Kuikun Yang | Nanotechnology | Research Excellence Award

Prof. Dr. Kuikun Yang | Nanotechnology | Research Excellence Award

Professor | Harbin Institute of Technology | China

Prof. Dr. Kuikun Yang is a distinguished researcher at Harbin Institute of Technology whose work centers on nanomedicine, biomedical nanomaterials, and advanced therapeutic platforms. His research interests include MOF-based nanocomposites, quantum dot–functional materials, lipid nanoparticles for mRNA delivery, supramolecular polymers, ROS-responsive systems, photothermal therapy, ferroptosis, and synergistic cancer treatments. He possesses strong research skills in nanomaterial design, stimuli-responsive drug delivery, tumor microenvironment modulation, translational nanotechnology, and interdisciplinary integration of chemistry, materials science, and biomedicine. Prof. Yang has received academic recognition and research honors through high-impact publications, invited reviews, and leadership in collaborative international research. According to Scopus, he has authored 41 documents, accumulated 2,706 citations, and achieved an h-index of 26, demonstrating sustained scholarly impact. In conclusion, Prof. Dr. Kuikun Yang’s innovative contributions continue to advance precision oncology and next-generation nanotherapeutic strategies with strong translational potential.

 

Citation Metrics (Scopus)

2706
2000
1000
500
0

Citations

2,706

Documents

41

h-index

26

Citations

Documents

h-index

View Scopus Profile View Google Schola Profile View ORCID Profile

Featured Publications

 

Kuaibing Wang | Nanotechnology | China

Assoc. Prof. Dr. Kuaibing Wang | Nanotechnology | Research Excellence Award

Dean of Chemical Experimental Center | Nanjing Xiaozhuang University | China

Assoc. Prof. Dr. Kuaibing Wang is an accomplished researcher in advanced functional materials, specializing in energy storage and sustainable nanomaterials. His research interests focus on the design and synthesis of metal–organic frameworks (MOFs), covalent organic frameworks (COFs), coordination polymers, biomass-derived carbon materials, and their applications in lithium-ion batteries, supercapacitors, and asymmetric energy storage systems, with emerging contributions to antibacterial and anticancer nanomaterials. He possesses strong research skills in material synthesis, nanostructure engineering, electrochemical performance evaluation, structure–property relationship analysis, and sustainable material conversion strategies. His work has earned academic recognition through high-impact publications, invited reviews, and leadership roles in interdisciplinary research, reflecting notable awards and professional honors within the materials science community. According to Scopus, Dr. Wang has published 93 documents, received approximately 4,184 citations, and holds an impressive h-index of 35, demonstrating sustained research excellence. Overall, his contributions significantly advance energy materials innovation and sustainable technological development.

 

Citation Metrics (Scopus)

4200
3000
2000
1000
0

Citations

4,184

Documents

93

h-index

35

Citations

Documents

h-index

View Scopus View ORCID
View Google Scholar
View ResearchGate

Featured Publications

 

Vitalii Bondariev | Nanotechnology | Excellence in Research Award

Dr. Vitalii Bondariev | Nanotechnology | Excellence in Research Award

Assistant Professor | Lublin University of Technology | Poland

Dr. Vitalii A. Bondariev is a highly active researcher at Politechnika Lubelska, Poland, recognized for his growing contributions in electrical engineering, nanomaterials, energy systems reliability, and advanced insulation diagnostics. His research interests span transformer reliability assessment, microstructural and tribomechanical analysis of nanocomposite coatings, Monte Carlo simulation-based electrical modelling, and the study of moisture effects on insulation degradation. Dr. Bondariev demonstrates strong expertise in materials characterization, high-voltage diagnostics, Monte Carlo computational modelling, tribological testing, and electrical parameter analysis. His collaborative work with more than 120 co-authors highlights his interdisciplinary engagement across energy engineering and material sciences. According to Scopus metrics, he has accumulated 511 citations, authored 54 scientific publications, and achieved an h-index of 12, reflecting his rising scholarly influence. Although no formal awards or grants are currently listed, his publication activity and growing citation impact underscore a steadily advancing research career committed to enhancing electrical system reliability and innovative material applications.

 

Citation Metrics (Scopus)

600
450
300
150
0

Citations

511

Documents

54

h-index

12

Citations

Documents

h-index

 

View Scopus Profile

Featured Publications