Yujie Ning | Nanotechnology | Research Excellence Award

Dr. Yujie Ning | Nanotechnology | Research Excellence Award

R&D Engineer | Beijing New Building Materials Public Limited Company | China

Dr. Yujie Ning is an emerging researcher specializing in advanced functional coatings, including electromagnetic wave absorption, anti-corrosion, and blast-resistant materials. Her research focuses on MXene-based nanocomposites, intelligent self-healing coatings, and multifunctional barrier systems for enhanced protection. She has authored 7 peer-reviewed journal publications in high-impact materials science journals. With strong expertise in nanomaterial synthesis, corrosion science, and surface engineering, her work reflects innovation and growing influence, contributing to next-generation protective materials and sustainable engineering solutions.

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Peng Geng | Nanotechnology | Research Excellence Award

Dr. Peng Geng | Nanotechnology | Research Excellence Award

Doctor | China Three Gorges University | China

Dr. Peng Geng, affiliated with China Three Gorges University, is a researcher in nanomaterials and biomedical engineering. His research interests include nanosonosensitizers, organogels, photothermal therapy, and cancer therapeutics. He possesses strong skills in nanotechnology, material synthesis, and applied chemistry. Dr. Geng has contributed to impactful publications in advanced materials and interdisciplinary sciences. According to Scopus, he has 1,434 citations, 50 documents, and an h-index of 19, reflecting his growing influence in biomedical innovation and therapeutic material development.

 

Citation Metrics (Scopus)

1434
1000
700
300
0

Citations

1434

Documents

50

h-index

19

Citations

Documents

h-index

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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

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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

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Samia Khnissi | Nanotechnology | Women Researcher Award

Assoc. Prof. Dr. Samia Khnissi | Nanotechnology | Women Researcher Award

Researcher | university of Carthage | Tunisia

Assoc. Prof. Dr. Samia Khnissi, affiliated with the University of Carthage and the Institut National de la Recherche Agronomique de Tunisie (INRAT), Tunisia, is a distinguished researcher specializing in animal genetics, molecular biology, and agricultural biotechnology. With a strong academic background and commitment to advancing genetic research in livestock, Dr. Khnissi has made valuable contributions to the understanding of genetic diversity, disease resistance, and molecular breeding strategies in small ruminants. Her work integrates advanced genomic tools to identify and characterize gene polymorphisms that influence productivity, adaptability, and disease resilience in animal populations. She has authored 11 research documents, accumulated 28 citations from 27 international publications, and holds an h-index of 3, reflecting the growing scientific influence and recognition of her work in the global research community. Her recent publication titled “Identification and characterization of novel PRNP haplotypes in the Assaf sheep breed from Palestine” in Small Ruminant Research (2025) exemplifies her expertise in molecular genetics and prion protein gene (PRNP) analysis, contributing to the understanding of genetic mechanisms underlying scrapie resistance in sheep. Dr. Khnissi’s research interests include molecular genetics, livestock genomics, biodiversity conservation, and sustainable breeding programs, emphasizing innovation for animal health improvement and agricultural sustainability. Her research skills encompass DNA extraction, PCR amplification, gene sequencing, haplotype mapping, bioinformatics analysis, and molecular marker-assisted selection. Over the years, she has received multiple academic recognitions and honors for her scholarly excellence and active participation in international research collaborations. Through her scientific leadership, Dr. Khnissi continues to promote genetic improvement and sustainable livestock management, aligning with global goals of food security and environmental resilience. Her dedication to research, education, and innovation establishes her as a leading figure in agricultural biotechnology and animal genetic research, contributing profoundly to the advancement of Tunisia’s scientific and agricultural development.

Profiles: Scopus | ORCID

Featured Publications

  1. Halaweh, W., Khnissi, S., Bensouf, I., Bejaoui, B., Chalouati, H., Salman, M., & M’Hamdi, N. (2025). Impact of semen extenders, storage duration, and insemination timing on semen quality and reproductive performance in Palestinian Assaf sheep. Veterinary World, 18(4), 808–818. DOI: 10.14202/vetworld.2025.808-818.
    Citations: 1 h-index: 3

  2. Khnissi, S., Ben Salem, I., Bejaoui, B., Fattouch, S., Ben Mustapha, S., Haj-Kacem, R., M’Hamdi, N., Martin, P., & Dattena, M. (2025). Antioxidant capacity of Thyme (Thymus vulgaris) essential oil and its effect on in vivo fertility of rams subjected to testicle heat stress. Journal of Animal Physiology and Animal Nutrition, 109(2), 437-448. DOI: 10.1111/jpn.14063.
    Citations: 3 h-index: 3

  3. Khnissi, S., Bomboi, G., Khémiri, I., Ben Salem, I., Dattena, M., Sai, S., Ben Mustapha, S., Cabiddu, A., & Lassoued, N. (2023). Incorporation of fresh leaves of wormwood (Artemisia herba alba) and/or rosemary (Rosmarinus officinalis) in the diet of rams: Effect on testicular function, sexual behavior, and blood parameters. Food Science & Nutrition, 11(6), 3121-3130. DOI: 10.1002/fsn3.3293.
    Citations: 5 h-index: 3

Assoc. Prof. Dr. Samia Khnissi’s pioneering research in animal genetics and molecular biotechnology advances sustainable livestock production, enhances disease resistance, and supports global food security. Her innovative genomic studies contribute to agricultural resilience and the development of healthier, more productive animal breeds, bridging science and sustainable societal growth.