K
Kapil Tomar
Researcher at Indian Institute of Technology Kanpur
Publications - 44
Citations - 893
Kapil Tomar is an academic researcher from Indian Institute of Technology Kanpur. The author has contributed to research in topics: Metal-organic framework & Catalysis. The author has an hindex of 16, co-authored 40 publications receiving 722 citations. Previous affiliations of Kapil Tomar include Indian Institutes of Science Education and Research & Indian Institute of Technology Roorkee.
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Journal ArticleDOI
Stable Multiresponsive Luminescent MOF for Colorimetric Detection of Small Molecules in Selective and Reversible Manner
Sajal Khatua,Soumyabrata Goswami,Soumava Biswas,Kapil Tomar,Himanshu Sekhar Jena,Sanjit Konar +5 more
TL;DR: In this paper, a 2D, 44 net metal-organic framework (MOF) was synthesized and found to behave as a colorimetric detector for the widest variety of small molecules such as different solvents, halobenzenes, N-heterocycles, amine, and nitroaromatic explosives all in vapor phase.
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An Amine Functionalized Metal–Organic Framework as an Effective Catalyst for Conversion of CO2 and Biginelli Reactions
TL;DR: This anionic 3D framework showed two-fold interpenetration with 45.1% void volume and is an outstanding heterogeneous catalyst for the chemical fixation of CO2 with various epoxides under atmospheric pressure and in the three-component Biginelli reaction with different aldehydes, ethyl acetoacetate, and urea to afford dihydropyrimidinones.
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From Zn(II)-Carboxylate to Double-Walled Zn(II)-Carboxylato Phosphate MOF: Change in the Framework Topology, Capture and Conversion of CO2, and Catalysis of Strecker Reaction.
TL;DR: The ligand H2L has been built by linking an imidazole moiety to the 5-position of isophthalic acid and provided an attractive route for the synthesis of α-amino nitriles.
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Field‐Induced Single‐Ion‐Magnetic Behavior of Octahedral CoII in a Two‐Dimensional Coordination Polymer
TL;DR: In this paper, two 2D coordination polymers were synthesized by employing V-shaped flexible terpyridine-based ligand L [L = 4-(4-methoxyphenyl)-4,2′:6′,4′′-terPyridine] as linker and MII (M = CoII, FeII) as nodes.
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Exploration of Structural Topologies in Metal–Organic Frameworks Based on 3-(4-Carboxyphenyl)propionic Acid, Their Synthesis, Sorption, and Luminescent Property Studies
TL;DR: In this article, four new coordination polymers (CPs) and two metal organic frameworks (MOFs) have been synthesized through the slow diffusion technique using cpp ligands and different neutral linkers.