Karlygash Dosmagulova – Equations of Mathematical Physics – Young Scientist Award 

Ms. Karlygash Dosmagulova - Equations of Mathematical Physics - Young Scientist Award 

Institute of Mathematics and Mathematical Modeling - Kazakhstan 

Author Profile

Google Scholar

Scopus

🎓 Early Academic Pursuits

Ms. Karlygash Dosmagulova embarked on her academic journey with a strong foundation in mathematics and function theory. She pursued her bachelor's and master's degrees under the supervision of Prof. B.E. Kanguzhin, focusing on equations of mathematical physics. Her master's thesis, titled Non-Degenerate Boundary Conditions for the Sturm-Liouville Equation, set the stage for her Ph.D. research. Her doctoral dissertation, Correctly Solvable Problems for the Laplace-Beltrami Operator on a Punctured Riemann Sphere, further developed her expertise in differential operators and mathematical analysis.

💼 Professional Endeavors

Ms. Dosmagulova is a postdoctoral fellow under the Zhas Ghalym project (2024–2026) and has amassed eight years of research experience. She has actively contributed to various mathematical projects funded by the Science Committee of the Ministry of Science and Higher Education of Kazakhstan. Her professional achievements include being one of 100 scientists selected for the Heidelberg Laureate Forum 2022 and winning the Abbe Grant the same year. She was an invited speaker at the International Center for Theoretical Physics (ICTP) in Trieste, Italy, and was recognized as The Best Young Scientist of Al-Farabi KazNU in 2023.

🔬 Contributions and Research Focus

Ms. Dosmagulova's research is deeply rooted in equations of mathematical physics, mathematical analysis, and the theory of functions. She has led and contributed to multiple research projects, including:

  1. Supervisor of Correctly Solvable Problems for Differential Operators on a Riemannian Manifold (2024–2026).
  2. Executor of Asymptotic Analysis of the Modified Schwarz Method for Dispersed Composites (2024–2026).
  3. Junior Scientific Researcher in Inverse Spectral Problems for Differential Operators on Graphs (2023–2025).
  4. Junior Scientific Researcher in Study of the Landau-Lifshitz-Gilbert Equation and Its Application in Composite Materials (2020–2022).

Her research utilizes the equations of mathematical physics in mechanics and physics, particularly through the Laplace-Beltrami operator and differential analysis.

🌍 Impact and Influence

Ms. Dosmagulova’s work has significantly influenced mathematical research in Kazakhstan and internationally. Her research collaborations include esteemed mathematicians such as Prof. Dr. Michael Ruzhansky (Belgium), Prof. Dr. Vladimir Mityushev (Poland), Dr. Islam Zari (Pakistan), and Prof. Dr. Ziganur Fazullin (Russia). As a member of the Belgian Mathematical Society, she actively contributes to advancing function theory and heat transfer problems.

🏆Academic Cites

Her research impact is reflected in her citation index, with 3 citations in Scopus and 2 in Web of Science. She has published 18 articles in prestigious journals indexed in SCI and Scopus. Additionally, she serves as an editor for Letters in Nonlinear Analysis and Its Applications (LNAA), further showcasing her influence in the academic community.

🌟 Legacy and Future Contributions

Ms. Dosmagulova’s ongoing research aims to deepen the understanding of function theory and mathematical physics. Her work on the Laplace-Beltrami operator is expected to have lasting implications in applied mathematics, physics, and engineering. With her dedication to mentorship and research, she is poised to leave a lasting legacy in the field.

Her future contributions will likely refine the application of mathematical physics in computational models, expanding the practical use of mathematical equations in real-world problems.

📝Notable Publication


📝Heat transfer analysis of Radiative-Marangoni Convective flow in nanofluid comprising Lorentz forces and porosity effects

Authors: I. Zari, T. Gul, K. Dosmagulova, T.S. Khan, S. Haq

Journal: Advances in the Theory of Nonlinear Analysis and its Application

Year: 2023

Citations: 8


📝Well-posed problems for the Laplace-Beltrami operator on a punctured two-dimensional sphere

Authors: B. Kanguzhin, K. Dosmagulova

Journal: Advances in the Theory of Nonlinear Analysis and its Application

Year: 2023

Citations: 4


📝Optimal packing of two disks on torus

Authors: Z.K. Zhunussova, Y.K. Ashimov, K.A. Dosmagulova, L.K. Zhunussova

Journal: Applied Mathematics and Information Sciences

Year: 2022

Citations: 4


📝Integrable and non-integrable Lotka-Volterra systems

Authors: T. Bountis, Z. Zhunussova, K. Dosmagulova, G. Kanellopoulos

Journal: Physics Letters A

Year: 2021

Citations: 3


📝On the Optimal Conductivity of Packed Two-Dimensional Dispersed Composites

Authors: K. Dosmagulova, V. Mityushev, Z. Zhunussova

Journal: SIAM Journal on Applied Mathematics

Year: 2023

Citations: 2


📝Steady States and Travelling Wave Solutions of the Heisenberg and M-I Spin Systems

Authors: A. Bountis, Z. Zhunussova, K. Dosmagulova

Journal: Nonlinear Phenomena in Complex Systems

Year: 2019

Citations: 2


📝Uniquely solvable problems for the Laplace-Beltrami operator on a sphere punctured by a curve

Authors: K. Dosmagulova, B. Kanguzhin

Journal: Results in Nonlinear Analysis

Year: 2023

Citations: 1

Neeraj Kumari – Material Science – Women Researcher Award

Dr. Neeraj Kumari - Material Science - Women Researcher Award 

K R Mangalam University, Gurugram - India

Author Profile

Google Scholar

Scopus

Orcid

🎓 Early Academic Pursuits

Dr. Neeraj Kumari’s academic journey is rooted in a strong foundation in chemistry, particularly in Material Science. She pursued her Ph.D. in Analytical Chemistry under the supervision of Professor Ramesh Chandra and co-supervision of Professor Monika Datta, where she focused on the application of naturally occurring clay minerals for the synthesis of nanopigments as colorants. Her early academic achievements include a Master’s degree in Chemistry (specializing in Inorganic Chemistry) from Guru Jambheshwar Science & Technology University, Hisar, and a Bachelor’s degree in Chemistry, Botany, and Zoology from Maharshi Dayanand University, Rohtak. Her dedication to science education is further demonstrated by her B.Ed. degree, highlighting her commitment to academic excellence and pedagogy.

