4.7 Article

Copper(I) clusters with bulky dithiocarboxylate, thiolate, and selenolate ligands

Journal

DALTON TRANSACTIONS
Volume 45, Issue 36, Pages 14265-14276

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c6dt02709a

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Funding

  1. University of Missouri College of Arts & Science Alumni Faculty Incentive Grant
  2. PRIME fund

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The coordination chemistry of copper has interest due to its use in biological systems as well as for photochemical and medicinal properties. We report the coordination chemistry of copper(I) complexes using terphenyl-based dithiocarboxylate, thiolate, and selenolate ligands. The number of metal ions of the resulting complexes can be tuned by varying the steric properties of the terphenyl ligands, changing the starting material, as well as adding PEt3. In addition, the steric crowding of the terphenyl ligand leads to varying reactivity. For example, while the reaction of carbon disulfide with [Cu(2,6-(Ph)(2)C6H3)](2) results in an insertion into the copper-carbon bond, no reaction occurs with [Cu(2,4,6-(Mes)(2)C6H3)], Mes = 2,4,6-Me3C6H2, or [Et3PCu(2,4,6-(Mes)(2)C6H2)(2)C6H3]. The synthesis and characterization of new copper(I) complexes using NMR and IR spectroscopy, as well as X-ray crystallography is described.

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