PM
Prasun Mukherjee
University of Calcutta, University of Pittsburgh, Iowa State University, Indian Institute of Technology (IIT) Bombay, Alipurduar College
Employment
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University of Calcutta Assistant Professor2013 - Present
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University of Pittsburgh Post-doctoral Research Associate2009 - 2013
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Iowa State University Post-doctoral Research Associate2008 - 2009
Education
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Iowa State University PhD2003 - 2008
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Indian Institute of Technology (IIT) Bombay MSc2001 - 2003
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Alipurduar College BSc1997 - 2000
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Alipurduar College Higher Secondary? - 1997
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Rama Krishna Mission Boys Home High School Secondary? - 1995
Projects & Funding
Projects & funding information is unavailable.
Publications (59)
- Developing Codoped Inorganic Nanoparticle Emitters by Selective Chromophore Excitation for Color Generation Applications Save
- Dopant(s) spatial engineering modulates co-sensitization of terbium emission in co-doped zinc sulfide nanoparticles: Implications on energy alignments and metal ion sensing Save
- Infrared Absorption Spectroscopy: A Multifaceted Characterization Tool for Nanomaterials Save
- Surface Capping Ligand-Governed Dopant Emission in Hydrophobic Terbium-Doped Zinc Sulfide Nanoparticles: Effects from Even- and Odd-Numbered Carbon Chain and Nature of Coordination Save
- Identification of Cosensitizers for Triggering Terbium Emission Enhancement in Zinc Sulfide Nanoparticles Save
- Identifying Lanthanide Energy Levels in Semiconductor Nanoparticles Enables Tailored Multicolor Emission through Rational Dopant Combinations Save
- Optimizing Electronic Interactions in Terbium–Dysprosium-Codoped Calcium Fluoride Nanoparticles to Enhance Near-Monochromatic Green and Generate Broadband Yellow Emission Save
- Retention of lead sensitized terbium dopant emission in zinc sulfide nanoparticles in presence of co-existent metal ions: Detection of lead ion in aqueous media with nanomolar concentration by a facile post-synthetic reaction under pre-cation exchange co… Save
- Doping-Guided Control of Lead-Sensitized Terbium Emission in Zinc Sulfide Nanoparticles: Implications for Lead Ion Sensing in Aqueous Media Save
- Brightening lead sensitized terbium emission in zinc sulfide nanoparticles by fine tuning reaction conditions Save