Reductive Hydrogenation of Sulfido-Bridged Tantalum Alkyl Complexes: A Mechanistic Insight.

Inorg Chem

Departamento de Química Orgánica y Química Inorgánica, Instituto de Investigación Química "Andrés M. del Río" (IQAR), Universidad de Alcalá, Campus Universitario, E-28805 Alcalá de Henares, Madrid, Spain.

Published: July 2023

AI Article Synopsis

  • - Hydrogenolysis of tantalum(IV) dinuclear complexes with alkyl sulfido-bridges produced a tetrametallic sulfide cluster and corresponding alkanes through a systematic hydrogenation process involving intermediates.
  • - The hydrogenation of a phenyl-substituted precursor revealed a stepwise mechanism, leading to a tetranuclear hydride sulfide as an unstable intermediate.
  • - Further experiments with tantalum alkyl compounds containing functional groups showed diverse reaction pathways, resulting in asymmetric complexes and complex transformations like dearomatization, which were analyzed through computational methods.

Article Abstract

Hydrogenolysis of a series of alkyl sulfido-bridged tantalum(IV) dinuclear complexes [Ta(η-CMe)R(μ-S)] [R = Me, Bu (), Et, CHSiMe, CH, Ph, CHPh (), -MeCHCH ()] has led quantitatively to the Ta(III) tetrametallic sulfide cluster [Ta(η-CMe)(μ-S)] () along with the corresponding alkane. Mechanistic information for the formation of the unique low-valent tetrametallic compound was gathered by hydrogenation of the phenyl-substituted precursor [Ta(η-CMe)Ph(μ-S)], which proceeds through a stepwise hydrogenation process, disclosing the formation of the intermediate tetranuclear hydride sulfide [Ta(η-CMe)(H)Ph(μ-S)(μ-S)] (). Extending our studies toward tantalum alkyl precursors containing functional groups susceptible to hydrogenation, such as the allyl-and benzyl-substituted compounds [Ta(η-CMe)(η-CH)(μ-S)] and [Ta(η-CMe)(CHPh)(μ-S)] (), enables alternative reaction pathways en route to the formation of . In the former case, the dimetallic system undergoes selective hydrogenation of the unsaturated allyl moiety, forming the asymmetric complex [{Ta(η-CMe)(η-CH)}(μ-S){Ta(η-CMe)(CH)}] () with only one propyl fragment. Species , in addition to the hydrogenation of one benzyl fragment and concomitant toluene release, also undergoes partial hydrogenation and dearomatization of the phenyl ring on the vicinal benzyl unity to give a η-cyclohexadienyl complex [Ta(η-CMe)(μ-CHCH)(μ-S)] (). The mechanistic implications of the latter hydrogenation process are discussed by means of DFT calculations.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10324320PMC
http://dx.doi.org/10.1021/acs.inorgchem.3c00043DOI Listing

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