Sanjay Kshirsagar | Nanotechnology | Innovative Research Award

Innovative Research Award

Sanjay Kshirsagar
Affiliation MET’s Institute of Pharamcy
Country India
Scopus ID 35113362600
Documents 135
Citations 1210
h-index 19
Subject Area Nanotechnology
Event Scientific World Research Awards
ORCID 0000-0002-7063-6640

Sanjay Kshirsagar

MET’s Institute of Pharamcy, India

Sanjay Kshirsagar is a researcher affiliated with MET’s Institute of Pharamcy, India, whose scholarly activities encompass nanotechnology and related interdisciplinary domains. His publication portfolio includes peer-reviewed articles, conference contributions, and collaborative research outputs indexed in international databases. According to available bibliometric indicators, his scientific record includes 135 documents, 1,210 citations, and an h-index of 19, reflecting sustained academic engagement and research productivity.[1]

Abstract

This article presents an overview of the academic profile and scientific contributions of Sanjay Kshirsagar in the field of nanotechnology. The assessment draws upon publicly available bibliometric indicators, publication records, and institutional affiliations. The research profile demonstrates participation in interdisciplinary investigations involving advanced materials, pharmaceutical sciences, and nanoscale technologies, contributing to the broader scientific literature.[1]

Keywords

Nanotechnology, pharmaceutical sciences, drug delivery systems, nanoscale materials, biomedical applications, research productivity, bibliometrics, interdisciplinary science.

Introduction

Nanotechnology has become an essential component of contemporary scientific research, integrating concepts from chemistry, medicine, engineering, and pharmaceutical sciences. Researchers working in this field contribute to innovations in diagnostics, therapeutics, and material design. The scholarly activities of Sanjay Kshirsagar align with these interdisciplinary developments and reflect ongoing engagement with emerging scientific challenges.[2]

Research Profile

The research profile of Sanjay Kshirsagar is characterized by publications indexed in international databases and collaborations across multiple scientific domains. Bibliometric records indicate 135 indexed documents with more than one thousand citations and an h-index of 19, demonstrating measurable scholarly influence within the scientific community.[1]

Research Contributions

The contributions associated with this research portfolio include investigations into nanoscale systems, pharmaceutical formulations, and translational applications relevant to healthcare technologies. Such studies frequently involve optimization of material properties, controlled drug delivery, and evaluation of biomedical performance metrics.[3]

Publications

Selected research themes represented in the publication record include nanomaterials, pharmaceutical technologies, and biomedical applications. Representative scientific references and digital identifiers are provided below.[2]

Research Impact

Research impact may be assessed through citation counts, publication visibility, and collaborative influence. The citation metrics associated with this profile indicate that the published work has received scholarly attention within relevant academic communities. Bibliometric indicators are commonly used to evaluate dissemination and scientific engagement.[1]

Award Suitability

The Innovative Research Award recognizes sustained scientific contributions, interdisciplinary collaboration, and measurable research output. Based on the documented publication record, citation metrics, and engagement in nanotechnology research, the profile demonstrates characteristics relevant to academic recognition programs such as the Scientific World Research Awards.[1]

Conclusion

Sanjay Kshirsagar’s scholarly profile reflects sustained participation in nanotechnology and related scientific fields. The combination of indexed publications, citation performance, and interdisciplinary engagement illustrates an active contribution to contemporary research and supports consideration for academic recognition initiatives.[1]

References

    1. Elsevier. (2026). Scopus author details: Sanjay Kshirsagar, Author ID 35113362600.
      Scopus.https://www.scopus.com/authid/detail.uri?authorId=35113362600
    2. Next Nanotechnology. (2026). Naringenin and quercetin nanoparticles as a dual strategy for topical management of diabetic retinopathy.
      https://doi.org/10.1016/j.nxnano.2025.100332
    3. Scientific World Research Awards. (2026). Innovative Research Award information and event details.
      https://scientificworld.net/

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.

View Scopus Profile  View ORCID Profile

Featured Publications

 

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.