trans-Dichloridobis(triisopropylphosphine-κP)palladium(II)
نویسندگان
چکیده
The title compound, [PdCl(2)(C(9)H(21)P)(2)], is a centrosymmetric mononuclear palladium(II) complex. The Pd(II) atom, which lies on an inversion center, is in a square-planar geometry.
منابع مشابه
trans-Dichloridobis[dicyclohexyl(2,4,6-trimethylphenyl)phosphane-κP]palladium(II)
The title compound, [PdCl(2)(C(21)H(33)P)(2)], forms a monomeric complex with a trans-square-planar coordination geometry about the Pd(II) atom which lies on an inversion centre. The Pd-P bond lengths are 2.3760 (13) Å, while the Pd-Cl bond lengths are 2.3172 (14) Å. The observed structure was found to be closely related to that of trans-dichloridobis[dicyclo-hex-yl(phen-yl)phosphane-κP]palladi...
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The title complex, [PdCl(2)(C(18)H(15)P)(2)]·0.5C(6)H(6), has the Pd(II) ion in a square-planar coordination mode (r.m.s. deviation for Pd, P and Cl atoms = 0.024 Å) with the PPh(3) and Cl ligands mutually trans. The benzene solvent mol-ecule is located about a crystallographic inversion centre. The title complex is isostructural with trans-dichloridobis(triphenyl-phosphane)-palladium(II) 1,4-d...
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In the title compound, [PdCl(2)(C(20)H(17)P)(2)], the Pd(II) atom lies on a center of symmetry, resulting in a distorted trans-square-planar geometry. The Pd-P and Pd-Cl bond lengths are 2.3366 (7) and 2.2966 (7) Å, respectively. The vinyl group is disordered over two sets of sites in a 0.696 (15):0.304 (15) ratio.
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The title compound, trans-[PdCl(2)(C(16)H(13)PS)(2)], forms a monomeric complex with a trans-square-planar geometry. The Pd-P bond lengths are 2.3387 (11) Å, as the Pd atom lies on an inversion point, while the Pd-Cl bond lengths are 2.2950 (12) Å.
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In the title compound, [PdCl(2)(C(21)H(21)O(3)P)(2)], the Pd atom adopts a slightly distorted square-planar coordination geometry, with pairs of the equivalent ligands in cis positions. Adjacent mol-ecules are linked by weak C-H⋯Cl hydrogen bonds. The crystal structure is additionally stabilized by π-π stacking inter-actions between the aromatic rings [shortest centroid-centroid distance = 3.75...
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