Dr. Mohammed Muzibur Rahman, King Abdulaziz University, Saudi Arabia.
Dr. Mohammed Muzibur Rahman is a renowned professor at King Abdulaziz University, Saudi Arabia, with expertise in electrochemistry, nanotechnology, and chemical sensorsΒ
. He has authored over 599 research articles, 12 patents, 23 books, and 44 book chaptersΒ
. His work has earned him global recognition, including placement in the top 2% of scientists globally from 2017 to 2024Β
. Dr. Rahmanβs contributions to chemistry and materials science have made a significant impact on the academic community, with a citation h-index of 77 and over 24,750 Google Scholar citations.Β 
Publication profile
Orcid
Scopus
Education:
- Ph.D.Β in Chemistry, Chonbuk National University, South Korea (2007)Β

- M.Sc.Β in Physical Chemistry, Shahjalal University of Science & Technology, Bangladesh (2002)Β

- B.Sc.Β in Chemistry, Shahjalal University of Science & Technology, Bangladesh (1999)Β

Experience:
- Professor, King Abdulaziz University (Since 2019)Β

- Associate Professor, King Abdulaziz University (2014-2019)Β

- Assistant Professor, King Abdulaziz University (2011-2014)Β

- Post-doctoral Fellow, Toyohashi University of Technology, Japan (2008-2009)Β

- Post-doctoral Fellow, Pusan National University, South Korea (2007-2008)Β

Suitability for The Award
Dr. Mohammed Muzibur Rahman is an exemplary candidate for the Best Researcher Award, demonstrating significant contributions to the fields of chemistry, electrochemistry, and nanotechnology throughout his academic and professional career. His credentials and accomplishments provide compelling evidence of his suitability for this recognition.
Professional Development (
)
Dr. Mohammed Muzibur Rahman, a distinguished professor at King Abdulaziz University, has made remarkable strides in the field of electrochemistry and
nanotechnology. Since 2019, he has led groundbreaking research at the Center of Excellence for Advanced Materials Research (CEAMR), excelling in electrochemical sensors, nanomaterials, and environmental science. With a Ph.D. from Chonbuk National University, South Korea, and postdoctoral fellowships in Japan and South Korea, Dr. Rahman has supervised over 21 Ph.D. students and authored 599 research papers. His expertise in biosensors and conducting polymers has earned him global recognition, solidifying his reputation in the scientific community.Β



Research FocusΒ 

Dr. Mohammed Muzibur Rahmanβs research spans diverse fields, with a strong emphasis on electrochemistry, nanotechnology, and biosensors. He specializes in developing electrochemical sensors for detecting cancer biomarkers and heavy metal ions, employing materials like carbon nanotubes, conducting polymers, and semiconductor materials. His work also explores green synthesis, environmental science, and the fabrication of micro-devices for advanced chemical sensing applications. With expertise in nanocomposites and ionic liquids, his research contributes to innovations in nanomaterials and sustainable technologies, making significant strides in chemical sensing, environmental protection, and advanced material science.Β 


Awards and Honors (
)
Β Top 2% Scientist-list (2018-2024 publication records)
Β BK21 Post-Doctoral Fellowship (Pusan National University, South Korea)
Β VBL Post-Doctoral Fellowship (Toyohashi University of Technology, Japan)
Β Best MS Student Award (Wahab Memorial Scholarship, London, UK)
Β Recognized among the Top 2% scientists globally based on career-long and single-year research impact
Β Multiple research awards for high-impact publications in leading journals
PublicationΒ
- A TiO2 grafted bamboo derivative nanocellulose polyvinylidene fluoride (PVDF) nanocomposite membrane for wastewater treatment by a photocatalytic processΒ βΒ Materials Advances, 2024, DOI: 10.1039/D4MA00716F, cited by 16Β


- Architectural design and affecting factors of MXene-based textronics for real-world applicationΒ βΒ RSC Advances, 2024, DOI: 10.1039/D4RA01820F, cited by 12Β


- Development of an efficient electrochemical sensing platform based on ter-poly(luminol-o-anisidine-o-toluidine)/ZnO/GNPs nanocomposites for the detection of antimony (Sb3+) ionsΒ βΒ Analytical Methods, 2024, DOI: 10.1039/D4AY00472H, cited by 18Β


- Enhancing the water splitting performance of a reduced graphene oxideβplatinum nanoparticle hybrid using an intercalating ethylenediamine polar space groupΒ βΒ Journal of Materials Chemistry C, 2024, DOI: 10.1039/D4TC00978A, cited by 22Β


- Recent advances in synergistic use of GQD-based hydrogels for bioimaging and drug delivery in cancer treatmentΒ βΒ Journal of Materials Chemistry B, 2024, DOI: 10.1039/D4TB00024B, cited by 24Β


- Sensitive Cr3+ sensor based on novel poly(luminol-co-1,8-diaminonaphthalene)/CeO2/MWCNTs nanocompositesΒ βΒ RSC Advances, 2024, DOI: 10.1039/D4RA00542B, cited by 10Β


- Binary Y/Fe-modified multiwall carbon nanotube composite for sensitive detection of nitriteΒ βΒ Materials Chemistry and Physics, 2024, DOI: 10.1016/j.matchemphys.2024.130000, cited by 8Β


- Efficient 2-Nitrophenol determination based on ultra-sonochemically prepared low-dimensional Au-nanoparticles decorated ZnO-chitosan nanocomposites by linear sweep voltammetryΒ βΒ Journal of Science: Advanced Materials and Devices, 2024, DOI: 10.1016/j.jsamd.2024.100727, cited by 14Β