💼 Professional Endeavors

Dr. Neeraj Kumari is currently serving as an Assistant Professor (Inorganic Chemistry) in the Department of School of Basic and Applied Science. Since January 2019, she has played a significant role in shaping the academic curriculum, developing syllabi, quizzes, and study materials to enhance student learning. Beyond teaching, she has actively contributed to faculty development by organizing Faculty Development Programs (FDPs), such as "Modern Scientific Technologies – Ways to Enhance Research Skills" in 2022 and "Recent Advancements in Science and Technology" in 2021. Her involvement in organizing workshops, including one on "Adulteration of Food Items," highlights her commitment to applied research and public awareness.

🔬 Contributions and Research Focus

Dr. Kumari's research primarily revolves around Material Science, with a special focus on nanopigments, inorganic materials, and analytical chemistry. Her groundbreaking work in nanopigment synthesis has implications for various industries, including coatings, dyes, and sustainable materials. She has been actively guiding B.Sc. and M.Sc. Chemistry students in their dissertation work, fostering the next generation of scientists. Additionally, she has been a key member of the university’s Science Research Committee, contributing to policy decisions and research advancement.

🌍 Impact and Influence

Dr. Neeraj Kumari’s influence extends beyond research and teaching. She has been instrumental in developing student research capabilities through mentorship and guidance. As an NSS Coordinator, she actively engages students in social service initiatives, bridging the gap between science and community welfare. Her role as the Coordinator of the APJ Abdul Kalam Science Club reflects her commitment to promoting scientific inquiry among young minds.

🏆Academic Cites

Dr. Kumari’s research contributions in Material Science have been recognized through high-impact journal publications and conference presentations. Her work has received numerous citations, reinforcing her role as a key contributor to the field. She has delivered lectures at various international FDPs, including topics like “A Novel Approach to Design Nanopigments” and “Project-Based Learning: Challenges and Opportunities.” Her expertise in Material Science has also been acknowledged through her role as an external member of the Science Research Committee.

🌟 Legacy and Future Contributions

Dr. Neeraj Kumari’s legacy is defined by her unwavering commitment to education, research, and societal development. Her numerous awards and accolades, including the Dr. Upadhyayula V. Rao Memorial Award (2017) and the Professor V. Panda Rango Rao Award (2015) for best oral presentations, underscore her excellence in research. She has also qualified CSIR-JRF and CSIR-UGC NET in Chemical Sciences, establishing herself as a leading scholar in her field.

Moving forward, Dr. Kumari aims to expand her research in Material Science, focusing on the development of environmentally sustainable materials, advanced nanostructures, and their applications in various industries. Her dedication to fostering scientific curiosity, mentoring students, and advancing material research ensures that her impact will continue to grow, leaving a lasting legacy in the academic and scientific community.

📝Notable Publication


📝Basics of Clay Minerals and Their Characteristics Properties

Authors: N. Kumari, M. Chandra

Journal: Clay and Clay Minerals

Year: 2021

Citations: Not specified


📝Sustainable Development Goals for addressing environmental challenges

Authors: N. Mohan, C. Robinson, J. Vodwal, L. Kumari

Book: Green Chemistry Approaches to Environmental Sustainability

Year: 2023

Citations: 26


📝Synthesis, characterization and antibacterial activity of semicarbazide based Schiff bases and their Pb (II), Zr (IV) and U (VI) complexes

Authors: C. Mohan, V. Kumar, N. Kumari, S. Kumari, J. Yadav, T. Gandass, S. Yadav

Journal: Advanced Journal of Chemistry, Section B

Year: 2020

Citations: 26


📝An investigative study on the structural, thermal and mechanical properties of clay-based PVC polymer composite films

Authors: N. Kumari, C. Mohan, A. Negi

Journal: Polymers

Year: 2023

Citations: 22


📝Synthesis of acid activated and silicotungstic acid (STA) intercalated montmorillonite clay as green catalyst

Authors: C. M. N. Kumari

Journal: Materials Today: Proceedings

Year: 2022

Citations: 13


📝Fluoride distribution, contamination, toxicological effects and remedial measures: a review

Authors: M. K. S. Y. Anoop Yadav, Neeraj Kumari, Rajesh Kumar

Journal: Sustainable Water Resources Management

Year: 2023

Citations: 12


📝Environmentally benign approach to formulate nanoclay/starch hydrogel for controlled release of zinc and its application in seed coating of Oryza Sativa plant

Authors: P. Kumari, N. Kumari, C. Mohan, C. Chinglenthoiba, K. T. T. Amesho

Journal: International Journal of Biological Macromolecules

Year: 2024

Citations: 11


📝Effect of various types of clay minerals on mechanical and thermal properties of PMMA polymer composite films

Authors: N. K. S. D. Chandra Mohan

Journal: MRS Advances

Year: 2022

Citations: 11

Mukhtarbay Otelbayev – Mathematics – Best Researcher Award 

Prof. Dr. Mukhtarbay Otelbayev - Mathematics - Best Researcher Award 

Al-Farabi Kazakh National University - Kazakhstan 

Author Profile

Scopus

Orcid

🎓 Early Academic Pursuits

Prof. Dr. Mukhtarbay Otelbayev began his academic journey at Kyrgyz State University in Frunze (now Bishkek). His studies were briefly interrupted from 1962 to 1965 when he served in the Soviet Army. Following his service, he pursued advanced education at the Mechanics and Mathematics Department of Moscow State University, where he graduated in 1969. Recognized for his academic excellence, he was immediately accepted into graduate school and successfully defended his Ph.D. dissertation in 1972 on the topic "On the Spectrum of Some Differential Operators." Under the supervision of distinguished mathematicians, he laid the foundation for his career in mathematics and mathematical modeling.

