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Rhodium complexes of sterically demanding diphosphonites: Coordination chemistry and catalysis

机译:具有空间需求的二亚膦酸酯的铑配合物:配位化学和催化

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摘要

The coordination chemistry of various sterically constrained diphosphonites 1-6 with rhodium are reported. The stoichiometric reaction of ligand 5 with [Rh(í-Cl(CO)2]2 gives rise to the sole formation of trans-[RhCl(CO)(5)] (7), as shown by NMR and IR spectroscopy and X-ray crystallography. The molecular structure reveals a weak interaction between the metal center and the oxygen from the xanthene backbone. This complex serves as a structuralmodel for the first intermediate in the catalytic cycle of rhodium hydroformylation, [Rh(H)-(CO)(PkP)]. A detailed study on the solution structure of the catalyst resting state under catalytic conditions is performed by high-pressure NMR and FT-IR spectroscopy. The spectroscopic data show that under hydroformylation conditions the bidentate ligands form well-defined complexes with the structure [Rh(H)(CO)2(PkP)]. All ligands show preference for a bis-equatorial (ee) coordination mode in the trigonal-bipyramidal Rh complexes. These novel sterically constrained diphosphonite ligands are applied in the rhodium hydroformylation of 1-octene and 2-butene, and good activities and regioselectivities are obtained.
机译:报道了各种空间约束的二膦酸酯1-6与铑的配位化学。配体5与[Rh(1-Cl(CO)2] 2)的化学计量反应引起反式[RhCl(CO)(5)](7)的唯一形成,如NMR和IR光谱所示,X射线晶体学:分子结构揭示了金属中心与the吨骨架上的氧之间的弱相互作用,这种配合物是铑加氢甲酰化[Rh(H)-(CO)]催化循环中第一个中间体的结构模型(PkP)..通过高压NMR和FT-IR光谱对催化剂在静止状态下的溶液结构进行了详细的研究,光谱数据表明,在加氢甲酰化条件下,双齿配体形成了明确的配合物。结构[Rh(H)(CO)2(PkP)]。在三角-双锥体Rh配合物中,所有配体均偏爱双赤道(ee)配位模式,这些新颖的空间受限的二亚膦酸酯配体被用于铑加氢甲酰化1-辛烯和2-丁烯获得良好的活性和区域选择性。

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