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DR. SETHI YOGESH AJIT

Department of Chemistry, CHANDMAL TARACHAND BORA COLLEGE OF ARTS, COMMERCE AND SCIENCE SHIRUR - GHODNADI, DISTRICT - PUNE - 412 210 · Department of Chemistry, CHANDMAL TARACHAND BORA COLLEGE OF ARTS, COMMERCE AND SCIENCE SHIRUR - GHODNADI, DISTRICT - PUNE - 412 210

https://researchid.co/yogamruta123
@ctboracollege.edu.in
34Scopus Publications
995Google Scholar Citations
19Google Scholar h-index
29Google Scholar i10-index

Biography

I am Dr.Yogesh Ajit Sethi, working as a Assistant Professour at Department of chemistry Chandmal Tarachand Bora college Shirur Pune . I completed UGC DR D S KOTHARI POSTDOCTORAL FELLOW at SPPU PUNE & Centre for Materials for Electronics Technology, Pune, India. I have completed PhD in 2020 my dissertation covers a broad area of topics in the synthesis of Solar Light active Metal oxides for photocatalysis. I have12 years of experience in R & D at C-MET, Pune. During my research, I have published 42 international peer review research papers and 02 Indian Patent as a lead. My research focuses on development of novel materials for Li-Ion Battery, Hydrogen generation via H2S & water splitting (Energy generation & Storage). I have developed solid bases in the different fields such as chemical methods of nanomaterials synthesis, and heterostructure photocatalysts and designing of photoreactors. Similarly, I have developed one set up for photocatalytic H2 Production from waste H2S gas which ha

Education

M.SC,M.Phill, P.hD,Post Doc

Recent Scopus Publications

  1. ZnO/Al2O3/CuO ternary nanocomposites: a bandgap-engineered solution for high-efficiency photocatalytic hydrogen generation
    Energy Advances, 2026
  2. Catalysing a sustainable future: Harnessing solar energy with novel Co3O4@VO2 nanocomposites for enhanced photocatalytic hydrogen generation and dye degradation
    International Journal of Hydrogen Energy, 2024
  3. The synthesis and super capacitive characterization of microwave-assisted highly crystalline α-Fe2O3/Fe3O4 nanoheterostructures
    Rsc Advances, 2023
  4. Multilayered Vanadium Carbide-Reduced Graphene Oxide (VC@rGO) Nanocomposite as an Ultrahigh-Capacity Anode Material for Li- and Na-Ion Batteries
    ACS Applied Energy Materials, 2022
  5. A Nanostructured Mo2C-rGO Heterostructure as a stable Anode with ultra-high capacity for Lithium-Ion Battery**
    Chemistryselect, 2022

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