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A “Pretender” Croconate-Bridged Macrocyclic Tetraruthenium Complex: Sizable Redox Potential Splittings despite Electronically Insulated Divinylphenylene Diruthenium Entities

Careful optimization of the reaction conditions provided access to the particularly small tetraruthenium macrocycle (2)Ru(2)Ph-Croc, which is composed out of two redox-active divinylphenylene-bridged diruthenium entities {Ru}-1,4-CH=CH-C(6)H(4)-CH=CH-{Ru} (Ru(2)Ph; {Ru} = Ru(CO)Cl(P(i)Pr(3))(2)) and...

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Autores principales: Rotthowe, Nils, Linseis, Michael, Vogelsang, Lars, Orth, Nicole, Ivanović-Burmazović, Ivana, Winter, Rainer F.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8433806/
https://www.ncbi.nlm.nih.gov/pubmed/34500666
http://dx.doi.org/10.3390/molecules26175232
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author Rotthowe, Nils
Linseis, Michael
Vogelsang, Lars
Orth, Nicole
Ivanović-Burmazović, Ivana
Winter, Rainer F.
author_facet Rotthowe, Nils
Linseis, Michael
Vogelsang, Lars
Orth, Nicole
Ivanović-Burmazović, Ivana
Winter, Rainer F.
author_sort Rotthowe, Nils
collection PubMed
description Careful optimization of the reaction conditions provided access to the particularly small tetraruthenium macrocycle (2)Ru(2)Ph-Croc, which is composed out of two redox-active divinylphenylene-bridged diruthenium entities {Ru}-1,4-CH=CH-C(6)H(4)-CH=CH-{Ru} (Ru(2)Ph; {Ru} = Ru(CO)Cl(P(i)Pr(3))(2)) and two likewise redox-active and potentially non-innocent croconate linkers. According to single X-ray diffraction analysis, the central cavity of (2)Ru(2)Ph-Croc is shielded by the bulky P(i)Pr(3) ligands, which come into close contact. Cyclic voltammetry revealed two pairs of split anodic waves in the weakly ion pairing CH(2)Cl(2)/NBu(4)BAr(F)(24) (BAr(F)(24) = [B{C(6)H(3)(CF(3))(2)-3,5}(4)](−) electrolyte, while the third and fourth waves fall together in CH(2)Cl(2)/NBu(4)PF(6). The various oxidized forms were electrogenerated and scrutinized by IR and UV/Vis/NIR spectroscopy. This allowed us to assign the individual oxidations to the metal-organic Ru(2)Ph entities within (2)Ru(2)Ph-Croc, while the croconate ligands remain largely uninvolved. The lack of specific NIR bands that could be assigned to intervalence charge transfer (IVCT) in the mono- and trications indicates that these mixed-valent species are strictly charge-localized. (2)Ru(2)Ph-Croc is hence an exemplary case, where stepwise IR band shifts and quite sizable redox splittings between consecutive one-electron oxidations would, on first sight, point to electronic coupling, but are exclusively due to electrostatic and inductive effects. This makes (2)Ru(2)Ph-Croc a true “pretender”.
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spelling pubmed-84338062021-09-12 A “Pretender” Croconate-Bridged Macrocyclic Tetraruthenium Complex: Sizable Redox Potential Splittings despite Electronically Insulated Divinylphenylene Diruthenium Entities Rotthowe, Nils Linseis, Michael Vogelsang, Lars Orth, Nicole Ivanović-Burmazović, Ivana Winter, Rainer F. Molecules Article Careful optimization of the reaction conditions provided access to the particularly small tetraruthenium macrocycle (2)Ru(2)Ph-Croc, which is composed out of two redox-active divinylphenylene-bridged diruthenium entities {Ru}-1,4-CH=CH-C(6)H(4)-CH=CH-{Ru} (Ru(2)Ph; {Ru} = Ru(CO)Cl(P(i)Pr(3))(2)) and two likewise redox-active and potentially non-innocent croconate linkers. According to single X-ray diffraction analysis, the central cavity of (2)Ru(2)Ph-Croc is shielded by the bulky P(i)Pr(3) ligands, which come into close contact. Cyclic voltammetry revealed two pairs of split anodic waves in the weakly ion pairing CH(2)Cl(2)/NBu(4)BAr(F)(24) (BAr(F)(24) = [B{C(6)H(3)(CF(3))(2)-3,5}(4)](−) electrolyte, while the third and fourth waves fall together in CH(2)Cl(2)/NBu(4)PF(6). The various oxidized forms were electrogenerated and scrutinized by IR and UV/Vis/NIR spectroscopy. This allowed us to assign the individual oxidations to the metal-organic Ru(2)Ph entities within (2)Ru(2)Ph-Croc, while the croconate ligands remain largely uninvolved. The lack of specific NIR bands that could be assigned to intervalence charge transfer (IVCT) in the mono- and trications indicates that these mixed-valent species are strictly charge-localized. (2)Ru(2)Ph-Croc is hence an exemplary case, where stepwise IR band shifts and quite sizable redox splittings between consecutive one-electron oxidations would, on first sight, point to electronic coupling, but are exclusively due to electrostatic and inductive effects. This makes (2)Ru(2)Ph-Croc a true “pretender”. MDPI 2021-08-29 /pmc/articles/PMC8433806/ /pubmed/34500666 http://dx.doi.org/10.3390/molecules26175232 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Rotthowe, Nils
Linseis, Michael
Vogelsang, Lars
Orth, Nicole
Ivanović-Burmazović, Ivana
Winter, Rainer F.
A “Pretender” Croconate-Bridged Macrocyclic Tetraruthenium Complex: Sizable Redox Potential Splittings despite Electronically Insulated Divinylphenylene Diruthenium Entities
title A “Pretender” Croconate-Bridged Macrocyclic Tetraruthenium Complex: Sizable Redox Potential Splittings despite Electronically Insulated Divinylphenylene Diruthenium Entities
title_full A “Pretender” Croconate-Bridged Macrocyclic Tetraruthenium Complex: Sizable Redox Potential Splittings despite Electronically Insulated Divinylphenylene Diruthenium Entities
title_fullStr A “Pretender” Croconate-Bridged Macrocyclic Tetraruthenium Complex: Sizable Redox Potential Splittings despite Electronically Insulated Divinylphenylene Diruthenium Entities
title_full_unstemmed A “Pretender” Croconate-Bridged Macrocyclic Tetraruthenium Complex: Sizable Redox Potential Splittings despite Electronically Insulated Divinylphenylene Diruthenium Entities
title_short A “Pretender” Croconate-Bridged Macrocyclic Tetraruthenium Complex: Sizable Redox Potential Splittings despite Electronically Insulated Divinylphenylene Diruthenium Entities
title_sort “pretender” croconate-bridged macrocyclic tetraruthenium complex: sizable redox potential splittings despite electronically insulated divinylphenylene diruthenium entities
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8433806/
https://www.ncbi.nlm.nih.gov/pubmed/34500666
http://dx.doi.org/10.3390/molecules26175232
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