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Synthesis and Catalytic Applications of a Triptycene-BasedMonophosphine Ligand for Palladium-Mediated Organic Transformations

机译:三并茂基的合成及催化应用单膦配体用于钯介导的有机转化

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摘要

1-Methoxy-8-(diphenylphosphino)triptycene (>1), featuring high structural rigidity and steric bulkiness around the phosphine functionality, was synthesized as a new chiral monophosphine ligand for transition metal-catalyzed reactions. In the presence of 5–10 mol ppm (i.e., 0.0005–0.001 mol %) Pd(OAc)2 and >1 (2 equiv for Pd), Suzuki–Miyaura cross-coupling reactions of aryl bromides and arylboronic acids proceeded effectively under mild atmospheric conditions to give the corresponding biaryl compounds in a high yield. The single-crystal X-ray analysis of a Pd(II) complex of >1 revealed its coordination structure, in which two homochiral molecules form a dimer, suggesting that triptycene could provide a chiral environment for asymmetric organic transformations. In fact, optically active >1 obtained by optical resolution showed good enantioselectivity in the palladium-catalyzed asymmetric hydrosilylation of styrene, which represents, for the first time, the asymmetric catalytic activity of triptycene-based monophosphine ligands.
机译:合成了1-甲氧基-8-(二苯基膦基)三茂(> 1 ),具有高的结构刚性和围绕膦官能团的空间体积,是过渡金属催化反应的一种新的手性单膦配体。在存在5-10 mol ppm(即0.0005-0.001 mol%)的Pd(OAc)2和> 1 (Pd为2当量)的情况下,Suzuki-Miyaura芳基溴化物和芳基硼酸在温和的大气条件下有效地进行,以高收率得到相应的联芳基化合物。对> 1 的Pd(II)配合物进行的单晶X射线分析表明其配位结构,其中两个同手性分子形成二聚体,表明三萜可以为不对称有机转化提供手性环境。 。实际上,通过光学拆分获得的旋光性> 1 在钯催化的苯乙烯不对称氢化硅烷化反应中表现出良好的对映选择性,这首次代表了三茂基单膦配体的不对称催化活性。

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