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Highly Reduced Ruthenium Carbide Carbonyl Clusters: Synthesis, Molecular Structure, Reactivity, Electrochemistry, and Computational Investigation of [Ru(6)C(CO)(15)](4–)

[Image: see text] The reaction of [Ru(6)C(CO)(16)](2–) (1) with NaOH in DMSO resulted in the formation of a highly reduced [Ru(6)C(CO)(15)](4–) (2), which was readily protonated by acids, such as HBF(4)·Et(2)O, to [HRu(6)C(CO)(15)](3–) (3). Oxidation of 2 with [Cp(2)Fe][PF(6)] or [C(7)H(7)][BF(4)] i...

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Autores principales: Cesari, Cristiana, Bortoluzzi, Marco, Funaioli, Tiziana, Femoni, Cristina, Iapalucci, Maria Carmela, Zacchini, Stefano
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10498495/
https://www.ncbi.nlm.nih.gov/pubmed/37646082
http://dx.doi.org/10.1021/acs.inorgchem.3c01711
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author Cesari, Cristiana
Bortoluzzi, Marco
Funaioli, Tiziana
Femoni, Cristina
Iapalucci, Maria Carmela
Zacchini, Stefano
author_facet Cesari, Cristiana
Bortoluzzi, Marco
Funaioli, Tiziana
Femoni, Cristina
Iapalucci, Maria Carmela
Zacchini, Stefano
author_sort Cesari, Cristiana
collection PubMed
description [Image: see text] The reaction of [Ru(6)C(CO)(16)](2–) (1) with NaOH in DMSO resulted in the formation of a highly reduced [Ru(6)C(CO)(15)](4–) (2), which was readily protonated by acids, such as HBF(4)·Et(2)O, to [HRu(6)C(CO)(15)](3–) (3). Oxidation of 2 with [Cp(2)Fe][PF(6)] or [C(7)H(7)][BF(4)] in CH(3)CN resulted in [Ru(6)C(CO)(15)(CH(3)CN)](2–) (5), which was quantitatively converted into 1 after exposure to CO atmosphere. The reaction of 2 with a mild methylating agent such as CH(3,)I afforded the purported [Ru(6)C(CO)(14)(COCH(3))](3–) (6). By employing a stronger reagent, that is, CF(3)SO(3)CH(3), a mixture of [HRu(6)C(CO)(16)](−) (4), [H(3)Ru(6)C(CO)(15)](−) (7), and [Ru(6)C(CO)(15)(CH(3)CNCH(3))](−) (8) was obtained. The molecular structures of 2–5, 7, and 8 were determined by single-crystal X-ray diffraction as their [NEt(4)](4)[2]·CH(3)CN, [NEt(4)](3)[3], [NEt(4)][4], [NEt(4)](2)[5], [NEt(4)][7], and [NEt(4)][8]·solv salts. The carbyne–carbide cluster 6 was partially characterized by IR spectroscopy and ESI-MS, and its structure was computationally predicted using DFT methods. The redox behavior of 2 and 3 was investigated by electrochemical and IR spectroelectrochemical methods. Computational studies were performed in order to unravel structural and thermodynamic aspects of these octahedral Ru–carbide carbonyl clusters displaying miscellaneous ligands and charges in comparison with related iron derivatives.
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spelling pubmed-104984952023-09-14 Highly Reduced Ruthenium Carbide Carbonyl Clusters: Synthesis, Molecular Structure, Reactivity, Electrochemistry, and Computational Investigation of [Ru(6)C(CO)(15)](4–) Cesari, Cristiana Bortoluzzi, Marco Funaioli, Tiziana Femoni, Cristina Iapalucci, Maria Carmela Zacchini, Stefano Inorg Chem [Image: see text] The reaction of [Ru(6)C(CO)(16)](2–) (1) with NaOH in DMSO resulted in the formation of a highly reduced [Ru(6)C(CO)(15)](4–) (2), which was readily protonated by acids, such as HBF(4)·Et(2)O, to [HRu(6)C(CO)(15)](3–) (3). Oxidation of 2 with [Cp(2)Fe][PF(6)] or [C(7)H(7)][BF(4)] in CH(3)CN resulted in [Ru(6)C(CO)(15)(CH(3)CN)](2–) (5), which was quantitatively converted into 1 after exposure to CO atmosphere. The reaction of 2 with a mild methylating agent such as CH(3,)I afforded the purported [Ru(6)C(CO)(14)(COCH(3))](3–) (6). By employing a stronger reagent, that is, CF(3)SO(3)CH(3), a mixture of [HRu(6)C(CO)(16)](−) (4), [H(3)Ru(6)C(CO)(15)](−) (7), and [Ru(6)C(CO)(15)(CH(3)CNCH(3))](−) (8) was obtained. The molecular structures of 2–5, 7, and 8 were determined by single-crystal X-ray diffraction as their [NEt(4)](4)[2]·CH(3)CN, [NEt(4)](3)[3], [NEt(4)][4], [NEt(4)](2)[5], [NEt(4)][7], and [NEt(4)][8]·solv salts. The carbyne–carbide cluster 6 was partially characterized by IR spectroscopy and ESI-MS, and its structure was computationally predicted using DFT methods. The redox behavior of 2 and 3 was investigated by electrochemical and IR spectroelectrochemical methods. Computational studies were performed in order to unravel structural and thermodynamic aspects of these octahedral Ru–carbide carbonyl clusters displaying miscellaneous ligands and charges in comparison with related iron derivatives. American Chemical Society 2023-08-30 /pmc/articles/PMC10498495/ /pubmed/37646082 http://dx.doi.org/10.1021/acs.inorgchem.3c01711 Text en © 2023 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 Cesari, Cristiana
Bortoluzzi, Marco
Funaioli, Tiziana
Femoni, Cristina
Iapalucci, Maria Carmela
Zacchini, Stefano
Highly Reduced Ruthenium Carbide Carbonyl Clusters: Synthesis, Molecular Structure, Reactivity, Electrochemistry, and Computational Investigation of [Ru(6)C(CO)(15)](4–)
title Highly Reduced Ruthenium Carbide Carbonyl Clusters: Synthesis, Molecular Structure, Reactivity, Electrochemistry, and Computational Investigation of [Ru(6)C(CO)(15)](4–)
title_full Highly Reduced Ruthenium Carbide Carbonyl Clusters: Synthesis, Molecular Structure, Reactivity, Electrochemistry, and Computational Investigation of [Ru(6)C(CO)(15)](4–)
title_fullStr Highly Reduced Ruthenium Carbide Carbonyl Clusters: Synthesis, Molecular Structure, Reactivity, Electrochemistry, and Computational Investigation of [Ru(6)C(CO)(15)](4–)
title_full_unstemmed Highly Reduced Ruthenium Carbide Carbonyl Clusters: Synthesis, Molecular Structure, Reactivity, Electrochemistry, and Computational Investigation of [Ru(6)C(CO)(15)](4–)
title_short Highly Reduced Ruthenium Carbide Carbonyl Clusters: Synthesis, Molecular Structure, Reactivity, Electrochemistry, and Computational Investigation of [Ru(6)C(CO)(15)](4–)
title_sort highly reduced ruthenium carbide carbonyl clusters: synthesis, molecular structure, reactivity, electrochemistry, and computational investigation of [ru(6)c(co)(15)](4–)
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10498495/
https://www.ncbi.nlm.nih.gov/pubmed/37646082
http://dx.doi.org/10.1021/acs.inorgchem.3c01711
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