Dr. Kuraganti Vasu

Designation : Assistant Professor
School / Centre : School of Advanced Sciences
Department : Physics

Educational Details

University of Hyderabad

Ph.D.
Condensed Matter Physics
Graduated in 2012

Andhra University

M.Sc.,
Condensed Matter Physics
Graduated in 2005

Nagarjuna University

B.Sc.,
Physics
Graduated in 2003

Post Doctoral Experiences

1. PBC Postdoctoral Fellow, Department of Chemistry, Ben-Gurion University, Isreal( Februry 2016 - August 2018)
2. DST Postdoctoral Fellow, Chemistry and Physics of Materials Unit, Jawaharlal Nehru Centre for Advanced Scientific Research, Bangalore, India (August 2012 - January 2016)


Research Details

Areas of Specialization
  • Semiconductor Physics-oxide thin films
  • transparent conductors
  • Energy Materials-Solar cells
  • Electrolysis
  • Supercapacitor

: 15
: 17

Ongoing Funded Project Details

Title Funding Agency
DST-FIST Project (Level-1)-2019 Physical Sciences DST - VIT
2. Two Dimensional Degenerate Semiconductor Heterojunctions for Photovoltaic Application DST-SERB, Govt. of India DST-SERB, Govt. of India

Completed Funded Project Details

Title Funding Agency
Degenerate Two-Dimensional Semiconductor Nanostructures for Multifunctional Application, MHRD, Govt. of India MHRD, Govt. of India
Two Dimensional Degenerate Semiconductor Heterojunctions for Photovoltaic Application DST-SERB, Govt. of India DST-SERB, Govt. of India

Patent Published Details

Title Application No.
Solid state reaction-based method for synthesizing octahedral (1T) phase of transition metal dichalcogenides nanosheets 202441066855
Method for synthesis of degenerate doped WS2 semiconductor bifunctional electrocatalyst 202441064000
High stable and corrosion free ceramic catalyst for hydrogen evolution reaction 202441077640
A method for preparing transition metal dichalcogenides based heterostructure electrocatalysts for efficient hydrogen production 202441087225

Books / Book Chapters Published Details

Title Publisher Published Year
Defects in nanomaterials and their effect on electrochemical water splitting application, 2021, IOP publishing, and 978-0-7503-3699-4 IOP publishing 2021

Other Information