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Mesoionic Carbenes in Low- to High-Valent Vanadium Chemistry

[Image: see text] We report the synthesis of vanadium(V) oxo complex 1 with a pincer-type dianionic mesoionic carbene (MIC) ligand L(1) and the general formula [VOCl(L(1))]. A comparison of the structural (SC-XRD), electronic (UV–vis), and electrochemical (cyclic voltammetry) properties of 1 with th...

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Autores principales: Neururer, Florian R., Liu, Shenyu, Leitner, Daniel, Baltrun, Marc, Fisher, Katherine R., Kopacka, Holger, Wurst, Klaus, Daumann, Lena J., Munz, Dominik, Hohloch, Stephan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2021
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8527456/
https://www.ncbi.nlm.nih.gov/pubmed/34590834
http://dx.doi.org/10.1021/acs.inorgchem.1c02087
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author Neururer, Florian R.
Liu, Shenyu
Leitner, Daniel
Baltrun, Marc
Fisher, Katherine R.
Kopacka, Holger
Wurst, Klaus
Daumann, Lena J.
Munz, Dominik
Hohloch, Stephan
author_facet Neururer, Florian R.
Liu, Shenyu
Leitner, Daniel
Baltrun, Marc
Fisher, Katherine R.
Kopacka, Holger
Wurst, Klaus
Daumann, Lena J.
Munz, Dominik
Hohloch, Stephan
author_sort Neururer, Florian R.
collection PubMed
description [Image: see text] We report the synthesis of vanadium(V) oxo complex 1 with a pincer-type dianionic mesoionic carbene (MIC) ligand L(1) and the general formula [VOCl(L(1))]. A comparison of the structural (SC-XRD), electronic (UV–vis), and electrochemical (cyclic voltammetry) properties of 1 with the benzimidazolinylidene congener 2 (general formula [VOCl(L(2))]) shows that the MIC is a stronger donor also for early transition metals with low d-electron population. Since electrochemical studies revealed both complexes to be reversibly reduced, the stronger donor character of MICs was not only demonstrated for the vanadium(V) but also for the vanadium(IV) oxidation state by isolating the reduced vanadium(IV) complexes [Co(Cp*)(2)][1] and [Co(Cp*)(2)][2] ([Co(Cp*)(2)] = decamethylcobaltocenium). The electronic structures of the compounds were investigated by computational methods. Complex 1 was found to be a moderate precursor for salt metathesis reactions, showing selective reactivity toward phenolates or secondary amides, but not toward primary amides and phosphides, thiophenols, or aryls/alkyls donors. Deoxygenation with electron-rich phosphines failed to give the desired vanadium(III) complex. However, treatment of the deprotonated ligand precursor with vanadium(III) trichloride resulted in the clean formation of the corresponding MIC vanadium(III) complex 6, which undergoes a clean two-electron oxidation with organic azides yielding the corresponding imido complexes. The reaction with TMS-N(3) did not afford a nitrido complex, but instead the imido complex 10. This study reveals that, contrary to popular belief, MICs are capable of supporting early transition-metal complexes in a variety of oxidation states, thus making them promising candidates for the activation of small molecules and redox catalysis.
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spelling pubmed-85274562021-10-20 Mesoionic Carbenes in Low- to High-Valent Vanadium Chemistry Neururer, Florian R. Liu, Shenyu Leitner, Daniel Baltrun, Marc Fisher, Katherine R. Kopacka, Holger Wurst, Klaus Daumann, Lena J. Munz, Dominik Hohloch, Stephan Inorg Chem [Image: see text] We report the synthesis of vanadium(V) oxo complex 1 with a pincer-type dianionic mesoionic carbene (MIC) ligand L(1) and the general formula [VOCl(L(1))]. A comparison of the structural (SC-XRD), electronic (UV–vis), and electrochemical (cyclic voltammetry) properties of 1 with the benzimidazolinylidene congener 2 (general formula [VOCl(L(2))]) shows that the MIC is a stronger donor also for early transition metals with low d-electron population. Since electrochemical studies revealed both complexes to be reversibly reduced, the stronger donor character of MICs was not only demonstrated for the vanadium(V) but also for the vanadium(IV) oxidation state by isolating the reduced vanadium(IV) complexes [Co(Cp*)(2)][1] and [Co(Cp*)(2)][2] ([Co(Cp*)(2)] = decamethylcobaltocenium). The electronic structures of the compounds were investigated by computational methods. Complex 1 was found to be a moderate precursor for salt metathesis reactions, showing selective reactivity toward phenolates or secondary amides, but not toward primary amides and phosphides, thiophenols, or aryls/alkyls donors. Deoxygenation with electron-rich phosphines failed to give the desired vanadium(III) complex. However, treatment of the deprotonated ligand precursor with vanadium(III) trichloride resulted in the clean formation of the corresponding MIC vanadium(III) complex 6, which undergoes a clean two-electron oxidation with organic azides yielding the corresponding imido complexes. The reaction with TMS-N(3) did not afford a nitrido complex, but instead the imido complex 10. This study reveals that, contrary to popular belief, MICs are capable of supporting early transition-metal complexes in a variety of oxidation states, thus making them promising candidates for the activation of small molecules and redox catalysis. American Chemical Society 2021-09-30 2021-10-18 /pmc/articles/PMC8527456/ /pubmed/34590834 http://dx.doi.org/10.1021/acs.inorgchem.1c02087 Text en © 2021 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Neururer, Florian R.
Liu, Shenyu
Leitner, Daniel
Baltrun, Marc
Fisher, Katherine R.
Kopacka, Holger
Wurst, Klaus
Daumann, Lena J.
Munz, Dominik
Hohloch, Stephan
Mesoionic Carbenes in Low- to High-Valent Vanadium Chemistry
title Mesoionic Carbenes in Low- to High-Valent Vanadium Chemistry
title_full Mesoionic Carbenes in Low- to High-Valent Vanadium Chemistry
title_fullStr Mesoionic Carbenes in Low- to High-Valent Vanadium Chemistry
title_full_unstemmed Mesoionic Carbenes in Low- to High-Valent Vanadium Chemistry
title_short Mesoionic Carbenes in Low- to High-Valent Vanadium Chemistry
title_sort mesoionic carbenes in low- to high-valent vanadium chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8527456/
https://www.ncbi.nlm.nih.gov/pubmed/34590834
http://dx.doi.org/10.1021/acs.inorgchem.1c02087
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