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Biplab Mondal

Researcher at Indian Institute of Technology Guwahati

Publications -  67
Citations -  1376

Biplab Mondal is an academic researcher from Indian Institute of Technology Guwahati. The author has contributed to research in topics: Ligand & Copper. The author has an hindex of 21, co-authored 59 publications receiving 1237 citations. Previous affiliations of Biplab Mondal include Indian Institutes of Technology & Indian Institute of Technology Bombay.

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DNA binding, nuclease activity and cytotoxicity studies of Cu(II) complexes of tridentate ligands.

TL;DR: In vitro cytotoxicity assay of theCu(II) complexes demonstrate that the complexes have low toxicity for different cancer cell lines and IC(50) values were between 37 and 156 μM.
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Ruthenium mononitro and mononitroso terpyridine complexes incorporating azoimine based ancillary ligands. Synthesis, crystal structure, spectroelectrochemical properties and kinetic aspects

TL;DR: In this article, the single crystal X-ray structure of the nitro complex 7 has been determined and the pseudo first order rate constants (k) and the thermodynamic parameters (ΔH, ΔS ‡ and K) for formation of the Nitro complexes were derived.
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Ruthenium terpyridine complexes incorporating azo-imine based ancillary ligands. Synthesis, crystal structure, spectroelectrochemical properties and solution reactivities

TL;DR: Ruthenium terpyridine complexes of the type [RuII(trpy)(L)(X)][ClO4]n1-15 as discussed by the authors have been synthesized.
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Heme-copper-dioxygen complexes: toward understanding ligand-environmental effects on the coordination geometry, electronic structure, and reactivity.

TL;DR: A geometric structure and more complete electronic description of the high-spin heme-peroxo-copper complexes 1 and 2 and the phenoxyl radical generated by the H-atom abstraction was either directly detected by electron paramagnetic resonance spectroscopy using phenols that produce stable radicals or indirectly detected by the coupling product of two Phenoxyl radicals.
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DNA binding and nuclease activity of copper(II) complexes of tridentate ligands

TL;DR: Two copper(II) complexes with L 1 and L 2 ligands, respectively, have been synthesized and characterized and the interaction of both the complexes with DNA has been studied to explore their poten-tial biological activity.