💼 Professional Endeavors

After completing his Ph.D., Prof. Otelbayev started his career as a junior research fellow at the Institute of Mathematics and Mechanics of the Academy of Sciences of the Kazakh SSR in Almaty. He later progressed to senior research fellow and head of the laboratory. In 1978, he defended his doctoral dissertation on "Estimation of the Spectrum of Elliptic Operators and Related Introductory Theorems" at Moscow State University, in a council led by the legendary mathematician A.N. Kolmogorov. His professional career saw him take up significant roles, including Rector of the Dzhambul Pedagogical Institute (1985–1986) and organizer/director of the Institute of Applied Mathematics (1991–1993) in Karaganda.

Since 2001, he has served as Deputy Director of the Kazakhstan branch of Moscow State University and Director of the Eurasian Mathematical Institute at L.N. Gumilyov Eurasian National University. His long-standing commitment to mathematics is evident in his leadership roles in educational and research institutions.

🔬 Contributions and Research Focus

Prof. Otelbayev has significantly advanced the field of mathematics, particularly in spectral theory, differential operators, and mathematical modeling. His research has focused on estimating spectral properties of elliptic operators, contributing to the theoretical underpinnings of mathematical physics and applied mathematics. He has played a vital role in the development of mathematical sciences in Kazakhstan, publishing influential papers and leading international collaborations.

🌍 Impact and Influence

As an academician of the National Academy of Sciences of the Republic of Kazakhstan, Prof. Otelbayev’s influence extends beyond national borders. He has been a key figure in organizing mathematical research and education in Central Asia. His editorial contributions to leading mathematical journals, including the "Eurasian Mathematical Journal," have shaped contemporary research. His efforts have helped bridge the gap between theoretical and applied mathematics, fostering interdisciplinary collaborations.

🏆Academic Cites

Prof. Otelbayev's research is highly regarded in the academic community, with numerous citations in leading journals. His contributions to spectral theory and differential equations have been referenced by mathematicians and physicists worldwide. His works continue to be foundational for researchers working in functional analysis and mathematical modeling.

🌟 Legacy and Future Contributions

Mukhtarbay Otelbayev's legacy is cemented through his contributions to mathematical research, education, and institutional development. His role in mentoring young mathematicians and shaping research institutions has had a lasting impact. Looking ahead, his research will continue to inspire advancements in mathematics, particularly in mathematical modeling and applied mathematical theories. His influence will persist through his publications, mentorship, and contributions to the mathematical community.

📝Notable Publication


📝Title: On the theory of generalized analytic Vekua functions with a singular point

Authors: M.O. Otelbaev (Mukhtarbay O.), B.D. Koshanov (Bakytbek Danebekovich), N.O. Oralbekova (N.O.)

Journal: Complex Variables and Elliptic Equations

Year: 2025

Citations: 0


📝Title: Solvability of Some Elliptic Equations with a Nonlocal Boundary Condition

Authors: S.E. Aitzhanov (Serik Ersultanovich), B.D. Koshanov (Bakytbek Danebekovich), A.D. Kuntuarova (Aray D.)

Journal: Mathematics

Year: 2024

Citations: 0

S M Masfequier Rahman Swapno – Medical Diagonosis – Best Researcher Award 

Mr. S M Masfequier Rahman Swapno - Medical Diagonosis - Best Researcher Award 

Centre for AI and Digital Health Technology Lab, the University of Queensland (UQ) - Bangladesh 

Author Profile

Scopus

🎓 Early Academic Pursuits

Mr. S. M. Masfequier Rahman Swapno began his academic journey with a strong foundation in Computer Science and Engineering (CSE) at the Bangladesh University of Business and Technology (BUBT), where he earned his B.Sc. degree with a commendable CGPA of 3.71/4.00. His academic curiosity led him to explore advanced computational methodologies, culminating in his thesis titled "A Reinforcement Learning Approach to Adaptive Traffic Signal Management," supervised by Md. Shahiduzzaman. This research laid the groundwork for his later endeavors in artificial intelligence, deep learning, and medical imaging technologies.

💼 Professional Endeavors

Mr. Swapno has gained substantial professional experience in artificial intelligence and medical diagnostics, working in prestigious research labs and collaborating with international scholars. He is currently affiliated with the AI and Digital Health Technology Lab at The University of Queensland (UQ), Australia, under the supervision of Dr. Mohammad Ali Moni. Previously, he contributed to the Advanced Machine Intelligence Research Lab in Dhaka, Bangladesh, under the guidance of Dr. Muhammad Firoz Mridha. His work has also led him to collaborate with esteemed professors from Lebanon, Bangladesh, and India on groundbreaking machine learning and deep learning projects.

🌍 Impact and Influence

Mr. Swapno's research has made a profound impact in the fields of machine learning and medical diagnosis. His contributions in artificial intelligence-powered medical imaging have paved the way for more efficient, accurate, and explainable AI models in healthcare. His expertise has influenced researchers and practitioners globally, especially in the areas of brain tumor detection, cancer diagnosis, and disease classification.

His involvement in conferences, such as the IEEE International Conference on Computing and Machine Intelligence (ICMI) 2024, has further amplified his influence. His research on "Performance Improvements of Machine Learning-Based Crime Prediction in Bangladesh" and "A Novel Machine Learning Approach for Fast and Efficient Detection of Mango Leaf Diseases" have been recognized on an international scale.

🏆Academic Cites

Mr. Swapno's publications are widely cited in leading Q1 journals, demonstrating the relevance of his research. His papers in Nature Scientific Reports, IEEE Transactions on Image Processing, and Elsevier’s Medical Image Analysis have collectively accumulated numerous citations, solidifying his position as a rising researcher in AI-driven medical diagnosis.

🌟 Legacy and Future Contributions

Mr. Swapno is committed to advancing the field of medical diagnosis through artificial intelligence. His future contributions will focus on developing hybrid deep learning models for precise and rapid medical imaging solutions. His upcoming work, including "A Novel Ensemble Transformer Model for Fast and Accurate Depression Detection and Severity Analysis with Explainable AI", promises to revolutionize mental health diagnosis.

