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Please use this identifier to cite or link to this item: http://repository.iitr.ac.in/handle/123456789/25140
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dc.contributor.authorMohanty M.-
dc.contributor.authorMaurya S.K.-
dc.contributor.authorBanerjee A.-
dc.contributor.authorPatra S.A.-
dc.contributor.authorMaurya, Mannar Ram-
dc.contributor.authorCrochet A.-
dc.contributor.authorBrzezinski K.-
dc.contributor.authorDinda R.-
dc.date.accessioned2022-04-22T05:54:14Z-
dc.date.available2022-04-22T05:54:14Z-
dc.date.issued2019-
dc.identifier.citationNew Journal of Chemistry, 43(45): 17680-17695-
dc.identifier.issn11440546-
dc.identifier.urihttps://doi.org/10.1039/c9nj01815h-
dc.identifier.urihttp://repository.iitr.ac.in/handle/123456789/25140-
dc.description.abstractThree new anionic dioxidovanadium(v) complexes (HNEt3)[VO2(L)1-3] (1-3) of tridentate binegative aroylhydrazone ligands containing the azobenzene moiety were synthesized and structurally characterized. The aroylhydrazone ligands (H2L1-3) were derived from the condensation of 5-(arylazo) salicylaldehyde derivatives with the corresponding aroyl hydrazides. All the synthesized ligands and metal complexes were successfully characterized by several physicochemical techniques, namely, elemental analysis, electrospray ionization mass spectrometry, spectroscopic methods (IR, UV-vis and NMR), and cyclic voltammetry. Single-crystal X-ray diffraction crystallography of 1-3 revealed five-coordinate geometry, where the ligand coordinates to the metal centre in a binegative tridentate O, N, O coordinating anion and two oxido-O atoms, resulting in distortion towards the square pyramidal structure. The complexes were further evaluated for their in vitro cytotoxicity against HeLa and HT-29 cancer cell lines. All the complexes manifested a cytotoxic potential that was found to be comparable with that of clinically referred drugs, while complex 3 proved to be the most cytotoxic among the three complexes for both cell lines, which may be due to the synergistic effect of the naphthyl substituent in the azohydrazone ligand environment coordinated to the vanadium metal. The synthesized complexes 1-3 were probed as catalysts for the oxidative bromination of thymol and styrene as a functional mimic of vanadium haloperoxidases (VHPOs). All the reactions provided high percentages of conversion (>90%) with a high turnover frequency (TOF) in the presence of the catalysts 1-3. In particular, for the oxidative bromination of thymol, the percentage of conversion and TOF were in the ranges of 98-99% and 5380-7173 (h-1), respectively. Besides, 3 bearing the naphthyl substituent showed the highest TOF among all the complexes for the oxidative bromination of both thymol and styrene. © 2019 The Royal Society of Chemistry and the Centre National de la Recherche Scientifique.-
dc.language.isoen_US-
dc.publisherRoyal Society of Chemistry-
dc.relation.ispartofNew Journal of Chemistry-
dc.subjectantimitotic agent-
dc.subjectantineoplastic metal complex-
dc.subjectazo compound-
dc.subjectazobenzene derivative-
dc.subjectcisplatin-
dc.subjectcounterion-
dc.subjectcyclophosphamide-
dc.subjectdioxidovanadium complex-
dc.subjecthydrazone derivative-
dc.subjectligand-
dc.subjectnaphthalene-
dc.subjectperoxidase-
dc.subjectsalicylaldehyde-
dc.subjectstyrene-
dc.subjectthymol-
dc.subjecttriethylamine-
dc.subjectunclassified drug-
dc.subjectvanadium derivative-
dc.subjectantiproliferative activity-
dc.subjectapoptosis-
dc.subjectArticle-
dc.subjectbromination-
dc.subjectcarbon nuclear magnetic resonance-
dc.subjectcatalyst-
dc.subjectcell viability-
dc.subjectcomplex formation-
dc.subjectcontrolled study-
dc.subjectcyclic potentiometry-
dc.subjectdeprotonation-
dc.subjectdrug cytotoxicity-
dc.subjectdrug synthesis-
dc.subjectelectrophilicity-
dc.subjectelectrospray mass spectrometry-
dc.subjectelemental analysis-
dc.subjectevaporation-
dc.subjectfemale-
dc.subjectHaCat cell line-
dc.subjectHeLa cell line-
dc.subjectHT-29 cell line-
dc.subjecthuman-
dc.subjecthuman cell-
dc.subjecthydrogen bond-
dc.subjectIC50-
dc.subjectin vitro study-
dc.subjectinfrared spectroscopy-
dc.subjectMTT assay-
dc.subjectoxidation reduction reaction-
dc.subjectphysical chemistry-
dc.subjectpolymerization-
dc.subjectpriority journal-
dc.subjectproton nuclear magnetic resonance-
dc.subjectstereochemistry-
dc.subjectsupramolecular chemistry-
dc.subjectturnover rate-
dc.subjectultraviolet visible spectroscopy-
dc.subjectX ray crystallography-
dc.subjectX ray diffraction-
dc.titleIn vitro cytotoxicity and catalytic evaluation of dioxidovanadium(v) complexes in an azohydrazone ligand environment-
dc.typeArticle-
dc.scopusid56371320900-
dc.scopusid57204881633-
dc.scopusid57218803004-
dc.scopusid57211916379-
dc.scopusid7005255411-
dc.scopusid36097678500-
dc.scopusid9336881200-
dc.scopusid6602401800-
dc.affiliationMohanty, M., Department of Chemistry, National Institute of Technology, Rourkela Odisha, 769008, India-
dc.affiliationMaurya, S.K., Department of Chemistry, Indian Institute of Technology Roorkee, Roorkee, 247667, India-
dc.affiliationBanerjee, A., Department of Chemistry, National Institute of Technology, Rourkela Odisha, 769008, India-
dc.affiliationPatra, S.A., Department of Chemistry, National Institute of Technology, Rourkela Odisha, 769008, India-
dc.affiliationMaurya, M.R., Department of Chemistry, Indian Institute of Technology Roorkee, Roorkee, 247667, India-
dc.affiliationCrochet, A., Department of Chemistry, Fribourg Center for Nanomaterials, University of Fribourg, Fribourg, CH-1700, Switzerland-
dc.affiliationBrzezinski, K., Institute of Chemistry, University of Bialystok, Ciolkowskiego 1K, Bialystok, 15-245, Poland-
dc.affiliationDinda, R., Department of Chemistry, National Institute of Technology, Rourkela Odisha, 769008, India-
dc.description.funding-
dc.description.correspondingauthorDinda, R.; Department of Chemistry, India; email: rupamdinda.nitrkl@gmail.com-
Appears in Collections:Journal Publications [CY]

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