PM
Partha Mahata
Jadavpur University, Suri Vidyasagar College, Indian Institute of Science, SN Bose National Centre for Basic Sciences
Employment
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Jadavpur University Assistant Professor2017 - Present
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Suri Vidyasagar College Assistant Professor2015 - Present
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SN Bose National Centre for Basic Sciences INSPIRE Faculty2013 - 2015
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Thapar University Assistant Professor2012 - 2013
Education
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Indian Institute of Science PhD2003 - 2009
Projects & Funding
Projects & funding information is unavailable.
Publications (35)
- A Coordination Polymer Containing Pentagonal Bipyramidal Cd2+ and Mixed-Organic Ligands: Exploration as a Differential-Luminescence-Responsive Probe and Catalyst for the Knoevenagel Condensation Reaction Save
- Electrocatalytic Oxygen Reduction Reaction Using a Water-Stable Ni-Based Coordination Polymer with Two-Dimensional Honeycomb Architecture Save
- Selective Recognition Behavior of Arginine and Histidine Using an Anionic Luminescent Metal‐Organic Material Stabilized by Cationic Amine: Steady State and Time‐Resolved Luminescence Studies Save
- A Cd-based crystalline network material: catalytic properties and post-synthetic metal-ion metathesis with enhanced stability and gas sorption behaviour Save
- Selective detection of an organophosphorus pesticide using a pH-sensitive metal–organic compound containing a cobalt(ii) ion Save
- Terbium doped heterometallic metal–organic compound with carboxylate and imidazole-containing ligands for naked-eye detection of nitro containing antibiotics Save
- Unlocking enhanced hydrogen evolution with a bimetal–organic framework: a synergistic approach Save
- Two-Dimensional Cu-Based MOF for Selective Staining of the Cellular Nucleus through Fluorescence Imaging and Selective Sorption of Dye Molecules in Aqueous Medium Save
- Isolation of a Cd-Based Coordination Polymer Containing Mixed Ligands: Time- and Temperature-Dependent Synthesis, Sulfonamide Antibiotics Detection, and Schottky Diode Fabrication Save
- Chromone-Based Cd(II) Fluorescent Coordination Polymer Fabricated to Study Optoelectronic and Explosive Sensing Properties Save