Fazal Kabir | Nanotechnology Innovations | Best Researcher Award

Global Scientist Day Awards

Fazal Kabir
Qilu Institute of Technology
Fazal Kabir
Affiliation Qilu Institute of Technology
Country China
Scopus ID 60720335800
Documents 1
Subject Area Nanotechnology Innovations
Event Global Scientist Day Awards

The Global Scientist Day Awards recognizes researchers whose scholarly work contributes to the advancement of science, technology, and innovation across diverse disciplines. Fazal Kabir, affiliated with Qilu Institute of Technology, has established an emerging academic profile within the field of Nanotechnology Innovations. Through scholarly publication and participation in scientific research, the researcher demonstrates an ongoing commitment to advancing knowledge in nanotechnology and related interdisciplinary domains. The available academic profile provides evidence of research activity documented through internationally recognized indexing services, supporting academic visibility and encouraging future scientific contributions.[1]

Abstract

Fazal Kabir is associated with Qilu Institute of Technology and contributes to research within the rapidly developing discipline of nanotechnology. Academic indexing through Scopus reflects participation in internationally recognized scientific publishing and provides an objective measure of scholarly activity. Research in nanotechnology supports innovation across engineering, materials science, healthcare, energy systems, and environmental applications.[1][2]

Introduction

Nanotechnology continues to transform multiple scientific disciplines by enabling the manipulation of materials at molecular and atomic scales. Research in this area contributes to advances in electronics, biomedical engineering, sustainable energy, environmental monitoring, and industrial manufacturing. Researchers working in nanotechnology help establish innovative approaches that improve performance, efficiency, and sustainability while expanding scientific understanding.[1]

Research Profile

Fazal Kabir is affiliated with Qilu Institute of Technology in China and has an indexed Scopus Author ID of 60720335800. The available Scopus record indicates one indexed scholarly document within the field of nanotechnology innovations. Although the publication portfolio remains in an early stage, inclusion within an internationally recognized citation database demonstrates participation in peer-reviewed scientific communication and contributes to the global exchange of research knowledge. [1]

Research Contributions

Research within nanotechnology frequently addresses the design, synthesis, characterization, and application of nanoscale materials capable of improving technological performance across numerous sectors. Even at an early stage of publication, scholarly participation contributes to cumulative scientific knowledge by supporting reproducibility, collaborative investigation, and future innovation. Academic dissemination through indexed journals enhances transparency and promotes international research accessibility.[2]

Research Impact

The scientific impact of emerging researchers extends beyond publication counts by fostering collaboration, introducing innovative methodologies, and expanding opportunities for interdisciplinary investigation. Early-career research provides valuable contributions that may support future advances in nanotechnology and its practical applications. Continued publication, international collaboration, and citation growth are expected to enhance academic influence while supporting technological innovation and scientific progress.[1][2]

Award Suitability

Based on the available academic profile, Fazal Kabir demonstrates active participation in internationally indexed scientific research and contributes to the expanding field of nanotechnology innovations. The research profile reflects engagement with peer-reviewed scholarly communication and illustrates commitment to scientific advancement through academic publication.[1]

Conclusion

Fazal Kabir represents an emerging researcher whose academic activities contribute to the advancement of nanotechnology research. Affiliation with Qilu Institute of Technology and inclusion within the Scopus database provide evidence of scholarly engagement and international academic visibility. Continued research productivity, publication, and collaboration have the potential to strengthen future scientific impact.[1]

References

  1. Elsevier (2026). Scopus author details: Fazal Kabir, Author ID 60720335800. Scopus.
    https://www.scopus.com/pages/authors/60720335800
  2. Exploring gadolinium-doped BaSrCa and Al-based ferrite nanoparticles for structural, mechanical, magnetic and radiation shielding applications.
    https://doi.org/10.1038/nnano.2015.79
  3. Global Scientist Day Awards (2026). Official Award Website.

    Global Scientist Day Awards


Zhixue Tian | Material Science | Best Researcher Award

Dr. Zhixue Tian | Material Science | Best Researcher Award

Dr. Zhixue Tian | Hebei Normal University | China

Dr. Zhixue Tian is an Associate Professor at the College of Physics and Information Engineering, Hebei Normal University, China. His research centers on first-principles calculations of material surfaces and interfaces, with a strong focus on understanding catalytic mechanisms, segregation behavior, and electronic and magnetic properties in complex systems. He earned his Ph.D. in Materials Physics and Chemistry from the University of Science and Technology Beijing, where he studied grain boundary embrittlement in metals using first-principles methods. He later conducted advanced research at Osaka University and Kyoto University in Japan under the guidance of Prof. Yoshitada Morikawa, investigating the segregation behavior of precious metals at perovskite surfaces. Dr. Tian has contributed extensively to computational materials science, employing methods such as Density Functional Theory with codes like VASP, STATE, QuantumEspresso, WIEN2K, and CASTEP. His studies have advanced understanding in fields such as surface chemistry, heterostructure interfaces, and catalytic processes, with numerous publications in high-impact journals including Applied Surface Science, Physical Chemistry Chemical Physics, Nano Letters, and ACS Applied Materials & Interfaces. In addition to his research, he teaches Solid State Physics and is proficient in Unix and Windows systems as well as FORTRAN programming, bringing both theoretical and computational expertise to his academic and scientific endeavors.

