The self-assembly
of Xantphos-capped M(OTf)2 (M = cis-[M′(Xantphos)]2+; M′
= Pd, Pt) with bridging ligands 1,4-benezenedithiol or 4,4′-biphenyldithiol
has been investigated. The reactions have yielded complexes [M{S(C6H4)
n
SH}]2(OTf)2 (I) and [M
2{S(C6H4)
n
S}]2(OTf)4 (II)
(n = 1 or 2). The equilibrium between I and II has been established in platinum complexes for n = 2, whereas the analogous Pd complex exclusively exist
as II. These results are different from our previously
reported dppe or triethyl phosphine-capped complexes which showed
only type II. The same reaction with 1,3-benezenedithiol
lead to the complex [M
2(SC6H4SSC6H4S)](OTf)2 (III), containing a S–S bond between two thiolate ligands, formed
via a complex of type I in solution. Characterization
of the complexes was accomplished by NMR spectroscopy, UV–vis
spectroscopy and mass spectrometry, and X-ray crystallography. Density
functional calculations were performed to estimate the relative stability
of three types of complexes. The palladium complexes are excellent
catalysts in Suzuki C–C cross coupling reactions under mild
conditions, and can be reused eight times without losing significant
yield. The activity of the Pd catalysts derived from three dithiol
ligand follows opposite trend of the stability as III > II > I. The comparative catalytic
activity of the tetranuclear Pd complexes (II) of bis-phosphines
of varied bite angles, including the structurally characterized [Pd2(dppf)2(SC12H8S)]2(OTf)4 has also been demonstrated.
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