There are Ph.D./POSTDOC positions are available our research group. Essential Requirement: M.Sc (Physics)/Ph.D (Physics).
Associate Professor
Department of Physics
Sardar Vallabhbhai National Institute of Technology
(An Institute of National Importance, MoE, Govt. of India)
Ichchhanath, Dumas Road
Surat-395007, Gujarat, India
Phone No: +91 0261 2201958
E-mail: yas@phy.svnit.ac.in
ResearcherID: R-9868-2018
ORCID ID: 0000-0001-7319-2865
H- Index: 34 i10 Index: 93
News & Announcements
Three PhD positions are available in our research group for the academic year 2026-27 as part of the SVNIT PhD admissions. [Link] Last date for the application is 13 July 2026.
Our new work on the Electrocatalytic performance of mixed-terminated V2CTx MXenes for lithium–sulfur batteries has been published in the Journal of Energy Storage (Impact Factor:10.7) [PDF]
Our new work on Electrocatalytic Hydrogen Evolution on SiX Nanosheets: Unlocking Superior Activity through Cu Single-Atom Decoration has been published in the ACS Applied Energy Materials (Impact Factor:5.5) [PDF]
Our new work on Hydrogen-enriched vanadium-sulfide-hydride Janus monolayer unlocks high-performance anodes for Li/Na/Ca-ion batteries, has been published in the Journal of Energy Storage (Impact Factor:10.7) [PDF]
Our new work on Chlorine-terminated MBene anodes for high-performance Na+/Mg2+-ion batteries has been published in the npj 2D Materials and Applications (Impact Factor: 9.2) [PDF]
Our new work on Rashba spin textures in asymmetric Bi2O2Se monolayer for spintronic applications has been published in the Surfaces and Interfaces (Impact Factor: 6.3) [PDF]
Our new work on Theoretical prediction of a high-performance two-dimensional type-II MoSi2N4/As vdW heterostructure for photovoltaic solar cells has been published in the Renewable Energy (Impact Factor:9.1) [PDF]
Our new work on Harnessing MBene termination for superior anode interfaces in Li/Ca-ion batteries has been published in the Journal of Energy Storage (Impact Factor:10.7) [PDF]
Our new work on Fluorine-Terminated MXene as an Anode Material for Dual-Ion(Ca2+/Mg2+) Batteries with Rapid Diffusion Mobility has been published in ACS The Journal of Physical Chemistry C. (Impact Factor:3.3) [PDF]