLUENCE 🌍

Yuan’s impact extends beyond his immediate research outputs. He has authored and co-authored over 20 scientific papers published in prestigious international journals, contributing substantially to the body of knowledge in fluid mechanics. His work has not only advanced chemical fluid mechanics academic understanding but also has practical applications in various industries. Yuan has also actively participated in and presented at numerous international conferences, sharing his insights with the global scientific community.

LEGACY AND FUTURE CONTRIBUTIONS 🌟

Looking ahead, Yuan’s legacy will be marked by his groundbreaking research and his contributions to the academic community. His efforts to understand and model complex fluid behaviors will continue to influence future research and technological advancements. As he continues his work at NUS, Yuan is poised to make further significant contributions to the fields of fluid mechanics and engineering thermophysics, inspiring future generations of researchers.

NOTABLE PUBLICATIONS