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Dr.Muhammad Aadil
  • Dr.Muhammad Aadil

  • Assistant Professor
    PHD (Chemistry)
  • Muhammad.aadil@iub.edu.pk
  • 03009104182

Profile Summary

Dr. Muhammad Aadil

Assistant Professor of Chemistry

The Islamia University of Bahawalpur (RYK-Campus)

Punjab, Pakistan.

Dr. Muhammad Aadil is an Assistant Professor of Chemistry at The Islamia University of Bahawalpur (RYK-Campus), where they have been a faculty member since July 22, 2022. With a research background in physical chemistry (nanomaterials), Dr. Aadil has contributed extensively to the field through both teaching and groundbreaking research.

 Dr. Aadil completed his Ph.D. in Physical Chemistry from The Islamia University of Bahawalpur in 2021, focusing on nanomaterials for energy storage. Since joining, The Islamia University of Bahawalpur (RYK-Campus) has developed a diverse research program that bridges the gap between theoretical and applied chemistry, particularly in the areas of nanomaterials for environmental remediation.

As an active researcher, Dr. Aadil has published over 80 peer-reviewed articles in leading scientific journals such as Fuel, Electrochimica Acta, Journal of Molecular Liquids, Journal of Alloys and Compounds, Ceramics International, FlatChem, Electro-analytical Chemistry, Surfaces and Interfaces, RSC Advances, etc. His work has focused on the development of new materials for energy storage, the application of green chemistry in industrial processes, or environmental remediation. Dr. Aadil has also collaborated with numerous international researchers, contributing to the global body of knowledge in chemistry.

In addition to their research, Dr. Aadil is passionate about teaching and mentoring students. He has supervised 15+ post-graduate students, many of whom have gone on to pursue successful careers in academia and industry. Dr. Aadil has taught a range of courses, from introductory chemistry to advanced topics in quantum mechanics, solid-state chemistry, symmetry and group theory, polymers, and composite materials, and is known for their innovative approach to incorporating research into the classroom.

Dr. Aadil has received several prestigious awards throughout their career, including being among the world's top 2% of scientists in 2022, 2023, and 2024 (Stanford University, USA). His H-index is 50+, citations are over 5000, and I.F is above 300.

 

Qualifications

DegreeBoard/UniversityYear of Passing
PHD (Chemistry)The Islamia University of Bahawalpur (IUB)2021-01-04

Experience

SSTGovt.High School Lodhran5 Years 11 Months 27 Days
LecturerGovt.College Makhdoom Aali4 Years 4 Months 1 Days
Assistant Professor The Islamia University of Bahawalpur (RYK-Campus)July, 2022 - Present

Publications

Fabrication of nickel foam supported Cu-doped Co3O4 nanostructures for electrochemical energy storage applications
Superior electrochemical activity of ?-Fe2O3/rGO nanocomposite for advance energy storage devices
Direct decoration of Co3O4/r-GO nanocomposite on nickel foam for electrochemical energy storage applications
Fabrication of graphene supported binary nanohybrid with multiple approaches for electrochemical energy storage applications
Enhanced electrochemical energy storage properties of carbon coated Co3O4 nanoparticles-reduced graphene oxide ternary nano-hybrids
Binder free mesoporous Ag-doped Co3O4 nanosheets with outstanding cyclic stability and rate capability for advanced supercapacitor applications
Free-standing urchin-like nanoarchitectures of Co3O4 for advanced energy storage applications,
Mesoporous and macroporous Ag-doped Co3O4 nanosheets and their superior photo-catalytic properties under solar light irradiation
Facile synthesis of binary metal substituted copper oxide as a solar light driven photocatalyst and antibacterial substitute
Fabrication of rationally designed CNTs supported binary nanohybrid with multiple approaches to boost electrochemical performance
Fabrication of CNTs Supported Binary Nanocomposite with Multiple Strategies to Boost Electrochemical Activities
Fabrication of MnO2 Nanowires and Their Nanohybrid with Flat Conductive Matrix for the Treatment of Industrial Effluents
Synergistic effect of doping and nanotechnology to fabricate highly efficient photocatalyst for environmental remediation
Generation of mesoporous n-p-n (ZnO–CuO–CeO2) heterojunction for highly efficient photodegradation of micro-organic pollutants

Projects

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