Nida Muhammad | Nanotechnology | Innovative Research Award

Innovative Research Award

Nida Muhammad
University of Gujrat, Pakistan

Research Profile
Affiliation University of Gujrat
Country Pakistan
Scopus ID 59537007500
Documents 2
Citations 17
h-index 1
Subject Area Nanotechnology
Event Scientific World Research Awards
ORCID 0009-0008-8710-5628

The Innovative Research Award recognizes emerging scholarly excellence demonstrated through high-quality research, scientific publications, and measurable academic impact. This profile summarizes the research activities of Nida Muhammad, whose scholarly work in nanotechnology contributes to advancing interdisciplinary scientific knowledge and innovation.[1]

Abstract

Nida Muhammad has established an early academic profile within nanotechnology through peer-reviewed publications indexed in international scholarly databases. The available bibliometric indicators demonstrate initial research visibility and citation performance while indicating potential for continued scientific development. The Innovative Research Award acknowledges such emerging research excellence based on originality, publication quality, and measurable scholarly contribution.[1]

Keywords

  • Nanotechnology
  • Nanomaterials
  • Materials Science
  • Scientific Innovation
  • Research Excellence
  • Academic Recognition
  • Scientific Publications
  • Emerging Researcher

Introduction

Nanotechnology represents one of the most dynamic multidisciplinary scientific domains, integrating chemistry, physics, engineering, biology, and materials science to develop innovative nanoscale systems. Researchers in this field contribute to technological advancement through experimental investigation, novel material development, and interdisciplinary collaboration. Scholarly recognition programs provide opportunities to acknowledge researchers demonstrating promising academic achievements and research quality.[2]

Research Profile

According to the available bibliometric information, Nida Muhammad is affiliated with the University of Gujrat, Pakistan. The Scopus author profile reports two indexed publications with seventeen citations and an h-index of one. These metrics indicate an emerging publication record that has already received scholarly attention within the scientific community.[1]

Research Contributions

Research contributions in nanotechnology commonly involve the synthesis, characterization, and application of nanoscale materials for engineering, biomedical, environmental, and industrial applications. Through scholarly publication and scientific dissemination, emerging researchers contribute to expanding the knowledge base of nanoscience while supporting future technological innovations.[2]

  • Publication of peer-reviewed scientific research.
  • Contribution to nanotechnology knowledge.
  • Participation in interdisciplinary scientific advancement.
  • Development of an emerging international research profile.

Publications

The research portfolio currently includes publications indexed within the Scopus database. Publication quality, citation frequency, and database indexing provide internationally recognized indicators of scholarly productivity and research dissemination.[1]

Research Impact

Bibliometric indicators suggest that the published research has generated measurable academic influence through citations from subsequent scholarly works. Citation-based evaluation, although only one measure of impact, reflects scientific visibility and engagement within the broader research community.[1]

Award Suitability

Based on the available academic profile, publication record, citation performance, and participation in nanotechnology research, Nida Muhammad demonstrates characteristics consistent with consideration for the Innovative Research Award presented through the Scientific World Research Awards. Final award decisions remain subject to independent evaluation according to the official eligibility criteria and peer-review procedures.[3]

Conclusion

The available scholarly metrics indicate a developing academic career supported by peer-reviewed publications, measurable citation activity, and engagement in nanotechnology research. Continued publication, collaboration, and scientific innovation are expected to strengthen future research impact and international academic recognition.[2]

External Links

References

  1. Scopus Author Profile. Nida Muhammad. Available at:

    https://www.scopus.com/authid/detail.uri?authorId=59537007500
  2. Alternatives to conventional plastics: Polyhydroxyalkanoates (PHA) from microbial sources and recent approaches – A review

    https://www.sciencedirect.com/science/article/abs/pii/S0957582025000746?via%3Dihub
  3. Nanotechnology in Cardiology: A New Era of Targeted Therapies and Advanced

    https://www.sciencedirect.com/science/article/abs/pii/S0002914926001840

 

