Qiyao Yu | Materials | Best Researcher Award
Prof. Qiyao Yu, Beijing Institute of Technology, China.
Publication Profiles
Scopus
Googlescholar
Education & Experience 

- Bachelor of Chemistry (2008-2012) – Beijing Institute of Technology 🎓
- Master of Chemical Engineering (2012-2014) – Beijing Institute of Technology 🏛
- Ph.D. in Chemical Engineering & Technology (2014-2018) – Harbin Institute of Technology 🔬
- Postdoctoral Fellow (2018-2020) – Beijing Institute of Technology 🏗
- Associate Professor & Doctoral Supervisor (2020-Present) – Beijing Institute of Technology 📖
Summary Suitability
Dr. Qiyao Yu is an esteemed Associate Professor at the Beijing Institute of Technology, specializing in electrochemical analysis, nanomaterial synthesis, and energy storage systems. Holding a Ph.D. from Harbin Institute of Technology, Dr. Yu has made groundbreaking contributions to alkali-ion battery research, playing a pivotal role in advancing energy materials and battery technology. Her work has bridged theoretical insights with experimental validation, contributing to the development of high-performance and sustainable energy solutions. Her pioneering research and commitment to innovation make her an ideal candidate for the Best Researcher Award.
Professional Development 

Dr. Qiyao Yu has significantly contributed to the field of energy storage and chemical engineering. She has authored 60+ SCI papers, including 44 as first/corresponding author, with 22 papers having an impact factor greater than 10. She has led 10 national projects, obtained over 20 patents, and actively contributes as an editorial board member for Battery Materials. Her research delves into the design of advanced battery materials, focusing on sodium/potassium-ion storage. Dr. Yu also plays a vital role in teaching, textbook compilation, and knowledge graph development for chemistry and energy storage courses, ensuring the next generation of researchers thrives. 🔋🧪
Research Focus
Dr. Qiyao Yu’s research primarily revolves around next-generation energy storage systems, particularly sodium-ion and potassium-ion batteries. Her work emphasizes developing high-performance electrode materials, electrolyte engineering, and interfacial chemistry to enhance battery stability and efficiency. By integrating metal-organic frameworks, carbon nanostructures, and polyanionic compounds, her research aims to revolutionize commercial sustainable energy storage solutions. Her pioneering studies on ion migration, cathode/anode materials, and electrolyte interfaces contribute significantly to battery advancements. Her focus on scalability and real-world applications positions her as a key innovator in the future of renewable energy technologies. 🔋🔄🌱
Awards & Honors 🏆🎖
- Beijing Quality Course (Key) – Fundamentals of Organic Materials Chemistry (2021) 🏆
- Ministry of Industry and Information Technology Planning Textbook – Fundamentals of Organic Chemistry of Energetic Materials (2021) 📚
- Ministry of Education Teaching Reform Projects – Knowledge Graph for Organic Chemistry & Weapons Courses (2023) 🏛
- Leader of 10+ National Projects, including the National Natural Science Foundation of China 🎯
- Editorial Board Member – Battery Materials 📰
. With a strong background in biochemistry and molecular research, he has contributed extensively to nanomedicine, drug delivery systems, and cancer therapy
. His research involves synthesizing and characterizing nanocarriers for drug delivery, cytotoxicity studies, and biophysical interactions. Dr. Dolatabadi has authored numerous publications in renowned journals
and presented at international conferences
. His ongoing research focuses on biosensors and molecular imprinting for medical and environmental applications.
B.Sc. in Biology – Iran 




. He has worked on nanolipidic carriers, biomolecular interactions, and cytotoxicity studies to improve targeted drug formulations. His expertise extends to surface plasmon resonance, spectroscopy, and molecular imprinting for biosensing applications
. His current research integrates nanotechnology with electrochemical biosensors, enhancing medical diagnostics and food safety testing
.
. His work involves developing nanolipidic carriers, dendrimers, and polymeric systems to improve drug bioavailability and targeting. He explores cytotoxicity and genotoxicity studies
. Additionally, he is working on biosensors for detecting contaminants in food and the environment
International Research Awards in Pharmaceutical Nanotechnology 


.
. 1 citation.
. 0 citations.
. 4 citations.
Education:
Master of Philosophy (MPhil) in Physics – Bangladesh University of Engineering and Technology (BUET) (2017–2023)
Adjunct Faculty – University of Information Technology & Sciences (UITS), Dhaka (2023)










Green Servitization as a Means of Sustainable Performance: Evidence of Listed Manufacturing Firms – IO Oyelakin, SK Johl – Cogent Engineering 9 (1), 2014250 – Cited by: 9 – Year: 2022
The Effect of Green Servitization on Malaysian Manufacturing Firm Sustainability: A Moderating Role of ISO 14001:2015 Environmental Management System – OI Oyewale, SK Johl – Annals of the Romanian Society for Cell Biology, 4563-4570 – Cited by: 8 – Year: 2021
Impact of COVID-19 on Malaysian Economy: A Study of Consumer Product Manufacturing Firms – IOO Asnidar Hanim Yusuf – Journal of Hunan University Natural Sciences 49 (1) – Cited by: 7 – Year: 2022
Green Servitization, Circular Economy, and Sustainability: A Winning Combination Analysis Through Hybrid SEM‐ANN Approach – SK Johl, K Ali, K Shirahada, OI Oyewale – Business Strategy and the Environment 33 (8), 8978-8993 – Cited by: 2 – Year: 2024
Ph.D. in Applied Mathematics – University of Calcutta (2016)
Associate Professor & Head, Dept. of Mathematics, Sister Nivedita University (Aug 2024 – Present)


Modeling of memory-dependent derivative in a fibre-reinforced plate – Thin-Walled Structures 126, 85-93, 66 citations, 2018
Thermoelastic interaction in a viscoelastic functionally graded half-space under three-phase-lag model – European Journal of Computational Mechanics 23 (5-6), 179-198, 56 citations, 2014
Non-local memory-dependent heat conduction in a magneto-thermoelastic problem – Waves in Random and Complex Media 32 (1), 251-271, 52 citations, 2022
Fractional order generalized thermoelastic functionally graded solid with variable material properties – Journal of Solid Mechanics 6 (1), 54-69, 50 citations, 2014




Ph.D. in Geotechnical Engineering (2013)
Microstructural evolution of expansive clay during drying–wetting cycle – Acta Geotechnica (2020) | Cited by: 95
Soil freezing and soil water retention characteristics: connection and solute effects – Journal of Performance of Constructed Facilities (2017) | Cited by: 74 

Hydraulic and mechanical behavior of unsaturated silt: Experimental and theoretical characterization – International Journal of Geomechanics (2016) | Cited by: 33
Constitutive model of unsaturated soils considering the effect of intergranular physicochemical forces – Journal of Engineering Mechanics (2016) | Cited by: 30 
Strength theory model of unsaturated soils with suction stress concept – Journal of Applied Mathematics (2013) | Cited by: 26
Analytical model of soil-water characteristics considering the effect of air entrapment – International Journal of Geomechanics (2015) | Cited by: 24 
Experimental investigation on the influence of thermochemical effect on the pore–water status in expansive soil – International Journal of Geomechanics (2021) | Cited by: 23 