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Venkata Siva Rama Krishna, Tandava

Post Doctoral Researcher (Department of Materials Chemistry for Catalysis) · Helmholtz-Zentrum Berlin für Materialien und Energie: Berlin

https://researchid.co/vsrktandava
@helmholtz-berlin.de
4Scopus Publications
218Google Scholar Citations
5Google Scholar h-index
4Google Scholar i10-index

Biography

Postdoctoral Researcher in the Department of Materials Chemistry for Catalysis and CatLab, specializing in electrochemistry and materials science. Expertise includes the design and fabrication of electrocatalysts for electrochemical CO2 conversion and the design and deployment of electrochemical reactors. Additionally, experienced in conducting mechanistic investigations using advanced characterization techniques. Currently, actively learning the Operando investigation of electocatalysts using the X-Ray Spectroscopic investigations using the Synchrotron facilities at BESSY II Light Source @HZB. I have a strong background in analytical chemistry, having worked as a Research Assistant at CSIR-Indian Institute of Chemical Technology, where I analyzed edible oils for pesticides and metal contaminants using various analytical techniques using GC, GC-MS, HPLC and ICP-OES. I hold a PhD in Materials Science from Universitat Autònoma de Barcelona and a Master's Degree in Analytical Chemistry f

Education

Doctor of Philosophy (Materials Science) 2019-2024

Recent Scopus Publications

  1. Electrochemical Carbon Dioxide Reduction to Methanol on Copper-Based Catalysts: Mechanistic Insights and Industrial Prospects
    Advanced Materials, 2026
  2. Importance of optimising electrodeposition parameters for scalable and cost-effective manufacturing of Cu catalysts for efficient electrochemical CO2 reduction to renewable fuels and chemical feedstocks
    Materials Today Sustainability, 2025
  3. Modulating the surface interface of PTFE/Cu-based GDEs to boost the electrochemical conversion of CO2 to C2H4 at ultra-low overpotential
    Applied Catalysis B Environmental, 2025
  4. Hydrothermal Fabrication of Carbon-Supported Oxide-Derived Copper Heterostructures: A Robust Catalyst System for Enhanced Electro-Reduction of CO2 to C2H4
    Chemsuschem, 2023

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