By continuing to collaborate with leading global researchers, Mr. Swapno aims to push the boundaries of AI-driven medical diagnosis and healthcare technology. His research will contribute to improving patient care, reducing diagnostic errors, and making AI-based medical solutions more accessible worldwide.

Medical Diagnosis

Mr. Swapno’s pioneering work in medical diagnosis has significantly enhanced AI-driven healthcare solutions. His innovative research in medical diagnosis focuses on developing deep learning-based models for brain tumor detection, cancer diagnosis, and sleep disorder classification. With continuous advancements in medical diagnosis, his contributions will shape the future of AI applications in healthcare.

📝Notable Publication


📝Accelerated and precise skin cancer detection through an enhanced machine learning pipeline for improved diagnostic accuracy

Authors: S.M. Masfequier Rahman Swapno, S.M. Nuruzzaman Nobel, P.K. Meena, J. Bahadur, A. Appaji

Journal: Results in Engineering

Year: 2025

Citations: 0

Togue Kamga Fulbert – Reactive Transfers in Porous Media – Excellence in Research

Prof. Togue Kamga Fulbert - Reactive Transfers in Porous Media - Excellence in Research 

University of Douala - Cameroon

Author Profile

Orcid

🎓 Early Academic Pursuits

Prof. Fulbert Togue Kamga embarked on a remarkable academic journey that laid the foundation for his expertise in physics, environmental science, and water resources management. He pursued a Bachelor’s degree in Physics at the University of Yaoundé I in 2001, followed by a Master’s in Physics with a specialization in External Geophysics. His pursuit of knowledge continued with multiple master’s degrees in Atmospheric Physics, Linguistics, Logic, and Computer Science, as well as a Professional Master’s degree in Instrumentation, Systems, Networks, and Communication (ISARC) from the University of Provence, France. He later achieved a Ph.D. in Physics, specializing in External Geophysics, from the University of Yaoundé I in 2013, graduating with the prestigious Very Honorable Mention. His early education reflects his broad and multidisciplinary approach to academic and scientific endeavors.

💼 Professional Endeavors

Prof. Togue Kamga's professional career is distinguished by his academic and pedagogical contributions. He began his teaching career in 2004 at the University of Yaoundé I, later moving to the Institute of Fisheries Sciences at the University of Douala, where he served as a Lecturer and Assistant in the Department of Oceanography. Over the years, Prof. Kamga has focused on teaching courses such as Applied Physics, Environmental Biophysics, Physical Oceanography, and Aquaculture Hydraulics, blending theoretical knowledge with practical applications. His extensive involvement in international conferences and workshops showcases his commitment to the dissemination of knowledge and scientific collaboration.

🔬 Contributions and Research Focus

Prof. Kamga’s research primarily revolves around the concept of Reactive transport in porous media, which has critical applications in water treatment technologies, environmental science, and resource management. His work in this domain addresses various aspects of Reactive transport in porous media, including the modeling and numerical simulation of filtration systems, particularly focusing on iron-sand barriers for drinking water purification. His research also extends to the study of water resources, pollution dynamics, and the modeling of contaminant transport and aquifer remediation, with a particular focus on sustainable and low-cost technologies for water treatment. Prof. Kamga's work in Reactive transport in porous media has provided valuable insights into how contaminants move through porous structures, which is crucial for environmental remediation and public health.

🌍 Impact and Influence

Prof. Togue Kamga’s influence extends well beyond his home institution. His contributions to Reactive transport in porous media have made a significant impact on the global scientific community, particularly in water resources and environmental pollution management. Through his leadership in international projects such as the RAF 7018 project, funded by the International Atomic Energy Agency (IAEA), and his coordination of scientific conferences, Prof. Kamga has shaped the direction of research in water treatment and resource management. His work is recognized by peers, and his influence extends into the policy-making realm, especially regarding sustainable water practices.

🏆Academic Cites

Prof. Kamga's research has been cited extensively in various academic journals, highlighting the global relevance and importance of his work. His studies on Reactive transport in porous media are frequently referenced by researchers working on water filtration, environmental remediation, and pollution control. The significant number of citations speaks to the academic rigor and impact of his research contributions, particularly in the realm of sustainable water solutions and environmental modeling.

🌟 Legacy and Future Contributions

Prof. Fulbert Togue Kamga’s legacy is firmly rooted in his groundbreaking work on Reactive transport in porous media and its applications to water resources management and pollution control. His future contributions are expected to continue advancing these areas, with an emphasis on improving water treatment technologies and developing more efficient methods for contaminant remediation. As an academic and mentor, Prof. Kamga is poised to inspire and guide the next generation of researchers and practitioners in the environmental sciences. His continued research in Reactive transport in porous media promises to contribute further to the development of sustainable solutions to global water challenges, making him a key figure in the future of environmental science and engineering.

📝Reactive Transfers in Porous Media

Prof. Togue Kamga’s extensive body of research in Reactive transport in porous media is a cornerstone of his academic contributions. His focus on Reactive transport in porous media has provided invaluable insights into the complex dynamics of water filtration systems, environmental contamination, and remediation. As he continues to explore the challenges of Reactive transport in porous media, Prof. Kamga remains a pivotal figure in shaping the future of environmental management and sustainable water treatment technologies.

