Zeinelabedin Mohamed | Materialis Engineering | Best Researcher Award

Best Researcher Award

Zeinelabedin Mohamed
Affiliation Military University of Technology
Country Poland
Scopus ID 57473945000
Documents 9
Citations 46
h-index 5
Subject Area Materialis Engineering
Event Research Data Analysis Awards
ORCID 0000-0001-6050-0961

Zeinelabedin Mohamed
Military University of Technology

Zeinelabedin Mohamed is a researcher affiliated with the Military University of Technology in Poland, where his scholarly activities focus on materials engineering and related technological applications. His publication record, citation performance, and documented research outputs demonstrate active participation in advancing engineering knowledge through experimental and analytical investigations.[1]

Abstract

This article summarizes the academic profile of Zeinelabedin Mohamed, highlighting measurable research indicators, scholarly publications, and contributions within materials engineering. The profile reflects documented research productivity and recognized academic engagement supported by indexed publications and citation records.[1]

Keywords

Materials Engineering, Advanced Materials, Mechanical Engineering, Surface Engineering, Structural Materials, Scientific Research, Scopus Author, Engineering Innovation.

Introduction

Materials engineering supports innovation across aerospace, defense, manufacturing, and infrastructure by improving material performance and reliability. Researchers in this discipline combine experimentation with engineering analysis to develop practical scientific solutions that contribute to technological progress.[2]

Research Profile

According to indexed author information, Zeinelabedin Mohamed has published nine Scopus-indexed documents, received forty-six citations, and achieved an h-index of five. These indicators demonstrate sustained participation in peer-reviewed engineering research and scientific dissemination.[1]

Research Contributions

His investigations emphasize material characterization techniques that improve understanding of structural behavior under different operational conditions. These studies provide data supporting engineering design decisions and laboratory validation.The published research also explores engineering applications involving material performance, durability, and optimization. Such work contributes to evidence-based approaches for improving reliability in advanced engineering systems.

Publications

The research portfolio includes peer-reviewed journal publications indexed by Scopus that address topics in materials engineering and related technologies. Published articles contribute to scientific literature through experimental findings, analytical methodologies, and engineering evaluations.[3]

Research Impact

Citation metrics indicate that the published work has received scholarly attention within the engineering community. The combination of publications, citations, and an established h-index reflects measurable academic visibility and continued research engagement.[1]

Award Suitability

The documented publication record, citation performance, and participation in engineering research demonstrate qualifications commonly considered during academic recognition programs. Evaluation may include originality, publication quality, scientific impact, and continued contribution to the research community.[4]

Conclusion

Zeinelabedin Mohamed maintains an active academic profile in materials engineering supported by indexed publications and recognized citation metrics. His documented scholarly output represents continued engagement in engineering research and scientific communication within the international academic community.[5]

References

  1. Elsevier. (n.d.). Scopus author details: Zeinelabedin Mohamed, Author ID 57473945000.
    https://www.scopus.com/authid/detail.uri?authorId=57473945000
  2. Mohamed, Z. A., & Norek, M. (2026). One-dimensional photonic crystal mirror heterostructure for ultra-high-Q optical refractive index sensing. Sensing and Imaging, 27(1), 64.
  3. Mohamed, Z. A., & Norek, M. (2026). Simulation study on optimizing spectral selectivity of thick PAA/Al bilayers for passive daytime radiative cooling. Solar Energy Materials and Solar Cells, 306, 114556.
    http://link.springer.com/article/10.1007/s11220-026-00766-y
  4. ORCID. Researcher Profile.
    https://orcid.org/0000-0001-6050-0961
  5. Mohamed, Z. A. (2026). Design and investigation of a plasmonic metamaterial terahertz sensor for refractive index sensing. Optical and Quantum Electronics, 58(5), 188.
    https://link.springer.com/article/10.1007/s11082-026-08744-0

Muhammad Shahriar Bashar | Material science | Best Researcher Award

Dr. Muhammad Shahriar Bashar, Material science, Best Researcher Award

Doctorate at Bangladesh Council of Scientific and Industrial Research, Bangladesh

Professional Profile

Scopus Profile
Orcid Profile
Summary

Dr. Muhammad Shahriar Bashar is a distinguished Principal Scientific Officer at the Institute of Fuel Research and Development (IERD) within the Bangladesh Council of Scientific and Industrial Research (BCSIR). With over 18 years of expertise in Energy-Nanotechnology and Semiconductor Fabrication, he spearheads the establishment of Bangladesh’s first Thin-film Semiconductor Fabrication Research Laboratory. His pioneering work includes optimizing metal sulfide and oxide thin-film semiconductors, advancing solar cell technologies, and developing energy-efficient devices. Dr. Bashar’s contributions extend to policy formulation in renewable energy and supervising numerous research theses. His accolades include Bangladesh’s first CdTe-based solar cell and innovations in biomass energy, reflecting his commitment to sustainable development and technological advancement.

