Ankush Biradar
CSIR-Central Salt and Marine Chemicals Research Institute, National Chemical Laboratory CSIR, Central Salt and Marine Chemicals Research Institute CSIR
About
Dr. Ankush Biradar is working as a Senior Principal Scientist at CSIR-Central Salt & Marine Chemicals Research Institute, Bhavnagar, India. He earned a Ph.D. from the University of Pune/National Chemical Laboratory, Pune, India, and also served as a postdoctoral fellow at Rutgers, The State University of New Jersey, USA. His expertise spans both homogeneous and heterogeneous catalysis, with a focus on nanocatalysts, carbon-based materials, and mixed-metal oxides to develop environmentally friendly catalytic processes for biomass utilization and the conversion of CO2 into valuable chemicals and fuels. His multidisciplinary approach and commitment to sustainability have earned him recognition in the scientific community, inspiring future researchers to pursue a greener future.
Employment
-
CSIR-Central Salt and Marine Chemicals Research Institute Sr. Principal scientist/ professor2025 - Present
-
Central Salt and Marine Chemicals Research Institute CSIR Senior Scientist2016 - 2020
-
National Chemical Laboratory CSIR Scientist2012 - Present
-
Rutgers, The State University of New Jersey PostDoctoral fellow2009 - 2012
-
Syracuse University Postdoctoral fellow2009 - 2009
Education
-
National Chemical Laboratory CSIR Ph.D2005 - 2009
Projects & Funding
Projects & funding information is unavailable.
Publications (126)
- The trade-off between carbon-based materials and efficient CO2 utilization: Catalytic advances towards cycloaddition of CO2 with epoxides to cyclic carbonates Save
- Oxazolidinone synthesis employing urea as a CO2 surrogate over Ni-doped MgO Save
- Sustainable aerobic oxidation of sp2 and sp3 functionalized hydrocarbons using CoOx-decorated MgO in the presence of a bio-derived solvent Save
- Biomass‐Derived CoFe@N‐Doped Graphitic Carbon Core–Shell Electrocatalysts for Low‐Energy Hydrogen Production via Methanol‐Assisted Water Electrolysis Save
- Highly efficient isomerization and hydroformylation of alkenes by rhodium supported on naturally extracted biosilica Save
- Melamine paraformaldehyde polymer as an excellent support for hydroformylations of various alkenes Save
- SO3H Functionalized Polystyrene Resin as an Efficient Solid Acid Catalyst for Aromatic Nitration Reactions Save
- Enhanced electrocatalytic CO2 reduction into formate: Unleashing the effect of engineered bimetallic oxides supported on activated carbon Save
- Nickel Nanoparticles Stabilized on B and N-Doped Graphitic Carbon as an Excellent Catalyst for One-Pot Synthesis of Industrially Important Flavoring Ketones Save
- Empowering Sustainable Energy: Lead-Coated Plastic Chip Electrodes for Effective CO2 Reduction Save