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Metal-ligand interactions in a redox active ligand system. Electrochemistry and spectroscopy of [M(dipyvd)(2)](n+) (M=Zn, Ni, n=0, 1, 2)

Reaction of nickel and zinc triflates with the tridentate leucoverdazyl 1-isopropyl-3,5-di (2′-pyridyl)-6-oxo-2H-tetrazine (dipyvdH) and triethylamine resulted in the neutral coordination compounds M(dipyvd)(2) (M = Ni,Zn). In acetonitrile, both compounds undergo two one electron oxidation processes...

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Autores principales: Fleming, Connor, Vu, Son, Brook, David J. R., Agrestini, Stefano, Pellegrin, Eric, DaRos, Jeffrey
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10684738/
https://www.ncbi.nlm.nih.gov/pubmed/38033468
http://dx.doi.org/10.3389/fchem.2023.1295289
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author Fleming, Connor
Vu, Son
Brook, David J. R.
Agrestini, Stefano
Pellegrin, Eric
DaRos, Jeffrey
author_facet Fleming, Connor
Vu, Son
Brook, David J. R.
Agrestini, Stefano
Pellegrin, Eric
DaRos, Jeffrey
author_sort Fleming, Connor
collection PubMed
description Reaction of nickel and zinc triflates with the tridentate leucoverdazyl 1-isopropyl-3,5-di (2′-pyridyl)-6-oxo-2H-tetrazine (dipyvdH) and triethylamine resulted in the neutral coordination compounds M(dipyvd)(2) (M = Ni,Zn). In acetonitrile, both compounds undergo two one electron oxidation processes, Zn (dipyvd)(2) at −0.28 V and −0.12 V and Ni(dipyvd)(2) at −0.32 V and −0.15 V vs ferrocene/ferricenium. Oxidations are ligand based resulting in an intermediate mixed valence species and a cationic bis(verdazyl) compound respectively. Oxidation of the ligand changes a localized, antiaromatic, non-planar 8π electron anion to a planar, delocalized 7π electron radical. The change in ligand structure results in an increase in the octahedral ligand field splitting from 10,500 cm(–1) to ∼13,000 cm(–1), suggesting an increase in the pi acceptor character of the ligand. In the mixed valence species, spectroscopic data suggests minimal interaction between ligands mediated by the metal center; i.e., these are class I-II systems in the Robin-Day classification.
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spelling pubmed-106847382023-11-30 Metal-ligand interactions in a redox active ligand system. Electrochemistry and spectroscopy of [M(dipyvd)(2)](n+) (M=Zn, Ni, n=0, 1, 2) Fleming, Connor Vu, Son Brook, David J. R. Agrestini, Stefano Pellegrin, Eric DaRos, Jeffrey Front Chem Chemistry Reaction of nickel and zinc triflates with the tridentate leucoverdazyl 1-isopropyl-3,5-di (2′-pyridyl)-6-oxo-2H-tetrazine (dipyvdH) and triethylamine resulted in the neutral coordination compounds M(dipyvd)(2) (M = Ni,Zn). In acetonitrile, both compounds undergo two one electron oxidation processes, Zn (dipyvd)(2) at −0.28 V and −0.12 V and Ni(dipyvd)(2) at −0.32 V and −0.15 V vs ferrocene/ferricenium. Oxidations are ligand based resulting in an intermediate mixed valence species and a cationic bis(verdazyl) compound respectively. Oxidation of the ligand changes a localized, antiaromatic, non-planar 8π electron anion to a planar, delocalized 7π electron radical. The change in ligand structure results in an increase in the octahedral ligand field splitting from 10,500 cm(–1) to ∼13,000 cm(–1), suggesting an increase in the pi acceptor character of the ligand. In the mixed valence species, spectroscopic data suggests minimal interaction between ligands mediated by the metal center; i.e., these are class I-II systems in the Robin-Day classification. Frontiers Media S.A. 2023-11-15 /pmc/articles/PMC10684738/ /pubmed/38033468 http://dx.doi.org/10.3389/fchem.2023.1295289 Text en Copyright © 2023 Fleming, Vu, Brook, Agrestini, Pellegrin and DaRos. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Chemistry
Fleming, Connor
Vu, Son
Brook, David J. R.
Agrestini, Stefano
Pellegrin, Eric
DaRos, Jeffrey
Metal-ligand interactions in a redox active ligand system. Electrochemistry and spectroscopy of [M(dipyvd)(2)](n+) (M=Zn, Ni, n=0, 1, 2)
title Metal-ligand interactions in a redox active ligand system. Electrochemistry and spectroscopy of [M(dipyvd)(2)](n+) (M=Zn, Ni, n=0, 1, 2)
title_full Metal-ligand interactions in a redox active ligand system. Electrochemistry and spectroscopy of [M(dipyvd)(2)](n+) (M=Zn, Ni, n=0, 1, 2)
title_fullStr Metal-ligand interactions in a redox active ligand system. Electrochemistry and spectroscopy of [M(dipyvd)(2)](n+) (M=Zn, Ni, n=0, 1, 2)
title_full_unstemmed Metal-ligand interactions in a redox active ligand system. Electrochemistry and spectroscopy of [M(dipyvd)(2)](n+) (M=Zn, Ni, n=0, 1, 2)
title_short Metal-ligand interactions in a redox active ligand system. Electrochemistry and spectroscopy of [M(dipyvd)(2)](n+) (M=Zn, Ni, n=0, 1, 2)
title_sort metal-ligand interactions in a redox active ligand system. electrochemistry and spectroscopy of [m(dipyvd)(2)](n+) (m=zn, ni, n=0, 1, 2)
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10684738/
https://www.ncbi.nlm.nih.gov/pubmed/38033468
http://dx.doi.org/10.3389/fchem.2023.1295289
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