Homi Bhabha National Institute , Training School Complex , Mumbai - 400094 , India.
Department of Chemistry , Texas A&M University , P.O. Box 30012, College Station , Texas 77842-3012 , United States.
Inorg Chem. 2019 Mar 4;58(5):2965-2978. doi: 10.1021/acs.inorgchem.8b02726. Epub 2019 Feb 11.
The self-assembly of Xantphos-capped M(OTf) (M = cis-[M'(Xantphos)]; M' = Pd, Pt) with bridging ligands 1,4-benezenedithiol or 4,4'-biphenyldithiol has been investigated. The reactions have yielded complexes M{S(CH) SH} (I) and M{S(CH) S} (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(SCHSSCHS) (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 Pd(dppf)(SCHS) has also been demonstrated.
Xantphos 封端的 M(OTf)(M = cis-[M'(Xantphos)];M' = Pd,Pt)与桥联配体 1,4-苯二硫醇或 4,4'-联苯二硫醇的自组装已被研究。这些反应生成了配合物 M{S(CH) SH}(I)和 M{S(CH) S}(II)(n = 1 或 2)。在铂配合物中,n = 2 时已经建立了 I 和 II 之间的平衡,而类似的 Pd 配合物则仅以 II 的形式存在。这些结果与我们之前报道的 dppe 或三乙基膦封端的配合物不同,后者仅显示出 II 型。与 1,3-苯二硫醇的相同反应导致了配合物 M(SCHSSCHS)(III)的形成,其中两个硫醇配体之间存在 S-S 键,通过溶液中的 I 型配合物形成。通过 NMR 光谱、UV-vis 光谱和质谱以及 X 射线晶体学对配合物进行了表征。进行了密度泛函计算以估计三种类型配合物的相对稳定性。钯配合物是在温和条件下 Suzuki C-C 交叉偶联反应的优异催化剂,可重复使用八次而不会显著损失产率。三种二硫醇配体的钯配合物的活性遵循稳定性的相反趋势,即 III > II > I。还证明了具有不同结合角的双膦的四核 Pd 配合物(II)的比较催化活性,包括结构表征的 Pd(dppf)(SCHS)。