PK
Pijush Kanti Chattopadhyay
Also known as: PIJUSH CHATTOPADHYAY
Government College of Engineering and Leather Technology, Indian Institute of Technology Kharagpur
Employment
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Government College of Engineering and Leather Technology Assistant professor2010 - Present
Education
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Indian Institute of Technology Kharagpur Ph.D.2008 - 2012
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Government College of Engineering and Leather Technology M. Tech2005 - 2007
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Government College of Engineering and Leather Technology BSc. Tech1995 - 1999
Projects & Funding
Projects & funding information is unavailable.
Publications (42)
- Synthesis of Polymer Nanohybrids for Glycerol Sensing, Fluorometric Viscosity Detection, and Metal-Free Electrocatalytic Glycerol Oxidation Save
- NiFe2O4/GO-Incorporated Nanohybrid Polymers for Multi-Modal Sensing and Electrocatalytic Oxidation of Phenols Save
- Sequentially Synthesized Dual-State Dual-FRET Optoelectronic Polymer-Thiolated Collagen Nanohybrids for Ultra-High S2–/ Cd(II) Relay Sensing and Electrocatalytic Nitrobenzene Reduction Save
- Ultra-High Conductivity of Non-Conjugated Synthetic, Semisynthetic, and Zr(IV)-/ Zn(II)-/ Ni(II)-Coordinated Optoelectronic Polymers for High-Performance Voltammetric/ Impedimetric/ Luminometric Glucose Sensing Save
- Exploring ICT-FRET in Aliphatic Electroactive Fluorescent Polymers and Fluorometric/Electrochemical/Impedimetric Sensing of Picric Acid in Aqueous and Organic Media Save
- Uncovering Integrated Dual‐State ESIPT‐Conductivity, Redox‐Capacity, and Opto‐Electronic Responses Toward Hg(II)/ Cr(III) of Aliphatic Fluorescent Polymers Save
- Exploring Through-Space Charge Transfer-Mediated Optoelectrochemical Properties of Dual-State Luminescent Aliphatic Polymers and Optoelectronic Responses toward Metal Ions Save
- Synthesis of Intrinsically‐Fluorescent Aliphatic Tautomeric Polymers for Proton‐Conductivity, Dual‐State Emission, and Sensing/Oxidation‐Reduction of Metal Ions Save
- Synthesis of Semisynthetic Dual-State Fluorescent Polymers and Roles of Starch/Pectin on AIET-Assisted Dual-Emission, Conductivity, and Metal-Ion Sensing Save
- Excited-State Intramolecular Proton- and Inter-Polymer Charge-Transfer of Semiconducting Redox Polymers for Fe(III), Cd(II), and Hg(II) Sensing Save