View Profile

KUMMARA SUNIL KUMAR

doctorate and physics · sri venkateswara University

https://researchid.co/sreesuneeel7
@svuniversity.edu.in
17Scopus Publications
572Google Scholar Citations
16Google Scholar h-index
22Google Scholar i10-index

Research Interests

Multi-state memory devices, Catalysis, Sensors, perovskite solar cells, and Opto-electronic devices. Recycle the energy storage devices via eco-friendly methods and also interested to produce biodegradable energy conversion and storage devices.

Biography

Eight years of research experience in the preparation of nanostructures by various synthesis routes and investigated for their properties useful for energy storage devices, sensors, photocatalytic hydrogen evaluation, fuel cells, electrochemical and environmental applications.

Education

Academic Credentials: Ph.D. : Physics, June 2020, Sri Venkateswara University, Tirupati, INDIA. *Thesis Title: “Investigations on (Ca, Gd) co-doped BiFeO3: Er sol-gel synthesis nanoparticles” M.Phil. : Physics, November 2015, Sri Venkateswara University, Tirupati, INDIA. * Dissertation Title: “Studies on Nanomaterials”. M.Sc. : Physics, (2008-2010), Sri Venkateswara University, Tirupati, INDIA. B.Sc. : Physics, Mathematics, and Chemistry as optional subjects (2003-2006), Sri Krishnadevaraya University, Anantapuramu, INDIA.

Recent Scopus Publications

  1. Tailored Optical, Magnetic and Photoluminescence properties of Fe/Cr-doped ZnO nanoparticles synthesized via solution combustion method
    Nano Structures and Nano Objects, 2024
  2. Solvothermal synthesis of ZnCo2O4 @rGO nanostructures for high-performance supercapacitor applications
    Synthetic Metals, 2023
  3. Synthesis and characterization of rGO wrapped 1-D NiO nanofibers for ammonia gas sensing application
    Surfaces and Interfaces, 2023
  4. Enhanced solar driven hydrogen evolution rate by integrating dual co-catalysts (MoS2, SeS2) on CdS nanorods
    Colloids and Surfaces A Physicochemical and Engineering Aspects, 2021
  5. Enhanced magnetization and dielectric properties of Ca doped BiFeO3: Er nanoparticles by sol–gel technique
    Materials Science and Engineering B, 2021

Links