Published 1985 | Version v1
Journal article

The chemistry of platinum in the +3 oxidation state

  • 1. Massachusetts Inst. of Tech., Cambridge (USA). Dept. of Chemistry

Description

Platinum(III) is no longer an uncommon oxidation state. Numerous binuclear platinum(III) complexes have been prepared and structurally characterized over the past eight years. These include sulfate-bridged dimers of Dsub(4h) symmetry, [Pt2(S04)4L2]2-, L = H2O, DMSO; phosphate-bridged complexes [Pt2(HPO4]4→(H2O)2]2- and [Pt2(H2PO4)(HPO4]3(py)2]; POP H2P2O52--bridged ions [Pt2→(POP)4X2]2- X = halide; an extensive series of α-pyridonate (C5H4NO-)-bridged head-to-head and head-to-tail complexes, [Pt2(NH3)4(C5H4 NO)2XY]- X, Y = NO3, NO2, H2O, Cl, Br; n = 2, 3; and organometallic derivatives such as [PT2(CH3)4→(CF3CO2)2(4-Mepy)2]. In all cases there is a Pt-Pt single bond of length 2.47-2.7A, pseudo-octahedral geometry about platinum, and two or more bridging ligands. The complexes are stable in solution and some undergo quasi-reversible two-electron redox reactions. Mononuclear platinum(III) complexes are less well characterized structurally, but have been stabilized in diamagnetic host lattices in the solid state and by macrobicyclic cage ligands in solution following pulse radiolytic or γ-irridation of precursor platinum(II) complexes. The first unequivocal, crystallographically characterized mononuclear platinum(III) complex, [Pt(C6Cl5)4], has just been reported

Additional details

Publishing Information

Journal Title
Isr. J. Chem.
Journal Volume
25
Journal Issue
2
Series
Isr. J. Chem. ;Transition metal complexes with uncommon oxidation states.
Journal Page Range
130-137
ISSN
0021-2148
CODEN
ISJCA

Optional Information

Notes
66 refs.; 5 figs.; l table.