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Formation and characterization of a reactive chromium(v)–oxo complex: mechanistic insight into hydrogen-atom transfer reactions

A mononuclear Cr(v)–oxo complex, [Cr(V)(O)(6-COO(–)-tpa)](BF(4))(2) (1; 6-COO(–)-tpa = N,N-bis(2-pyridylmethyl)-N-(6-carboxylato-2-pyridylmethyl)amine) was prepared through the reaction of a Cr(iii) precursor complex with iodosylbenzene as an oxidant. Characterization of 1 was achieved using ESI-MS...

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Autores principales: Kotani, Hiroaki, Kaida, Suzue, Ishizuka, Tomoya, Sakaguchi, Miyuki, Ogura, Takashi, Shiota, Yoshihito, Yoshizawa, Kazunari, Kojima, Takahiko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5811151/
https://www.ncbi.nlm.nih.gov/pubmed/29560181
http://dx.doi.org/10.1039/c4sc02285h
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author Kotani, Hiroaki
Kaida, Suzue
Ishizuka, Tomoya
Sakaguchi, Miyuki
Ogura, Takashi
Shiota, Yoshihito
Yoshizawa, Kazunari
Kojima, Takahiko
author_facet Kotani, Hiroaki
Kaida, Suzue
Ishizuka, Tomoya
Sakaguchi, Miyuki
Ogura, Takashi
Shiota, Yoshihito
Yoshizawa, Kazunari
Kojima, Takahiko
author_sort Kotani, Hiroaki
collection PubMed
description A mononuclear Cr(v)–oxo complex, [Cr(V)(O)(6-COO(–)-tpa)](BF(4))(2) (1; 6-COO(–)-tpa = N,N-bis(2-pyridylmethyl)-N-(6-carboxylato-2-pyridylmethyl)amine) was prepared through the reaction of a Cr(iii) precursor complex with iodosylbenzene as an oxidant. Characterization of 1 was achieved using ESI-MS spectrometry, electron paramagnetic resonance, UV-vis, and resonance Raman spectroscopies. The reduction potential (E (red)) of 1 was determined to be 1.23 V vs. SCE in acetonitrile based on analysis of the electron-transfer (ET) equilibrium between 1 and a one-electron donor, [Ru(II)(bpy)(3)](2+) (bpy = 2,2′-bipyridine). The reorganization energy (λ) of 1 was also determined to be 1.03 eV in ET reactions from phenol derivatives to 1 on the basis of the Marcus theory of ET. The smaller λ value in comparison with that of an Fe(iv)–oxo complex (2.37 eV) is caused by the small structural change during ET due to the dπ character of the electron-accepting LUMO of 1. When benzyl alcohol derivatives (R-BA) with different oxidation potentials were employed as substrates, corresponding aldehydes were obtained as the 2e(–)-oxidized products in moderate yields as determined from (1)H NMR and GC-MS measurements. One-step UV-vis spectral changes were observed in the course of the oxidation reactions of BA derivatives by 1 and a kinetic isotope effect (KIE) was observed in the oxidation reactions for deuterated BA derivatives at the benzylic position as substrates. These results indicate that the rate-limiting step is a concerted proton-coupled electron transfer (PCET) from substrate to 1. In sharp contrast, in the oxidation of trimethoxy-BA (E (ox) = 1.22 V) by 1, trimethoxy-BA radical cation was observed by UV-vis spectroscopy. Thus, it was revealed that the mechanism of the oxidation reaction changed from one-step PCET to stepwise ET–proton transfer (ET/PT), depending on the redox potentials of R-BA.
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spelling pubmed-58111512018-03-20 Formation and characterization of a reactive chromium(v)–oxo complex: mechanistic insight into hydrogen-atom transfer reactions Kotani, Hiroaki Kaida, Suzue Ishizuka, Tomoya Sakaguchi, Miyuki Ogura, Takashi Shiota, Yoshihito Yoshizawa, Kazunari Kojima, Takahiko Chem Sci Chemistry A mononuclear Cr(v)–oxo complex, [Cr(V)(O)(6-COO(–)-tpa)](BF(4))(2) (1; 6-COO(–)-tpa = N,N-bis(2-pyridylmethyl)-N-(6-carboxylato-2-pyridylmethyl)amine) was prepared through the reaction of a Cr(iii) precursor complex with iodosylbenzene as an oxidant. Characterization of 1 was achieved using ESI-MS spectrometry, electron paramagnetic resonance, UV-vis, and resonance Raman spectroscopies. The reduction potential (E (red)) of 1 was determined to be 1.23 V vs. SCE in acetonitrile based on analysis of the electron-transfer (ET) equilibrium between 1 and a one-electron donor, [Ru(II)(bpy)(3)](2+) (bpy = 2,2′-bipyridine). The reorganization energy (λ) of 1 was also determined to be 1.03 eV in ET reactions from phenol derivatives to 1 on the basis of the Marcus theory of ET. The smaller λ value in comparison with that of an Fe(iv)–oxo complex (2.37 eV) is caused by the small structural change during ET due to the dπ character of the electron-accepting LUMO of 1. When benzyl alcohol derivatives (R-BA) with different oxidation potentials were employed as substrates, corresponding aldehydes were obtained as the 2e(–)-oxidized products in moderate yields as determined from (1)H NMR and GC-MS measurements. One-step UV-vis spectral changes were observed in the course of the oxidation reactions of BA derivatives by 1 and a kinetic isotope effect (KIE) was observed in the oxidation reactions for deuterated BA derivatives at the benzylic position as substrates. These results indicate that the rate-limiting step is a concerted proton-coupled electron transfer (PCET) from substrate to 1. In sharp contrast, in the oxidation of trimethoxy-BA (E (ox) = 1.22 V) by 1, trimethoxy-BA radical cation was observed by UV-vis spectroscopy. Thus, it was revealed that the mechanism of the oxidation reaction changed from one-step PCET to stepwise ET–proton transfer (ET/PT), depending on the redox potentials of R-BA. Royal Society of Chemistry 2015-02-01 2014-10-17 /pmc/articles/PMC5811151/ /pubmed/29560181 http://dx.doi.org/10.1039/c4sc02285h Text en This journal is © The Royal Society of Chemistry 2014 http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial 3.0 Unported License (http://creativecommons.org/licenses/by-nc/3.0/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Chemistry
Kotani, Hiroaki
Kaida, Suzue
Ishizuka, Tomoya
Sakaguchi, Miyuki
Ogura, Takashi
Shiota, Yoshihito
Yoshizawa, Kazunari
Kojima, Takahiko
Formation and characterization of a reactive chromium(v)–oxo complex: mechanistic insight into hydrogen-atom transfer reactions
title Formation and characterization of a reactive chromium(v)–oxo complex: mechanistic insight into hydrogen-atom transfer reactions
title_full Formation and characterization of a reactive chromium(v)–oxo complex: mechanistic insight into hydrogen-atom transfer reactions
title_fullStr Formation and characterization of a reactive chromium(v)–oxo complex: mechanistic insight into hydrogen-atom transfer reactions
title_full_unstemmed Formation and characterization of a reactive chromium(v)–oxo complex: mechanistic insight into hydrogen-atom transfer reactions
title_short Formation and characterization of a reactive chromium(v)–oxo complex: mechanistic insight into hydrogen-atom transfer reactions
title_sort formation and characterization of a reactive chromium(v)–oxo complex: mechanistic insight into hydrogen-atom transfer reactions
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5811151/
https://www.ncbi.nlm.nih.gov/pubmed/29560181
http://dx.doi.org/10.1039/c4sc02285h
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