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A rational pre-catalyst design for bis-phosphine mono-oxide palladium catalyzed reactions

机译:双膦一氧化物钯催化反应的合理预催化剂设计

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摘要

Significant catalyst loading reduction and increased reaction robustness have been achieved for a Pd-catalyzed asymmetric intramolecular C–N coupling through comprehensive mechanistic studies. Detailed kinetic, spectroscopic, and crystallographic analyses revealed that the mono-oxidation of the bis-phosphine ligand is critical for a successful transformation. 31P NMR studies provided an understanding of the inefficient activation of the Pd(OAc)2/(R,R)-QuinoxP* pre-catalyst to form the active bis-phosphine mono-oxide–Pd(0) catalyst with competitive formation of a less active (R,R)-QuinoxP*·PdBr2 complex. Based on these detailed mechanistic studies, a new series of bis-phosphine mono-oxides (BPMO)-ligated Pd(ii) pre-catalysts have been rationally developed that allow for reliable and complete catalyst activation which should have general utility in academic and industrial settings.
机译:通过全面的机理研究,Pd催化的不对称分子内C–N偶联显着降低了催化剂的负载并提高了反应的稳定性。详细的动力学,光谱和晶体学分析表明,双膦配体的单氧化对于成功转化至关重要。 31 P NMR研究提供了对Pd(OAc)2 /(R,R)-QuinoxP *前催化剂活化效率低以形成活性双膦一氧化物Pd( 0)具有竞争性地形成活性较低的(R,R)-QuinoxP *·PdBr2络合物的催化剂。基于这些详细的机理研究,已经合理地开发了一系列新的连接双膦一氧化物(BPMO)的Pd(ii)预催化剂,该催化剂可实现可靠而完整的催化剂活化,在学术和工业领域应具有普遍的用途。设置。

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