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Muhammad Arsalan

Postdoc Fellow/Researcher · Qatar University

https://researchid.co/muhammadarsalan
@qu.edu.qa
29Scopus Publications
1031Google Scholar Citations
19Google Scholar h-index
24Google Scholar i10-index

Biography

Dr. Muhammad Arsalan earned his M.Phil. from the University of Engineering and Technology and his PhD from Northwest University's School of Chemistry and Materials Science. He completed his first postdoc at Henan University of Technology and his second postdoc at Qatar University. Dr. Arsalan publishes more than 40 research articles and books in international journals. His H-index is 15, and his i10 index is 20. He is Top 2% scientist according To Stanford University list. His research focuses on electrochemical CO2 reduction, nanomaterial preparation for electrocatalytic water splitting, water remediation, electrochemical sensing, and so on. He has more than 14 years of research experience. He is a lecturer at Govt College Gulberg, Lahore, and later works as an assistant professor at UMT, Lahore. He is now a postdoctoral researcher at Qatar University.

Education

PhD in Anbnalytical Chemistry from Northwest University, 1st Postdoc from Henan Univesity of Technology and 2nd Postdoc from Qatar University.

Recent Scopus Publications

  1. Electrochemical CO2 reduction: The role of catholyte-anolyte interactions in formate/formic acid production
    Surfaces and Interfaces, 2025
  2. PbBiNi alloy catalyst for electrochemical reduction of CO2: Performance evaluation for formic acid production
    Journal of Alloys and Compounds, 2025
  3. Enhanced activity of electrodeposited WO3 thin films as bi-functional electrocatalysts for water splitting
    Results in Engineering, 2024
  4. Enhanced OER performance by varying Al-WO3 electrocatalyst thickness: Process optimization
    Results in Engineering, 2024
  5. Construction of cellulose nanofiber-Ti3C2Tx MXene/silver nanowire nanocomposite papers with gradient structure for efficient electromagnetic interference shielding
    Advanced Composites and Hybrid Materials, 2024

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