4.7 Article

Oxidation Chemistry of Axially Protected Mo2 and W2 Quadruply Bonded Compounds

Journal

INORGANIC CHEMISTRY
Volume 48, Issue 24, Pages 11889-11895

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ic901965b

Keywords

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Funding

  1. National Science Foundation [CHE-0745500, CHE-0741901, CHE-9208463]
  2. Direct For Mathematical & Physical Scien
  3. Division Of Chemistry [745500] Funding Source: National Science Foundation

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Reported is a facile, high-yielding one-pot synthesis of the quadruply bonded ditungsten (II,II) compound W-2(dpa)(4) (1) (dpa=2,2'-dipyridylamide), which was obtained from W(CO)(6) at high temperature in naphthalene. A similar reaction in 1,2-dichlorobenzene furnished a ditungsten (III, III) species as the major product that was crystallized as [W-2(dpa)(3)Cl-2][BPh4] (3). The [W-2(dpa)(3)Cl-2](+) cation is better prepared by oxidation of 1 with SO2Cl2 Compound 1 was characterized by X-ray crystallography and cyclic-voltammetry, and is compared with its earlier reported molybdenum analogue, Mo-2(dpa)(4) (2). One-electron oxidation products of 1 and 2, [W-2(dpa)(4)][BPh4] (1BPh(4)) and [Mo-2(dpa)(4)][BPh4] (2BPh(4)), respectively, have also been synthesized. The crystallographically determined metal-metal distances of 2.23 angstrom and 2.14 angstrom in 1BPh(4) and 2BPh(4), respectively, are in agreement with metal-metal bond orders of 3.5. Unlike most previously reported Mo-2(5+) and W-2(5+) compounds, the primary coordination spheres around the M-2-units in 1/1BPh(4) and 2/2BPh(4) remain unchanged upon one-electron oxidation, because the tridentate dpa ligand hinders axial coordination of exogenous ligands

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