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首页> 外文期刊>Chemistry: A European journal >Insight into the role of the counteranion of an imidazolium salt in organocatalysis: A combined experimental and computational study
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Insight into the role of the counteranion of an imidazolium salt in organocatalysis: A combined experimental and computational study

机译:深入了解咪唑鎓盐的抗衡阴离子在有机催化中的作用:结合实验和计算研究

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N-Heterocyclic carbenes (NHCs) can serve as very reactive nucleophilic catalysts and exhibit strong basicity. Herein, we initiate a combined experimental and computational investigation of the NHC-catalyzed ring-closing reactions of 4-(2-formylphenoxy)but-2-enoate derivatives 1 to uncover the relationship between the counteranion of an azolium salt, the nucleophilicity and basicity of the carbene species, and the catalytic performance of the carbene species by taking imidazolium salts IPr·HX (X=counteranion, IPr=1,3-bis(2,6-diisopropylphenyl)imidazol-2-ylidene) as the representative precatalysts. The plausible mechanisms of IPr-mediated ring-closing reactions have been investigated by using DFT calculations. The hydrogen-accepting ability, assigned as the basicity of the counteranion of IPr·HX and evaluated by DFT calculations, is correlated with the rate of deprotonation of C2 in IPr·HX, which could be monitored by the capture of the free carbene formed in situ with elemental sulfur. The deprotonation of C2 in IPr·HX with a more basic anion gives rise to a higher concentration of the free carbene and vice versa. At a relatively low concentration, IPr prefers to show a nucleophilic character to induce the intramolecular Stetter reaction. At a relatively high concentration, IPr primarily acts as a base to afford benzofuran derivatives. These data comprehensively disclose, for the first time, that the counteranions of azolium salts significantly influence not only the catalytic activity, but also possibly the reaction mechanism.
机译:N-杂环卡宾(NHC)可以用作反应性很强的亲核催化剂,并具有很强的碱性。在这里,我们启动NHC催化的4-(2-甲酰基苯氧基)丁-2-烯酸酯衍生物1的闭环反应的组合实验和计算研究,以揭示偶氮盐的抗衡阴离子,亲核性和碱性之间的关系。以咪唑鎓盐IPr·HX(X =抗衡离子,IPr = 1,3-双(2,6-二异丙基苯基)咪唑-2-亚烷基)为代表的前催化剂,对卡宾物种的催化性能和卡宾物种的催化性能进行了研究。通过使用DFT计算,已经研究了IPr介导的闭环反应的合理机制。通过DFT计算评估了作为IPr·HX的抗衡阴离子的碱度的氢接受能力与IPr·HX中C2的去质子化速率相关,这可以通过捕获形成的游离碳烯来监测。原位含元素硫。 IPr·HX中的C2用更碱性的阴离子去质子化会产生较高浓度的游离卡宾,反之亦然。在相对较低的浓度下,IPr倾向于表现出亲核特性以诱导分子内Stetter反应。在相对较高的浓度下,IPr主要充当提供苯并呋喃衍生物的碱。这些数据首次全面公开了偶氮盐的抗衡阴离子不仅显着影响催化活性,而且可能显着影响反应机理。

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