Yaseen Iqbal | Materials Engineering | Best Researcher Award

 

Best Researcher Award

      Researcher Information
Researcher Yaseen Iqbal
Affiliation University of Peshawar
Country Pakistan
Scopus ID 7004034865
Citations 3,684
Documents 142
h-index 33
Subject Area Materials Engineering
Event International Molecular Biologist Awards
ORCID 0000-0002-6577-3632
Google Scholar ID vWrq99wAAAAJ

Yaseen Iqbal

University of Peshawar, Pakistan

Yaseen Iqbal, whose work in Materials Engineering demonstrates consistent publication activity, international research visibility, and measurable citation performance. The profile presented here follows a neutral academic style and is based on publicly available scholarly information. The Best Researcher Award recognizes sustained scholarly excellence, measurable research impact, and meaningful scientific contributions within a specialized discipline.[1]

Abstract

Yaseen Iqbal has established a research profile characterized by scholarly publications, citation influence, and interdisciplinary collaboration in materials engineering. His scientific activities include research on advanced materials, functional nanomaterials, and engineering applications that contribute to the advancement of modern materials science. Citation metrics and publication records indicate sustained academic productivity and international visibility.[1][2]

Keywords

Materials Engineering, Advanced Materials, Nanomaterials, Scientific Research, Scholarly Publications, Citation Impact, Engineering Science, Research Excellence.

Introduction

Academic recognition is commonly based on publication quality, research impact, scientific collaboration, and contribution to knowledge generation. Bibliometric indicators such as citation counts and the h-index provide standardized measures for evaluating research performance alongside qualitative scientific achievements.[3]

Research Profile

  • Affiliated with the University of Peshawar.
  • Research specialization in Materials Engineering.
  • 142 indexed scholarly publications.
  • 3,684 citations with an h-index of 33.
  • Active contributor to international engineering research.

Research Contributions

The research contributions of Yaseen Iqbal encompass the development, characterization, and application of advanced engineering materials. His publications address functional materials, nanotechnology, and materials processing while supporting innovation in industrial and scientific applications. Collaborative research has contributed to the dissemination of engineering knowledge through internationally recognized journals.[2][4]

Publications

  • More than 140 peer-reviewed publications indexed in international databases.
  • Research articles focusing on advanced materials and engineering technologies.
  • Publications receiving consistent scholarly citations across multiple disciplines.

Research Impact

Bibliometric indicators demonstrate sustained scholarly influence through citations, publication output, and collaborative research. These indicators are frequently used by universities, funding agencies, and academic organizations as complementary evidence of research excellence.[1][5]

Award Suitability

Based on publicly available scholarly metrics, publication history, citation performance, and contributions to materials engineering, Yaseen Iqbal demonstrates characteristics generally associated with academic award evaluation. Recognition through the International Molecular Biologist Awards would acknowledge sustained scientific productivity while complementing broader assessments performed by independent review committees.[3]

Conclusion

Yaseen Iqbal’s academic profile reflects continued contributions to materials engineering through research publications, scholarly collaboration, and measurable scientific impact. Bibliometric indicators and publication records provide evidence of sustained research activity while supporting consideration for professional academic recognition within international award programs.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Yaseen Iqbal, Author ID 7004034865. Scopus.
    https://www.scopus.com/pages/search/authors?firstName=Yaseen&lastName=Iqbal
  2. Google Scholar. (n.d.). Scholar profile of Yaseen Iqbal.
    https://scholar.google.com/citations?user=vWrq99wAAAAJ&hl=en&oi=ao
  3. Orcid. (n.d.). Orcid profile of Yaseen Iqbal.
    https://doi.org/10.1073/pnas.0507655102
  4. Crossref. (n.d.). Digital Object Identifier (DOI) Registry.
    https://doi.org/
  5. International Molecular Biologist Awards. (n.d.). Official Award Website.
    https://molecularbiologist.org/

Aida ZAABTIA | Chemistry | Editorial Board Member

Dr. Aida ZAABTIA | Chemistry | Editorial Board Member

Dr. Aida ZAABTIA  | University of Gabes Faculty of Sciences of Gabes | Tunisia

Dr. Aida Zaabtia is an emerging researcher affiliated with the Université de Gabès in Gabes, Tunisia, with a developing academic footprint in environmental and electrochemical engineering. Her work focuses primarily on advanced wastewater treatment technologies, with particular expertise in coagulation–flocculation and electro-Fenton processes. With two published documents and three citations recorded in Scopus, she has contributed to improving sustainable methodologies for treating challenging industrial effluents such as olive mill wastewater—a major environmental concern in Mediterranean regions. Her recent publication in the Journal of Applied Electrochemistry highlights her use of experimental design methodologies to optimize treatment efficiency, demonstrating a strong commitment to data-driven environmental solutions. Although early in her career, her research interests span water purification, electrochemical processes, and environmental sustainability. Her collaborative work with co-authors reflects her active participation in interdisciplinary research aimed at addressing regional and global environmental challenges.

Profile: Scopus | ORCID

Featured Publications

Zaabtia, A., Ba, M., & Ammar, S. Treatment of olive mill wastewater by coagulation–flocculation and electro-Fenton processes: application of the experimental design methodology. Journal of Applied Electrochemistry.

Zaabtia, A., Ba, M., Ben Amara, M., & Ammar, S. Application of a Box-Behnken design to the optimization of margin processing conditions by the electro-Fenton process on different anodes using solar energy. Journal of Power Sources.