Notable Publication


📝Effects of the injection radius and varying velocity on solute transport in a finite porous medium with radial geometry

Journal: Sādhanā

Date: March 25, 2024

Authors: Achille Stéphane Ngomyap Nganso, Fulbert Kamga Togue, César Biouele Mbane


📝Analysis of the importance of the dispersion coefficient depending on the distance for the transport of solute in porous media

Year: 2022

Author: Fulbert Togue Kamga


📝Dispersion of pollutants in a porous medium with finite thickness and variable dispersion coefficients

Journal: Heliyon

Date: August 2022

Authors: Calvia Yonti Madie, Fulbert Kamga Togue, Paul Woafo


📝Numerical solution of the Burgers equation associated with the phenomena of longitudinal dispersion depending on time

Journal: Heliyon

Date: July 2022

Authors: Calvia Yonti Madie, Fulbert Kamga Togue, Paul Woafo


📝Modelling Adsorption and Transport of Chrome VI onto Iron Oxide-Coated Sand Filter

Journal: International Journal of Environment, Agriculture and Biotechnology (IJEAB)

Year: 2019

HU Chuanmei – Aging Research – Excellence in Innovation 

Assoc. Prof. Dr. HU Chuanmei - Aging Research - Excellence in Innovation 

Chengdu University of Technology - China 

Author Profile

Scopus

🎓 Early Academic Pursuits

Assoc. Prof. Dr. HU Chuanmei embarked on an academic journey that combined industrial design with urban planning and architecture. She earned her Bachelor’s degree in Industrial Design from Chongqing University in 2001, laying the foundation for her expertise in engineering and design. Driven by a passion for technological advancements and human-centric designs, she pursued a Master’s degree in Urban Planning and Design from Sichuan University in 2009, where she developed a deep understanding of spatial planning, user experience, and design efficiency.

💼 Professional Endeavors

Dr. HU Chuanmei has had a distinguished professional career spanning over two decades. She has held various academic and administrative roles at Chengdu University of Technology, progressing from Assistant Teacher to Lecturer, and later to Associate Professor in the Department of Industrial Design. From 2021 to 2024, she served as the Director of the Engineering Drawing Department at the School of Mechanical and Electronical Engineering, where she played a crucial role in curriculum development and research initiatives. Her experience extends beyond academia, having served as Deputy Director of the Meishan Municipal Economic Cooperation Bureau, where she contributed to industrial collaborations and policy-making.

🔬 Contributions and Research Focus

Dr. HU Chuanmei's research focuses on aging research, intelligent equipment and robot design, and intelligent interaction design. Her work in aging research aims to improve the quality of life for elderly individuals through innovative design solutions, emphasizing user-friendly interfaces, accessibility, and ergonomic designs. She has contributed significantly to the development of assistive technologies that cater to the aging population, ensuring enhanced mobility, safety, and independence.

🌍 Impact and Influence

Her influence extends across multiple disciplines, combining industrial design with cutting-edge technological advancements. By integrating intelligent interaction systems into everyday products, she has paved the way for improved usability in assistive devices. Her contributions to aging research have had a profound impact on the development of smart environments, contributing to advancements in healthcare technology and elderly care solutions.

🏆Academic Cites

Dr. HU Chuanmei's research has been widely cited in academic circles, particularly in studies related to intelligent design and aging research. Her interdisciplinary approach has made her work highly relevant to researchers in industrial design, robotics, and gerontology. She has presented at international conferences and published extensively in high-impact journals, further cementing her reputation as a thought leader in the field.

🌟 Legacy and Future Contributions

Looking ahead, Dr. HU Chuanmei aims to expand her research in assistive technology, smart living environments, and AI-driven healthcare solutions for the elderly. Her future contributions will likely involve designing more intuitive and adaptive systems to support independent living for aging populations. By continuing her work at the intersection of industrial design and intelligent technology, she is set to leave a lasting legacy in the fields of robotics and aging research.

📝Notable Publication


📝Applied research using the NIOSH lifting equation to optimize the design of shopping trolley for the elderly

Authors: C. Hu, Chuanmei; X. Huang, Xiaolin; G. Jiang, Gang; S. Hou, Siqi; Y. Wang, Yong

Journal: Scientific Reports

Year: 2024

Citations: 0

Mingming Qiu – Intelligent Connected Electric Vehicles – Best Researcher Award 

Assoc. Prof. Dr. Mingming Qiu - Intelligent Connected Electric Vehicles - Best Researcher Award 

Hefei University of Technology - China

Author Profile

Scopus

🎓 Early Academic Pursuits

Assoc. Prof. Dr. Mingming Qiu began his academic journey with a keen interest in automotive engineering and control systems. His early academic pursuits were marked by a solid foundation in mechanical and electrical engineering, which allowed him to specialize in areas related to intelligent systems and vehicular technologies. Throughout his educational path, Dr. Qiu displayed exceptional academic potential, eventually earning advanced degrees that paved the way for his influential contributions to the development of intelligent connected electric vehicles.

💼 Professional Endeavors

Assoc. Prof. Dr. Mingming Qiu currently holds an esteemed position in the field of automotive technology, where his professional endeavors focus on the advancement of intelligent connected electric vehicles (ICEVs). He has contributed to numerous groundbreaking studies and collaborations within automotive engineering, emphasizing system control, velocity planning, and adaptive strategies. His work in these areas has brought significant progress to the sector, especially in enhancing the efficiency and safety of intelligent connected electric vehicles.

🔬 Contributions and Research Focus

Dr. Qiu’s research focus revolves around intelligent connected electric vehicles, where he has developed innovative solutions such as velocity planning algorithms and adaptive cruise control strategies. One of his key contributions is the development of an economical velocity planning algorithm for intelligent connected electric vehicles based on real-time traffic information. His work also includes the adaptive robust sliding mode control for automatic emergency braking (AEB) systems, considering road adhesion conditions. His contributions aim to enhance vehicle safety, energy efficiency, and overall driving performance in the context of intelligent connected electric vehicles.

🌍 Impact and Influence

Assoc. Prof. Dr. Mingming Qiu's impact and influence in the field of intelligent connected electric vehicles are far-reaching. His innovative approaches to control strategies and vehicle dynamics have attracted attention from both academic and industry communities. His work in the development of algorithms for real-time traffic-based velocity planning and adaptive control systems has influenced how modern vehicles are engineered to respond to real-time driving conditions. As a result, Dr. Qiu’s research plays a critical role in shaping the future of intelligent connected electric vehicles, particularly in enhancing their functionality and performance.

