PY
Pradeep Kumar Yadav
University of Lille, Indian Institute of Technology Gandhinagar, IIT GANDHINAGAR, University of Lucknow
About
I am currently work as the CNRS Postdoctoral at CASETE UCCS Lab,University of Lille, France with the Professor Prof. Sabastian Royer and Prof. Jean Dacquin Philippe.My Postdoctoral research is going on the development of polymeric derived catalysts for the CO/CO2 methanation and Dry reforming of methane.
Employment
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University of Lille Research Scientist2024 - 2026
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Indian Institute of Technology Gandhinagar Senior Research Fellow2020 - 2024
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IIT GANDHINAGAR Junior Research Fellow2018 - 2020
Education
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University of Lille Postdoctral2024 - 2026
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Indian Institute of Technology Gandhinagar PhD2018 - 2024
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University of Lucknow M.Sc.2015 - 2017
Projects & Funding
Projects & funding information is unavailable.
Publications (22)
- Thermal Conductivity Modulation in SiO2@SiC Supports for NiRu-Catalysed Methane Dry Reforming Save
- Thermal-Conductivity-Engineered SiO2@SiC Supports Uncover the Surface-Temperature-Dependent Mechanism of NiRu-Catalysed for Dry reforming of methane (DRM) Save
- Hydrophobic Nanoporous Copper Oxide for Electrochemical CO2 Reduction Save
- Ruthenium-promoted LaFeO3 as an efficient oxygen carrier for selective syngas production via chemical looping dry reforming of CH4 (CL-DRM) Save
- Dry-Oxidative Reforming of Biogas for Hydrogen Generation over Ca and Mg-Promoted Titania-Supported Nickel Catalyst Save
- Effect of Partial Noble Metal (M = Pd, Rh, Ru, Pt) Substitution in La1−xSrxCo1−yMyO3 Perovskite-Derived Catalysts for Dry Reforming of Methane Save
- C2 Product Selectivity by 2D-nanosheet of Layered Zn-doped Cu2(OH)3(NO3)-A Pre-catalyst for Electrochemical CO2 Reduction Save
- Facile synthesis of novel NiCo2O4-Mn1-xCrxCo2O4 (x = 0.2, 0.6, 0.8) composites for oxygen evolution and methanol oxidation in alkaline medium Save
- Partially Substituted La for Sm in Sm0.8Sr0.2NiO3: An Efficient Electrocatalyst Towards Alkaline Water Splitting Save
- Switching-on dry reforming of CH4 in chemical looping configuration: Beneficial role of exsolved Cu from LaFe1-XCuXO3 perovskites Save