PM
Prasenjit Mal
NISER Bhubaneswar, Jyvaskylan Yliopisto, Indian Institute of Technology Kharagpur, Indian Institute of Technology Kanpur, University of Cambridge
About
Prasenjit Mal was born at Lokhesole, Bankura, West Bengal, India. He obtained his MSc degree from Indian Institute of technology Kharagpur and followed by PhD at Indian Institute of technology Kanpur in 2005. Then he undertook Post Doctoral studies at University of Siegen in Germany as Alexander von Humboldt Fellow (2006-2007) and at University of Cambridge in UK as Marie Curie Fellow (2008-2009). He started an independent research career at NISER Bhubaneswar since December 2009.
Employment
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Jyvaskylan Yliopisto Visiting Professor2012 - 2014
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NISER Bhubaneswar Principal Investigator2009 - Present
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University of Cambridge Post Doctoral Research2008 - 2009
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Universitat Siegen Post Doctoral Research2005 - 2007
Education
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Indian Institute of Technology Kharagpur Master of Science
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Indian Institute of Technology Kanpur Ph D
Projects & Funding
Projects & funding information is unavailable.
Publications (149)
- Persistent Halogenated Perylenediimide Organic Radical Anions Orchestrating Three‐Photon Energy Conversion and Programmable Molecular Coupling Save
- CsPbBr3 Enabled Skeletal Divergence of N-Arylglycine via Deoxygenative Spiroannulation Save
- A Green(Light) Organophotocatalyst in Alkyne Functionalization Save
- Samarium Catalyzed Hydrogenation of Unsaturated Compounds: A SmII or Sm0 Chemistry? Save
- Synergistic Regulation of Excited‐State Electrons Enables Sunlight‐Driven C─Br Bond Activation Through In Situ Polymerized Polyoxometalate‐Gold Nanocluster Assemblies Save
- Small‐Molecule Photocatalytic Activation Through Noncovalent Interactions Save
- Organic Halogenation of Alkynes with Inorganic Halides Using Perylenediimide as Visible‐Light Photocatalyst Save
- Organic Transformations Mediated by Weak Non-Covalent Interactions Save
- Solvent Controlled NBS‐Driven Divergent Bromo‐Lactonization of Ortho‐Styryl Benzamides Save
- Paradox in Visible‐Light: O2•‒ Generation by CsPbBr3 Perovskite Nanocrystals Save