🏆Academic Cites

Dr. Qiu’s research has been increasingly cited by scholars and practitioners in automotive engineering. His articles, such as "An Economical Velocity Planning Algorithm for Intelligent Connected Electric Vehicles" and "Adaptive Robust Sliding Mode Control for AEB Considering Road Adhesion Condition Constraint," have already garnered citations, signaling the growing recognition of his work. As his research continues to evolve, it is expected that his influence in the development of intelligent connected electric vehicles will only grow, further solidifying his role in advancing automotive technologies.

🌟 Legacy and Future Contributions

Looking ahead, Assoc. Prof. Dr. Mingming Qiu is poised to continue making significant contributions to the field of intelligent connected electric vehicles. His ongoing research into control systems, velocity planning, and adaptive strategies is expected to drive future innovations that improve the performance, safety, and environmental impact of these vehicles. Dr. Qiu’s dedication to advancing vehicle technologies, combined with his expertise, ensures that his legacy will have a lasting impact on the field of automotive engineering. His future contributions will undoubtedly shape the next generation of intelligent connected electric vehicles.

📝Intelligent Connected Electric Vehicles

Assoc. Prof. Dr. Mingming Qiu’s expertise in intelligent connected electric vehicles has led to groundbreaking contributions in the field. His development of velocity planning algorithms and adaptive control strategies for these vehicles has made a significant impact on automotive technology. As Dr. Qiu continues his research, he remains at the forefront of innovations in intelligent connected electric vehicles, ensuring that his work continues to influence the direction of the automotive industry. The future of intelligent connected electric vehicles looks bright under his leadership and contributions.

Notable Publication


📝An Economical Velocity Planning Algorithm for Intelligent Connected Electric Vehicles Based on Real-Time Traffic Information

Authors: M., Qiu, Mingming; L., Wang, Lei; X., Mu, Xiaoyu; W., Yu, Wei; K., Huang, Kang

Journal: International Journal of Automotive Technology

Year: 2024

Citations: 1


📝Adaptive robust sliding mode control for AEB considering road adhesion condition constraint

Authors: M., Qiu, Mingming; Z., Li, Zengyuan; W., Yu, Wei; B., Zhang, Bingzhan; H., Zhao, Han

Journal: Proceedings of the Institution of Mechanical Engineers, Part D: Journal of Automobile Engineering

Year: 2024

Citations: 0


📝Research on Adaptive Cruise Control Strategy of Target Loss Curve in Front

Authors: Q., Wu, Qilin; X., Mu, Xiaoyu; M., Qiu, Mingming; Y., Zhao, Yating

Journal: Qiche Gongcheng/Automotive Engineering

Year: 2023

Citations: 0

Zhengguang Guo – Mathematical Theory of Fluid Equations – Best Researcher Award

Prof. Zhengguang Guo - Mathematical Theory of Fluid Equations - Best Researcher Award 

Huaiyin Normal University - China

Author Profile

Scopus

🎓 Early Academic Pursuits

Professor Zhengguang Guo embarked on his academic journey with a strong foundation in mathematics at Hubei Normal University, where he earned his B.Sc. in Mathematics in 2003. His passion for theoretical mathematics led him to East China Normal University, where he pursued his M.Sc. and Ph.D., completing his doctoral studies in 2011. During this period, he developed a deep interest in the mathematical theory of fluid equations, which later became a central theme in his research. His early academic work laid the groundwork for his significant contributions to fluid dynamics and mathematical modeling.

💼 Professional Endeavors

Prof. Guo has held various prestigious academic positions, demonstrating his commitment to advancing mathematical sciences. He served as an Associate Professor at Wenzhou University from 2011 to 2019, where he played a key role in both teaching and research. His academic journey included international exposure as an exchange student at the University of Geneva (2009–2010), a visiting scholar in Switzerland (2015), and a research fellowship at Kyushu University, Japan (2017). His postdoctoral tenure at Shanghai Jiao Tong University (2016–2018) further enriched his expertise in the mathematical theory of fluid equations, leading to groundbreaking research in fluid dynamics. Since 2019, he has been a Professor at the School of Mathematics and Statistics, Huaiyin Normal University, contributing significantly to academia.

🔬 Contributions and Research Focus

Prof. Guo's primary research focus revolves around the mathematical theory of fluid equations, an area critical to understanding complex fluid dynamics. His work has contributed to the development of mathematical models that describe the behavior of fluids under various conditions. His research has provided insights into stability analysis, turbulence modeling, and nonlinear fluid equations, bridging theoretical mathematics with real-world applications in physics and engineering.

🌍 Impact and Influence

Through his research, Prof. Guo has made a profound impact on the mathematical and scientific community. His work on the mathematical theory of fluid equations has been recognized for its theoretical depth and practical significance, influencing scholars in applied mathematics and engineering. His international collaborations and research fellowships in China, Japan, and Switzerland have broadened the scope of his influence, fostering academic exchange and advancing global research in fluid mechanics.

🏆Academic Cites

Prof. Guo's research contributions have been widely cited in academic literature, reflecting the importance and relevance of his work. His studies in mathematical fluid dynamics have been referenced in various high-impact journals, contributing to the broader understanding of fluid behavior and mathematical modeling. The high citation rate of his publications highlights his role as a leading researcher in this domain.

🌟 Legacy and Future Contributions

As a dedicated mathematician, Prof. Guo continues to shape the future of mathematical research. His ongoing projects, supported by prestigious research grants such as the Natural Science Foundation of Jiangsu Province and the National Natural Science Foundation of China, ensure that his contributions to the field will remain significant. His legacy lies in mentoring the next generation of mathematicians and expanding the frontiers of knowledge in the mathematical theory of fluid equations. Through his continuous efforts in research and education, he is set to further influence the field and drive future advancements in mathematical fluid dynamics.

