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Towards clustered carbonyl cations [M(3)(CO)(14)](2+) (M = Ru, Os): the need for innocent deelectronation

To access the hitherto almost unknown class of clustered transition metal carbonyl cations, the trimetal dodecacarbonyls M(3)(CO)(12) (M = Ru, Os) were reacted with the oxidant Ag(+)[WCA](−), but yielded the silver complexes [Ag{M(3)(CO)(12)}(2)](+)[WCA](−) (WCA = [Al(OR(F))(4)](−), [F{Al(OR(F))(3)}...

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Autores principales: Sellin, Malte, Friedmann, Christian, Mayländer, Maximilian, Richert, Sabine, Krossing, Ingo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9384829/
https://www.ncbi.nlm.nih.gov/pubmed/36093020
http://dx.doi.org/10.1039/d2sc02358j
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author Sellin, Malte
Friedmann, Christian
Mayländer, Maximilian
Richert, Sabine
Krossing, Ingo
author_facet Sellin, Malte
Friedmann, Christian
Mayländer, Maximilian
Richert, Sabine
Krossing, Ingo
author_sort Sellin, Malte
collection PubMed
description To access the hitherto almost unknown class of clustered transition metal carbonyl cations, the trimetal dodecacarbonyls M(3)(CO)(12) (M = Ru, Os) were reacted with the oxidant Ag(+)[WCA](−), but yielded the silver complexes [Ag{M(3)(CO)(12)}(2)](+)[WCA](−) (WCA = [Al(OR(F))(4)](−), [F{Al(OR(F))(3)}(2)](−); R(F) = –OC(CF(3))(3)). Addition of further diiodine I(2) to increase the redox potential led for M = Ru non-specifically to divalent mixed iodo-Ru(II)-carbonyl cations. With [NO](+), even the N–O bond was cleaved and led to the butterfly carbonyl complex cation [Ru(4)N(CO)(13)](+) in low yield. Obviously, ionization of M(3)(CO)(12) with retention of its pseudo-binary composition including only M and CO is difficult and the inorganic reagents did react non-innocently. Yet, the radical cation of the commercially available perhalogenated anthracene derivative 9,10-dichlorooctafluoroanthracene (anthracene(Hal)) is a straightforward accessible innocent deelectronator with a half-wave potential E(1/2) of 1.42 V vs. Fc(0/+). It deelectronates M(3)(CO)(12) under a CO atmosphere and leads to the structurally characterized cluster salts [M(3)(CO)(14)](2+)([WCA](−))(2) including a linear M(3) chain. The structural characterization as well as vibrational and NMR spectroscopies indicate the presence of three electronically independent sets of carbonyl ligands, which almost mimic M(CO)(5), free CO and even [M(CO)(6)](2+) in one and the same cation.
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spelling pubmed-93848292022-09-08 Towards clustered carbonyl cations [M(3)(CO)(14)](2+) (M = Ru, Os): the need for innocent deelectronation Sellin, Malte Friedmann, Christian Mayländer, Maximilian Richert, Sabine Krossing, Ingo Chem Sci Chemistry To access the hitherto almost unknown class of clustered transition metal carbonyl cations, the trimetal dodecacarbonyls M(3)(CO)(12) (M = Ru, Os) were reacted with the oxidant Ag(+)[WCA](−), but yielded the silver complexes [Ag{M(3)(CO)(12)}(2)](+)[WCA](−) (WCA = [Al(OR(F))(4)](−), [F{Al(OR(F))(3)}(2)](−); R(F) = –OC(CF(3))(3)). Addition of further diiodine I(2) to increase the redox potential led for M = Ru non-specifically to divalent mixed iodo-Ru(II)-carbonyl cations. With [NO](+), even the N–O bond was cleaved and led to the butterfly carbonyl complex cation [Ru(4)N(CO)(13)](+) in low yield. Obviously, ionization of M(3)(CO)(12) with retention of its pseudo-binary composition including only M and CO is difficult and the inorganic reagents did react non-innocently. Yet, the radical cation of the commercially available perhalogenated anthracene derivative 9,10-dichlorooctafluoroanthracene (anthracene(Hal)) is a straightforward accessible innocent deelectronator with a half-wave potential E(1/2) of 1.42 V vs. Fc(0/+). It deelectronates M(3)(CO)(12) under a CO atmosphere and leads to the structurally characterized cluster salts [M(3)(CO)(14)](2+)([WCA](−))(2) including a linear M(3) chain. The structural characterization as well as vibrational and NMR spectroscopies indicate the presence of three electronically independent sets of carbonyl ligands, which almost mimic M(CO)(5), free CO and even [M(CO)(6)](2+) in one and the same cation. The Royal Society of Chemistry 2022-07-07 /pmc/articles/PMC9384829/ /pubmed/36093020 http://dx.doi.org/10.1039/d2sc02358j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Sellin, Malte
Friedmann, Christian
Mayländer, Maximilian
Richert, Sabine
Krossing, Ingo
Towards clustered carbonyl cations [M(3)(CO)(14)](2+) (M = Ru, Os): the need for innocent deelectronation
title Towards clustered carbonyl cations [M(3)(CO)(14)](2+) (M = Ru, Os): the need for innocent deelectronation
title_full Towards clustered carbonyl cations [M(3)(CO)(14)](2+) (M = Ru, Os): the need for innocent deelectronation
title_fullStr Towards clustered carbonyl cations [M(3)(CO)(14)](2+) (M = Ru, Os): the need for innocent deelectronation
title_full_unstemmed Towards clustered carbonyl cations [M(3)(CO)(14)](2+) (M = Ru, Os): the need for innocent deelectronation
title_short Towards clustered carbonyl cations [M(3)(CO)(14)](2+) (M = Ru, Os): the need for innocent deelectronation
title_sort towards clustered carbonyl cations [m(3)(co)(14)](2+) (m = ru, os): the need for innocent deelectronation
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9384829/
https://www.ncbi.nlm.nih.gov/pubmed/36093020
http://dx.doi.org/10.1039/d2sc02358j
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