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S‐Alkylation of Soft Scorpionates
Authors:Rajeev Rajasekharan‐Nair  Dean Moore  Dr Kirsten Chalmers  Dr Dawn Wallace  Louise M Diamond  Lisa Darby  Dr David R Armstrong  Dr John Reglinski  Dr Mark D Spicer
Institution:WestCHEM, Department of Pure & Applied Chemistry, University of Strathclyde, 295 Cathedral Street, Glasgow, G1 1XL (UK)
Abstract:The alkylation reactions of soft scorpionates are reported. The hydrotris(S‐alkyl‐methimazolyl)borate dications (alkyl=methyl, allyl, benzyl), which were prepared by the reaction of TmMe anion and primary alkyl halides, have been isolated and structurally characterised. The reaction is, however, not universally successful. DFT analysis of these alkylation reactions (C?S versus B? H alkylation) indicates that the observed outcome is driven by kinetic factors. Extending the study to incorporate alternative imine thiones (mercaptobenzothiazole, bz; thiazoline, tz) led to the structural characterisation of diaquo‐μ‐aquohydrotris(mercaptobenzothiazolyl)boratosodium], which contains sodium atoms in the κ3S,S,S coordination mode. Alkylation of NaTbz] and NatzTtz] leads to decomposition resulting in the formation of the simple S‐alkylated heterocycles. The analysis of the species involved in these reactions shows an inherent weakness in the B? N bond in soft scorpionates, which has implications for their use in more advanced chemistry.
Keywords:B?N bonds  density functional calculations  ligands  S‐alkylation  scorpionates
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