Education

  • Ph.D.: Department of Physics, Jahangirnagar University, 2022
  • M.Sc.: Applied Physics & Electronics, University of Dhaka, 1999 (First Class)
  • B.Sc. (Honors): Applied Physics & Electronics, University of Dhaka, 1998 (First Class)
  • Higher Secondary School Certificate: Government Science College, Dhaka Board, 1995 (First Division)
  • Secondary School Certificate: Motijheel Model High School, Dhaka Board, 1993 (First Division)

Professional Experience

  • Principal Scientific Officer: Bangladesh Council of Scientific and Industrial Research (BCSIR), since December 19, 2019
  • Senior Scientific Officer: BCSIR, August 04, 2011 – December 19, 2019
  • Scientific Officer: BCSIR, June 15, 2006 – August 03, 2011
  • Scientific Officer: Bangladesh Institute of Nuclear Agriculture (BINA), July 20, 2004 – June 14, 2006

Current Research Focus

Dr. Bashar is primarily engaged in pioneering research and development in the following areas:

  • Thin-film semiconductor fabrication
  • Renewable Energy Technologies
  • Solar cell fabrication
  • Energy auditing and sustainable energy management
  • Biogas digester design
  • Solar panel testing and optimization

Achievements and Contributions

Dr. Bashar has made significant contributions to the field of renewable energy and semiconductor technology, including:

  • Fabrication of 2nd and 3rd generation thin-film solar cells in Bangladesh
  • Development of highly efficient biomass-based cookstoves and biogas digesters
  • Establishment of the largest solar thermal plant and grid-connected photovoltaic power plants in Bangladesh
  • Design and development of various energy-saving devices and technologies

Skills

  • Thin-film semiconductor fabrication
  • Solar radiation measurement
  • Photovoltaics
  • Energy auditing and sustainable energy management
  • Analytical problem solving and simulation
  • Graphics design and troubleshooting

Awards and Recognitions

  • Research Award “Adamma Bangladesh” (2016) for the fabrication of CdTe based thin-film solar cells
  • Special Award from the Dean of the Faculty of Science, University of Dhaka (2001)

📖 Publication Top Noted

Article: Low energy synthesis of crystalline mesoporous aluminosilicate consisting of Na-P1 zeolite derived from coal fly ash

    • Authors: Quddus, M.S., Saha, M., Hasanuzzaman, M., Sharmin, N., Bashar, M.S.
    • Journal: Cleaner Materials
    • Volume: 12
    • Pages: 100247
    • Year: 2024

Article: Combined experimental and first principles look into (Ce, Mo) doped BiVO4

    • Authors: Mahi, T.A., Hossain, Q.S., Nishat, S.S., Irfan, A., Ahmed, I.
    • Journal: Heliyon
    • Volume: 10
    • Issue: 8
    • Pages: e29408
    • Year: 2024

Article: Amplification of photocatalytic degradation of antibiotics (amoxicillin, ciprofloxacin) by sodium doping in nano-crystallite hydroxyapatite

    • Authors: Tarannum, S., Sahadat Hossain, M., Bashar, M.S., Bahadur, N.M., Ahmed, S.
    • Journal: RSC Advances
    • Volume: 14
    • Issue: 18
    • Pages: 12386–12396
    • Year: 2024

Article: Enhancing perovskite solar cell performance: Investigating the impact of post-annealing on the optoelectrical and structural properties of RF-sputtered NiO films via SCAPS-1D device modeling

    • Authors: Abdur, R., Choudhury, S., Bashar, M.S., Hossain, M., Shah Jamal, M.
    • Journal: Solar Energy
    • Volume: 271
    • Pages: 112443
    • Year: 2024