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

 

Lina Alnaddaf | Nanotechnology | Best Researcher Award

Assoc. Prof. Dr. Lina Alnaddaf | Nanotechnology | Best Researcher Award

Associate Professor | Homs University | Syria

Assoc. Prof. Dr. Lina M. Alnaddaf is an accomplished academic and researcher in the Department of Biotechnology and Molecular Biology at Homs University, Syria. With a strong foundation in plant molecular genetics and biotechnology, Dr. Alnaddaf has built a distinguished career dedicated to advancing sustainable agriculture and crop improvement through molecular and nanobiotechnological approaches. She earned her doctoral degree in Biotechnology and Molecular Biology, focusing on the genetic diversity and molecular breeding of major cereal crops such as wheat and Aegilops species, which are crucial for food security and genetic conservation. Over the years, Dr. Alnaddaf has served as an educator and researcher, mentoring students and leading innovative projects that integrate molecular breeding, genomics, and nanotechnology for improving plant tolerance to abiotic stresses. Her primary research interests include molecular breeding strategies, plant-derived nanomaterials, genetic variability, crop stress physiology, and the application of nanotechnology in agriculture. She possesses advanced research skills in DNA sequencing, molecular marker analysis, nanoparticle biosynthesis, and plant genetic transformation, reflecting her interdisciplinary expertise. Dr. Alnaddaf has authored numerous influential publications, including chapters in Springer Nature and Elsevier volumes, on topics such as nanomaterial interactions with plant cellular mechanisms, nanofertilizers, and green synthesis of nanoparticles. Her research achievements are recognized globally, earning her academic distinction and participation in international scientific collaborations. According to google Scholar, she has  accumulated 200 citations, and holds an h-index of 9, reflecting her consistent scholarly impact. Dr. Alnaddaf has been honored for her contributions to nanobiotechnology and molecular breeding, particularly in developing sustainable strategies for crop resilience and productivity. In conclusion, Assoc. Prof. Dr. Lina Alnaddaf exemplifies a forward-thinking scientist whose pioneering work at the intersection of molecular biology and nanotechnology continues to inspire advancements in modern agricultural biotechnology and sustainable food production.

Profiles: Scopus | ORCID | Google Scholar

Featured Publications

Abu-Ellail, F. F. B., Salem, K. F. M., Saleh, M. M., Alnaddaf, L. M., & Al-Khayri, J. M. (2021). Molecular breeding strategies of beetroot (Beta vulgaris ssp. vulgaris var. conditiva Alefeld). In Advances in Plant Breeding Strategies: Vegetable Crops, Volume 8: Bulbs. [Citations: 32]

Saleh, M. M., Alnaddaf, L. M., Almuhammady, A. K., Salem, K. F. M., & Alloosh, M. T. (2021). Applications of plant-derived nanomaterials in mitigation of crop abiotic stress. In Nanobiotechnology: Mitigation of Abiotic Stress in Plants (pp. 201–238). [Citations: 20]

Al-Khayri, J. M., Alnaddaf, L. M., & Jain, S. M. (2023). Nanomaterial interactions with plant cellular mechanisms and macromolecules and agricultural implications. Springer Nature. [Citations: 19]

Salem, K. F. M., Alloosh, M. T., Saleh, M. M., Alnaddaf, L. M., & Almuhammady, A. K. (2021). Utilization of nanofertilizers in crop tolerance to abiotic stress. In Nanobiotechnology: Mitigation of Abiotic Stress in Plants (pp. 261–289). [Citations: 18]

Alnaddaf, L. M., Almuhammady, A. K., Salem, K. F. M., Alloosh, M. T., & Saleh, M. M. (2021). Green synthesis of nanoparticles using different plant extracts and their characterizations. In Nanobiotechnology: Mitigation of Abiotic Stress in Plants (pp. 165–199). [Citations: 15]