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首页> 外文期刊>The Journal of Organic Chemistry >Development of a new class of chiral phosphorus ligands: P-chirogenic diaminophosphine oxides. A unique source of enantioselection in Pd-catalyzed asymmetric construction of quaternary carbons
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Development of a new class of chiral phosphorus ligands: P-chirogenic diaminophosphine oxides. A unique source of enantioselection in Pd-catalyzed asymmetric construction of quaternary carbons

机译:新型手性磷配体的开发:P-手性二氨基膦氧化物。钯催化季碳的不对称结构中对映体的独特来源

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摘要

We have recently developed a new class of chiral phosphorus ligands: P-chirogenic diaminophosphine oxides. These pentavalent phosphorus compounds have been successfully applied to Pd-catalyzed asymmetric construction of tertiary and quaternary carbons. The actual ligand structure was the trivalent phosphorus species 17, which was generated in situ by BSA-induced P(V) to P(III) transformation of 6, the preligand. Detailed mechanistic studies, including asymmetric amplification and initial rate kinetics, revealed that complex 18 [Pd-17 (1:2) complex] was the active catalyst. The important function of the nitrogen atom on the sidearm in the ligands was also clarified. The source of enantioselection in the construction of asymmetric quaternary carbons was the secondary ligand substrate interaction mediated by N-Zn coordination.
机译:最近,我们开发了新的一类手性磷配体:P-手性二氨基膦氧化物。这些五价磷化合物已成功地应用于Pd催化的叔碳和季碳的不对称结构。实际的配体结构是三价磷物质17,它是由BSA诱导的6(前配体)的P(V)到P(III)转化原位生成的。详细的机理研究(包括不对称扩增和初始速率动力学)表明,络合物18 [Pd-17(1:2)络合物]是活性催化剂。还阐明了配体侧臂上氮原子的重要功能。不对称季碳结构中对映体的来源是由N-Zn配位介导的次级配体底物相互作用。

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