About
Dr. Mohammad Shariq
Assistant Professor, Department of Physical Sciences
Jazan University, Jazan, Saudi Arabia
Dr. Mohammad Shariq is an Assistant Professor in the Department of Physical Sciences at Jazan University, located in Jazan, Saudi Arabia. His academic and research expertise lies in the interdisciplinary field of Materials Science, with a particular focus on Material Physics and Material Chemistry. Driven by a passion for advancing the understanding and application of materials, Dr. Shariq is keen on fostering collaborations and engaging with fellow researchers in this dynamic and evolving domain.
For academic inquiries, collaborative opportunities, or research discussions, Dr. Shariq can be reached via:
Email: [email protected]
Alternate Email: [email protected]
Employment
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Jazan University
Education
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Integral University PhD? - 2015
Projects & Funding
Projects & funding information is unavailable.
Publications (88)
- Bifunctional Co1.29Ni1.71O4@WO3 as electrocatalyst for efficient water splitting toward clean energy production Save
- Exploring magnetic, dielectric relaxation and magneto-dielectric coupling in monoclinic double perovskite Pr2NiMnO6 Save
- Review: advances in MOF-based composites for supercapacitor applications Save
- Boosting charge transfer and cycling durability via B, N co-doping in carbon dots for efficient energy storage Save
- Role of strain in tuning cation ordering and magnetism in epitaxial Pr2NiMnO6 double perovskites Save
- CuFe2O4 particles decorated on NiO nanosheets for high performance semi-solid supercapacitor Save
- Eco-friendly AuNPs@rGO nanocomposite as a peroxidase-mimic for cholesterol detection Save
- Novel Z-scheme La doped Er2O3/ZnBi2O4 nanocomposite for efficient removal of levofloxacin from wastewater by harvesting visible light and antibacterial applications Save
- Improved catalytic performance of (Fe, Cr)-ZnO/g-C3N4 nanocomposite towards electrocatalytic water splitting for clean energy Save
- Exploring the structural and electronic properties of fullerenes for advanced photodetectors, diodes, and solar cell applications Save