首页> 外文期刊>Journal of the American Chemical Society >Combined Experimental and Theoretical Study of the Mechanism and Enantioselectivity of Palladium-Catalyzed Intermolecular Heck Coupling
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Combined Experimental and Theoretical Study of the Mechanism and Enantioselectivity of Palladium-Catalyzed Intermolecular Heck Coupling

机译:钯催化分子间Heck偶联机理和对映选择性的实验和理论研究相结合

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摘要

The asymmetric Heck reaction using P,N-ligands has been studied by a combination of theoretical and experimental methods. The reaction follows Halpern-style selectivity; that is, the major isomer is produced from the least favored form of the pre-insertion intermediate. The initially formed Ph-Pd(P,N) species prefers a geometry with the phenyl trans to N. However, the alternative form, with Ph trans to P, is much less stable but much more reactive. In the preferred transition state, the phenyl moiety is trans to P, but significant electron density has been transferred to the alkene carbon trans to N. The steric interactions in this transition state fully account for the enantioselectivity observed with the ligands studied. The calculations also predict relative reactivity and nonlinear mixing effects for the investigated ligands; these predictions are fully validated by experimental testing. Finally, the low conversion observed with some catalysts was found to be caused by inactivation due to weak binding of the ligand to Pd(O). Adding monodentate PPh_3 alleviated the precipitation problem without deteriorating the enantioselectivity and led to one of the most effective catalytic systems to date.
机译:结合理论和实验方法研究了使用P,N-配体的不对称Heck反应。该反应遵循哈珀恩式选择性。也就是说,主要异构体是从插入前中间体的最不受欢迎形式中产生的。最初形成的Ph-Pd(P,N)物种更喜欢具有苯基对N的几何构型。但是,Ph相对于P的替代形式则不稳定得多,但活性更高。在优选的过渡态中,苯基部分是反式至P,但大量的电子密度已转移至烯烃碳,反式至N。在该过渡态下的空间相互作用充分说明了所研究的配体所观察到的对映选择性。计算还预测了所研究配体的相对反应性和非线性混合效应。这些预测已通过实验测试得到了充分验证。最后,发现由于配体与Pd(O)的弱结合而导致的失活是某些催化剂观察到的低转化率。添加单齿PPh_3可减轻沉淀问题,而不会降低对映选择性,并导致了迄今为止最有效的催化体系之一。

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