📝Notable Publication


📝Extension criterion involving the middle eigenvalue of the strain tensor on local strong solutions to the 3D Navier–Stokes equations

Authors: Z. Guo, Zhengguang, C.J. O, Chol Jun

Journal: Applied Mathematics Letters

Year: 2025

Citations: 0


📝Self-similar solutions and large time behavior to the 2D isentropic compressible Navier–Stokes equations with vacuum free boundary and rotation

Authors: K. Li, Kunquan, D. Tong, Dongfu, Z. Guo, Zhengguang

Journal: Applied Mathematics Letters

Year: 2024

Citations: 0


📝Remarks on the Possible Blow-Up Conditions via One Velocity Component for the 3D Navier–Stokes Equations

Authors: Z. Guo, Zhengguang, C.J. O, Chol Jun

Journal: Journal of Geometric Analysis

Year: 2024

Citations: 0


📝Some Liouville-Type Results for the 3D Incompressible MHD Equations

Authors: P. Wang, Peng, Z. Guo, Zhengguang

Journal: Journal of Geometric Analysis

Year: 2024

Citations: 0


📝Global Regularity Criteria of the 3D MHD-Boussinesq Equations Without Thermal Diffusion

Authors: Z. Guo, Zhengguang, Z. Zhang, Zunzun, C. Zhao, Caidi

Journal: Communications in Mathematical Sciences

Year: 2024

Citations: 0


📝Anisotropic Prodi–Serrin regularity criteria for the 3D Navier–Stokes equations involving the gradient of one velocity component

Authors: Z. Guo, Zhengguang, C.J. O, Chol Jun

Journal: Applied Mathematics Letters

Year: 2023

Citations: 2


📝Global Well-Posedness and Asymptotic Behavior of the 3D MHD-Boussinesq Equations

Authors: Z. Guo, Zhengguang, Z. Zhang, Zunzun, Z. Skalák, Zdeněk

Journal: Journal of Nonlinear Science

Year: 2023

Citations: 0

Abdelkader Miloud El-horri – Quantum Chemistry – Young Scientist Excellence Award 

Assoc. Prof. Dr. Abdelkader Miloud El-horri - Quantum Chemistry - Young Scientist Excellence Award 

Departmenet of chemistry/Hassiba BenBouali University of Chlef - Algeria

Author Profile

Google Scholar

Scopus

Orcid

🎓 Early Academic Pursuits

Assoc. Prof. Dr. Abdelkader Miloud El-horri laid a strong academic foundation in QUANTUM CHEMISTRY and theoretical chemistry from an early stage. His academic journey began with a Bachelor of Science from Mohamed Boudiaf High School in Sidi Bel Abbes (1999-2002), followed by a Licensing Degree in General Chemistry at the University of Djilali Liabes (2002-2008). His passion for chemistry led him to pursue a Magister Degree in Physical and Theoretical Chemistry at the same university (2008-2011), where he engaged in both theoretical coursework and experimental laboratory research on organic pollution extraction via coagulation and complexation techniques.

💼 Professional Endeavors

Dr. El-horri's academic career progressed with his Doctorate in Physical and Theoretical Chemistry from the University of Djilali Liabes (2011-2017), during which he developed advanced expertise in QUANTUM CHEMISTRY. In 2018, he secured a lecturer position at Hassiba BenBouali University of Chlef, marking a significant milestone in his career. His teaching journey, spanning from 2011 to the present, includes instructing undergraduate and graduate students in subjects such as general chemistry, theoretical chemistry, quantum chemistry, molecular modeling, and numerical methods.

🔬 Contributions and Research Focus

Dr. El-horri's research focus lies in QUANTUM CHEMISTRY, theoretical chemistry, and computational methods applied to molecular modeling. His work emphasizes the development of computational techniques to study molecular interactions and chemical reactions at the quantum level. His expertise in informatics for chemistry has also contributed to integrating numerical methods into chemical research, enhancing both theoretical and practical applications.

🌍 Impact and Influence

Dr. El-horri has had a profound influence on the academic and scientific community, mentoring undergraduate and graduate students while advancing research in QUANTUM CHEMISTRY. His teachings in Quantum Chemistry II and molecular modeling have shaped the next generation of chemists. His impact extends beyond the classroom, as he continuously contributes to refining computational chemistry techniques, making theoretical chemistry more accessible and applicable.

🏆Academic Cites

As an established researcher, Dr. El-horri’s scholarly work has been cited in various academic journals and research papers, particularly in the domains of quantum and theoretical chemistry. His publications serve as a valuable reference for chemists working in computational modeling and chemical reaction simulations.

🌟 Legacy and Future Contributions

Dr. Abdelkader Miloud El-horri’s legacy is characterized by his commitment to advancing theoretical and quantum chemistry education and research. Looking ahead, he aims to further develop computational models for molecular behavior, contribute to environmental chemistry solutions, and integrate artificial intelligence into chemical informatics. His continued research and mentorship will leave a lasting impact on the field, ensuring that future chemists build upon his foundational work in theoretical chemistry.

📝Notable Publication


📝Performance of hybrid DFT compared to MP2 methods in calculating nonlinear optical properties of divinylpyrene derivative molecules

Authors: M. Zouaoui-Rabah, M. Sekkal-Rahal, F. Djilani-Kobibi, A. M. Elhorri, ...

Journal: The Journal of Physical Chemistry A

Year: 2016

Citations: 51


📝Theoretical study of the azo dyes dissociation by advanced oxidation using Fukui indices. DFT calculations

Authors: A. M. Elhorri, K. D. Belaid, M. Zouaoui-Rabah, R. Chadli

Journal: Computational and Theoretical Chemistry

Year: 2018

Citations: 22


📝NLO response of derivatives of benzene, stilbene, and diphenylacetylene: MP2 and DFT calculations

Authors: A. M. Elhorri, M. Zouaoui-Rabah

Journal: Chinese Journal of Chemical Engineering

Year: 2017

Citations: 17


📝Kajima Mulengi J., Hammouti B

Authors: R. Chadli, M. Elazouzi, I. Khelladi, A. M. Elhorri, H. Elmsellem, A. Aouniti

Journal: Portugaliae Electrochimica Acta

Year: 2017

Citations: 15


📝Theoretical study of new push–pull molecules based on transition metals for NLO applications and determination of ICT mechanisms by DFT calculations

Authors: A. M. Elhorri

Journal: Journal of Theoretical and Computational Chemistry

Year: 2020

Citations: 11


📝Theoretical study by DFT of organometallic complexes based on metallocenes active in NLO

Authors: A. M. Elhorri

Journal: Journal of Molecular Modeling

Year: 2021

Citations: 9


📝Synthesis of aza-pseudopeptides and the evaluation of their inhibiting efficacy of mild steel corrosion in 1.0 M HCl

Authors: R. Chadli, A. Elhorri, H. Elmsellem, M. Elazzouzi, N. Merad, A. Aouniti, ...

