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Ligand-Based Reactivity of Oxygenation and Alkylation in Cobalt Complexes Binding with (Thiolato)phosphine Derivatives. | LitMetric

In our efforts to understand the nature of metal thiolates, we have explored the chemistry of cobalt ion supported by (thiolato)phosphine ligand derivatives. Herein, we synthesized and characterized a square-planar Co complex binding with a bidentate (thiolato)phosphine ligand, Co(PS1″) () ([PS1″] = [P(Ph)(CH-3-SiMe-2-S)]). The complex activates O to form a ligand-based oxygenation product, Co(OPS1″) () ([OPS1″] = [PO(Ph)(CH-3-SiMe-2-S)]). In addition, an octahedral Co complex with a tridentate (thiolato)phosphine ligand, [NEt][Co(PS2*)] () ([PS2*] = [P(Ph)(CH-3-Ph-2-S)]), was obtained. Compound cleaves the C-Cl bond in dichloromethane via an S-based nucleophilic attack to generate a chloromethyl thioether group. Two isomeric products, [Co(PS2*)(PSS*)] ( and ) ([PSS*] = [P(Ph)(CH-3-Ph-2-S)(CH-3-Ph-2-SCHCl)]), were isolated and fully characterized. Both transformations, oxygenation of a Co-bound phosphine donor in and alkylation of a Co-bound thiolate in , were monitored by spectroscopic methods. These reaction products were isolated and fully characterized. Density functional theory (DFT, the B3LYP functional) calculations were performed to understand the electronic structure of as well as the pathway of its transformation to .

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http://dx.doi.org/10.1021/acs.inorgchem.9b03740DOI Listing

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