X, SUBHASH
FÍSICA · Nivel 2
Desde 2018 es Scientist en Consejo Nacional de Ciencia y Tecnología
Dr. Subhash Sharma is a materials science researcher with more than 15 years of experience in advanced functional materials. His research focuses on multiferroic materials, multifunctional thin-film heterostructures, nanomaterials, energy-storage materials, photocatalysis, and hydrogen production. He has expertise in thin-film...
Dr. Subhash Sharma is a materials science researcher with more than 15 years of experience in advanced functional materials. His research focuses on multiferroic materials, multifunctional thin-film heterostructures, nanomaterials, energy-storage materials, photocatalysis, and hydrogen production. He has expertise in thin-film fabrication using RF magnetron sputtering and PLD, as well as advanced materials characterization and computational modeling using DFT/VASP and SCAPS.
Dr. Sharma received his Ph.D. in Materials Science and Engineering from JIIT, Noida, India, in 2016. He subsequently worked as a postdoctoral researcher in India and joined CNyN-UNAM, Mexico, through the UNAM-DGAPA and Cátedras programs. He has published more than 100 research articles in international peer-reviewed journals and has an h-index of 24. His research also includes supervision of students and editorial and peer-review activities for international scientific journals.
| Nombre | SUBHASH X |
|---|---|
| Área | FÍSICO-MATEMÁTICAS Y CIENCIAS DE LA TIERRA |
| Campo | FÍSICA |
| Disciplina | FÍSICA DEL ESTADO SÓLIDO |
| Especialidad | FISICA DEL ESTADO SOLIDO |
| CVU | 883419 |
| Institución | |
|---|---|
| Dependencia | NO APLICA |
| Entidad | NO APLICA |
| Nivel | 2 |
| Vigencia | Inicio: 01/01/2026 |
| Fin: 31/12/2030 |
Últimas publicaciones Scopus
- 2026
- Structural evolution and optical tailoring of Mg-doped ZnO: Insights into doping-induced modifications Scientific Reports · Vol. 16 Article
- Theoretical-Experimental Study of Magnetic and Optical Properties of Co-Doped BiFeO3 ACS Omega · Vol. 11 Article
- Structurally Engineered Cu(II)–4-Chloro-2-nitrobenzoate–Picoline Complexes Immobilized in PVA/Cellulose Composite Films for Sustainable Catalytic and Antimicrobial Applications ACS Polymers Au · Vol. 6 Article
- Structure–properties correlation in (1 − x)Bi0.90Pr0.10FeO3–(x)Ca0.5Sr0.5TiO3: phase evolution, optical, and electrical properties Journal of Materials Chemistry C · Vol. 14 Article
- Designing spin-selective ZnO-based single-atom catalysts through surface reconstruction engineering Surfaces and Interfaces · Vol. 87 Article