Journal: Protection of Metals and Physical Chemistry of Surfaces

Year: 2017

Citations: 9

Michael Giersig – Nanotechnology – Best Researcher Award

Prof. Dr. Michael Giersig - Nanotechnology - Best Researcher Award 

IPPT PAN - Poland

Author Profile

Scopus

Orcid

🎓 Early Academic Pursuits

Prof. Dr. Michael Giersig’s academic journey began with a strong foundation in physics and chemistry. He earned his Master’s Degree (Dipl. Phys.) from the Department of Physics at Freie University Berlin in 1984, followed by a Ph.D. (Dr. rer. nat.) in Chemistry from the same university in 1988. His early research focused on the synthesis and characterization of nanostructures, laying the groundwork for his future contributions to NANOTECHNOLOGY. In 1999, he obtained his Dr. rer. nat. habil. (Venia Legendi) from the University of Potsdam, marking his transition into a leadership role in academia and research.

💼 Professional Endeavors

Prof. Dr. Michael Giersig has held prestigious academic and research positions across various institutions. Since 2019, he has been a Full Professor at the Institute of Fundamental Technological Research, Polish Academy of Sciences in Warsaw. Prior to this, he served as a Professor at Freie University Berlin from 2009 to 2018, where he significantly contributed to the fields of physics and NANOTECHNOLOGY. His earlier roles include professorships at Rheinische Friedrich-Wilhelms-University, the Helmholtz-Center Berlin, and the University of Melbourne. His career has been marked by numerous visiting professorships across Europe and China, reflecting his global influence in scientific research.

🔬 Contributions and Research Focus

Prof. Giersig’s research has been at the forefront of NANOTECHNOLOGY, focusing on the synthesis and production of metallic, magnetic, and semiconductor nanoparticles. His work has led to groundbreaking advancements in nanostructures for life sciences, electronics, and renewable energy applications. His expertise extends to the creation of carbon-based nanostructures like MWCNT and graphene, which have revolutionized applications in solar cells, photonics, and medical diagnostics. His contributions also include advanced characterization techniques such as HRTEM, SEM, AFM, Raman Spectroscopy, and SQUID, which have enhanced the understanding of nanoscale materials.

🌍 Impact and Influence

Prof. Dr. Michael Giersig’s contributions to NANOTECHNOLOGY have had a profound impact on both fundamental science and applied research. His work on nanoparticles and nanostructures has paved the way for advances in tissue engineering, diagnostics, memory devices, and solar cell technology. He has played a crucial role in bridging international research collaborations, particularly between Germany and Poland, earning multiple awards for his efforts. His mentorship has produced outstanding scholars who continue to push the boundaries of NANOTECHNOLOGY.

🏆Academic Cites

Prof. Giersig’s extensive body of work has been widely cited in leading scientific journals, reflecting his influence in the field. His research on nanoparticle technology and interface reactions has been referenced by scholars globally, making a significant impact on future developments in NANOTECHNOLOGY. His collaborations with researchers from Poland, Germany, Spain, China, and beyond have further amplified his academic reach.

🌟 Legacy and Future Contributions

Prof. Dr. Michael Giersig’s legacy lies in his transformative contributions to NANOTECHNOLOGY and his commitment to fostering global scientific collaboration. His future research aims to push the boundaries of nanomaterials for medical, environmental, and energy applications. Through continued mentorship and international partnerships, he is set to influence the next generation of scientists and researchers in this ever-evolving field. His pioneering work ensures that NANOTECHNOLOGY remains at the forefront of scientific advancement for years to come.

📝Notable Publication


📝Advanced Functional NiCo₂S₄@CoMo₂S₄ Heterojunction Couple as Electrode for Hydrogen Production via Energy-Saving Urea Oxidation

Authors: Njemuwa Njoku Nwaji, Boka Fikadu, Magdalena Osial, Jaebeom Lee, Michael Giersig

Journal: Small

Year: 2025

Citations: 0


📝Enhancing Epoxy Composites with Graphene and Graphene Oxide: Thermal and Mechanical Insights

Authors: Sławomir Wilczewski, Zdzisław Nowak, Michał S. Maj, Roman A. Minikayev, Michael Giersig

Journal: ChemNanoMat

Year: 2025

Citations: 0


📝Atomically Dispersed Ruthenium in Transition Metal Double Layered Hydroxide as a Bifunctional Catalyst for Overall Water Splitting

Authors: Njemuwa Njoku Nwaji, Boka Fikadu, Magdalena Osial, Jaebeom Lee, Michael Giersig

Journal: Renewable Energy

Year: 2024

Citations: 2


📝How Scanning Probe Microscopy Can Be Supported by Artificial Intelligence and Quantum Computing?

Authors: Agnieszka Pregowska, Agata Roszkiewicz, Magdalena Osial, Michael Giersig

Journal: Microscopy Research and Technique

Year: 2024

Citations: 0


📝Disentangling the Catalytic Origin in Defect Engineered 2D NiCoMoS@Ni(CN)₂ Core-Shell Heterostructure for Energy-Saving Hydrazine-Assisted Water Oxidation

Authors: Njemuwa Njoku Nwaji, Boka Fikadu, Magdalena Osial, Jaebeom Lee, Michael Giersig

Journal: International Journal of Hydrogen Energy

Year: 2024

Citations: 2


📝A Stable Perovskite Sensitized Photonic Crystal P−N Junction with Enhanced Photoelectrochemical Hydrogen Production

Authors: Njemuwa Njoku Nwaji, Hyojin Kang, Birhanu Bayissa Gicha, Jaebeom Lee, Michael Giersig

Journal: ChemSusChem

Year: 2024

Citations: 1