SD
Sanjib Das
Institute of Minerals and Materials Technology, Weizmann Institute of Science, Indian Institute of Technology Kanpur, Banaras Hindu University, National Institute for Materials Science
Employment
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Institute of Minerals and Materials Technology Principal Scientist2020 - Present
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Weizmann Institute of Science Post Doctoral Research Fellow2010 - 2011
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National Institute for Materials Science Post Doctoral Research Fellow2008 - 2010
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University of Heidelberg Post Doctoral Research Fellow2007 - 2008
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University of Hohenheim Post Doctoral Research Fellow2006 - 2007
Education
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Indian Institute of Technology Kanpur PhD2000 - 2006
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Banaras Hindu University Master of Science in Chemistry1998 - 2000
Projects & Funding
Projects & funding information is unavailable.
Publications (10)
- Chemical Blowing of a Synthetically Green Conjugated Polymeric Network into Porous Carbon Nanosheets for Dual-Purpose Energy Storage Save
- Structurally Tailored Covalent Triazine Frameworks as Multitasking Electrodes for Supercapacitors, HER, ORR, and Zinc–Air Batteries Save
- High-temperature variant of oxygen-rich covalent triazine frameworks as multifunctional electrocatalysts Save
- Thermally tuned oxygenated covalent triazine framework via self-templating for a durable 3.8 V aqueous supercapacitor with record energy and power density Save
- Triazole-boosted dual-structured covalent triazine frameworks for ultra-stable high-energy and -power density aqueous supercapacitors and notable selective CO2 capture Save
- Soft Self-Templating Approach-Derived Covalent Triazine Framework with Bimodal Nanoporosity for Efficient Radioactive Iodine Capture for Safe Nuclear Energy Save
- Dithia-Crown-Ether Integrated Self-Exfoliated Polymeric Covalent Organic Nanosheets for Selective Sensing and Removal of Mercury Save
- All‐in‐One: Sensing, Adsorptive Removal, and Photocatalytic Degradation of Nitro‐Explosive Contaminants by Microporous Polycarbazole Polymer Save
- Dual Strategic Approach to Prepare Defluorinated Triazole-Embedded Covalent Triazine Frameworks with High Gas Uptake Performance Save
- Newly designed 1,2,3-triazole functionalized covalent triazine frameworks with exceptionally high uptake capacity for both CO2 and H2 Save