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A new class of versatile chiral-bridged atropisomeric diphosphine ligands : remarkably efficient ligand syntheses and their applications in highly enantioselective hydrogenation reactions

机译:一类新型的通用手性桥联阻转异构体二膦配体:非常有效的配体合成及其在高对映选择性氢化反应中的应用

摘要

A series of chiral diphosphine ligands denoted as PQ-Phos was prepared by atropdiastereoselective Ullmann coupling and ring-closure reactions. The Ullmann coupling reaction of the biaryl diphosphine dioxides is featured by highly efficient central-to-axial chirality transfer with diastereomeric excess >99%. This substrate-directed diastereomeric biaryl coupling reaction is unprecedented for the preparation of chiral diphosphine dioxides, and our method precludes the tedious resolution procedures usually required for preparing enantiomerically pure diphosphine ligands. The effect of chiral recognition was also revealed in a relevant asymmetric ring-closure reaction. The chiral tether bridging the two aryl units creates a conformationally rigid scaffold essential for enantiofacial differentiation; fine-tuning of the ligand scaffold (e.g., dihedral angles) can be achieved by varying the chain length of the chiral tether. The enantiomerically pure Ru- and Ir-PQ-Phos complexes have been prepared and applied to the catalytic enantioselective hydrogenations of α- and β-ketoesters (CO bond reduction), 2-(6‘-methoxy-2‘-naphthyl)propenoic acid, alkyl-substituted β-dehydroamino acids (CC bond reduction), and N-heteroaromatic compounds (CN bond reduction). An excellent level of enantioselection (up to 99.9% ee) has been attained for the catalytic reactions. In addition, the significant ligand dihedral angle effects on the Ir-catalyzed asymmetric hydrogenation of N-heteroaromatic compounds were also revealed.
机译:通过对映二酯选择性乌尔曼偶合和闭环反应制备了一系列称为PQ-Phos的手性二膦配体。联芳基二膦二氧化物的乌尔曼偶合反应的特征是高效的中心-轴向手性转移,非对映体过量> 99%。该底物定向的非对映体联芳基偶合反应对于制备手性二膦二氧化物是前所未有的,并且我们的方法排除了制备对映体纯的二膦配体通常所需的繁琐的拆分程序。在相关的不对称闭环反应中也揭示了手性识别的作用。桥接两个芳基单元的手性束缚物产生了构象刚性的骨架,这对对面的分化是必不可少的。配体支架的微调(例如,二面角)可以通过改变手性系链的链长来实现。制备了对映体纯的Ru-和Ir-PQ-Phos配合物,并将其用于α-和β-酮酸酯,2-(6'-甲氧基-2'-萘基)丙酸的催化对映选择性加氢(CO键还原) ,烷基取代的β-脱氢氨基酸(CC键还原)和N-杂芳族化合物(CN键还原)。对于催化反应,已达到极好的对映体选择性(高达99.9%ee)。另外,还揭示了对I-催化的N-杂芳族化合物不对称氢化的显着配体二面角效应。

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