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首页> 外文期刊>ACS catalysis >Computational Study on the Mechanism and Origin of the Regioselectivity and Stereospecificity in Pd/SIPr-Catalyzed Ring-Opening Cross-Coupling of 2-Arylaziridines with Arylboronic Acids
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Computational Study on the Mechanism and Origin of the Regioselectivity and Stereospecificity in Pd/SIPr-Catalyzed Ring-Opening Cross-Coupling of 2-Arylaziridines with Arylboronic Acids

机译:与芳基硼酸的2-芳基吖啶的Pd / SiPR催化开环交叉偶联中的区域选择性和立体性的机理和起源的计算研究

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摘要

The mechanism, regioselectivity, and stereospecificity of Pd/NHC-catalyzed ring-opening cross-coupling of 2-arylaziridines with arylboronic acids (Takeda et al. J. Am. Chem. Soc. 2014, 136, 8544-8547) is rationalized from density functional theory calculations. Pd(0)SIPr complex, the active species, can be formed through the reduction of (eta(3) cinnamyl)(CI)Pd(II)SIPr complex, where arylboronic acid in solution plays a key role. Then the Pd(0)SIPr complex acts as the active species of the catalytic cycle that consists of the regioselective and stereospecific oxidative addition, proton transfer, rate-determining transmetalation, and reductive elimination. Transition states for the oxidative addition were systematically determined from a multicomponent artificial force induced reaction search and explained the regioselectivity and stereospecificity of the reaction. An energy decomposition analysis on the key transition states suggested that the interactions between Pd(0)SIPr and 2-arylaziridines are important to the selectivity. The computed mechanism of the full catalytic cycle is consistent with the experimental data. Our detailed mechanistic survey provides important mechanistic insights for enantiospecific and regioselective ring-opening reactions of 2-arylaziridines.
机译:Pd / NHC催化的芳基硼酸的芳基催化环开环交叉偶联的机制,区域选择性和立体特异性(Takeda等,J.AM。Chem。Soc。Soc。2014,136,8544-8547)是合理化的密度泛函理论计算。 Pd(0)SiPR复合物,活性物质可以通过减少(ETA(3)糖醇)(CI)Pd(II)SiPR络合物,其中溶液中的芳基硼酸起着关键作用。然后Pd(0)SiPR复合物作为催化循环的活性物种,由区域选择性和立体特异性氧化添加,质子转移,速率确定传统和还原消除组成。从多组分人工力诱导的反应搜索系统地确定氧化添加的过渡状态,并解释了反应的区域选择性和立体特异性。关键过渡状态的能量分解分析表明,Pd(0)SiPR和2-芳基氮杂物之间的相互作用对选择性至关重要。完全催化循环的计算机制与实验数据一致。我们的详细机制调查为2-芳基氮杂蓟啶的对抗特异性和区域选择性开环反应提供了重要的机制见解。

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