Profile: Orcid

Featured Publications

 

Muhammad Sarfraz | Material Science | Best Researcher Award

Assoc. Prof. Dr. Muhammad Sarfraz | Material Science | Best Researcher Award

Assoc. Prof. Dr. Muhammad Sarfraz | University of Engeineering and Technology | Pakistan

Dr. Muhammad Sarfraz, PhD, is an accomplished Associate Professor in the Department of Polymer and Process Engineering at the University of Engineering and Technology (UET), Lahore. He brings extensive expertise in membrane technology, polymer processing, and sustainable separation systems, with a strong focus on solutions addressing global challenges such as carbon capture, water purification, and energy-efficient processes. With academic training spanning B.Sc., M.Sc., and Ph.D. in Chemical and Polymer Engineering—including doctoral research at King Fahd University of Petroleum and Minerals (KSA)—Dr. Sarfraz has built a prolific research portfolio. His scholarly impact is reflected in 155 citations across 126 documents, 22 publications, and an h-index of 8. His contributions include high-impact publications, competitive national research grants, and the supervision of multiple postgraduate theses, alongside significant efforts in laboratory establishment and curriculum development at UET. As In-charge of the Membrane Research Lab at UET, he continues to drive innovation in advanced materials and separation technologies. Beyond research, Dr. Sarfraz plays an active role in the global scientific community as a reviewer, editorial board member, and academic council contributor, making him a recognized leader in his field.

Profile: Scopus | Google Scholar |  Orcid

Featured Publications

Shahzadi, K., Sarfraz, M., Alomar, M., Al Huwayz, M., Riaz, A., Mujtaba, M. A., Bashir, M. N., & Petrů, J. (2025, November). Zn-Co nanoferrites incorporated polysulfone nanofiltration membranes for wastewater treatment. Polymer Testing, 126, 108993.

Nawaz, S., Sarfraz, M., Alomar, M., Al Huwayz, M., & AlMohamadi, H. (2025, August). Antifouling polyethersulfone-based interfacial polymerization membranes for water treatment applications. Journal of Polymer Research, 32, 4528.

Riaz, A., Wu, C., Li, X., Sarfraz, M., Sun, L., Liu, L., Song, Y., & Ma, X. (2025, June). Huge improved gas separation performance of carbon molecular sieve membranes by incorporating polyimide COF into a linear polyimide precursor. Journal of Membrane Science, 714, 124103.

Sabir, A., Alomar, M., Sarfraz, M., & Yasmeen, F. (2025, June 15). Modulating membrane performance by optimizing coagulation temperature and dipping time. Journal of Applied Polymer Science, 142, e56998.

Khan, H. A. A., Sarfraz, M., Gouadria, S., Al-Harbi, F. F., & Shahzadi, K. (2025, May 15). Enhancing carbon capture efficacy of titania-doped polyethersulfone membranes. Arabian Journal for Science and Engineering, 50, 10263.

Alomar, M., Nawaz, S., Sarfraz, M., & Sabir, A. (2025, March). Genipin nanoparticles-doped reduced graphene oxide membranes: A promising solution for arsenic ion removal from wastewater. Arabian Journal for Science and Engineering, 50, 9634.

Sarfraz, M., Alomar, M., Ma, X., & Riaz, A. (2024). Ameliorating carbon capture efficiency of polysulfone membranes via collegial incorporation of zeolite imidazole frameworks and carbon nanotubes. Journal of Applied Polymer Science, 141, e55707.

Tahir, Z., Alomar, M., Sarfraz, M., Waheed, A., & Ayub, H. M. U. (2024). Carbon capturing composite membranes comprising Cu-MOF and PIM-1. Journal of Applied Polymer Science, 141, e55709.

Sagar, S., Riaz, A., Hasanain, B., Bahadar, A., & Sarfraz, M. (2024). Deportment tuning of polymeric gas separation membranes: ZIF-L/PES nanocomposite. Arabian Journal for Science and Engineering, 49, 8522.

Sarfraz, M., Ayyaz, M., Rauf, A., Yaqoob, A., Ali, M. A., Siddique, S. A., Qureshi, A. M., Sarfraz, M. H., Aljowaie, R. M., & Almutairi, S. M. (2024). New pyrimidinone bearing aminomethylenes and Schiff bases as potent antioxidant, antibacterial, SARS-CoV-2, and COVID-19 main protease Mpro inhibitors: Design, synthesis, bioactivities, and computational studies. ACS Omega, 9(1), 9393–

Khalid, J., Tariq, Z., Sarfraz, M., Mahmoud, K. H., & Abid, N. (2024). Pilot scale trialing of multi-leaf spiral-wound polymer membrane modules for efficient carbon capture. Arabian Journal for Science and Engineering, 49, 8809.