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首页> 外文期刊>Journal of Molecular Liquids >Competition between the Hiyama and Suzuki-Miyaura Pd-catalyzed cross-coupling reaction mechanisms for the formation of some regioselective derivatives of quinoxaline and benzofuran; Which reaction mechanism is more favorable?
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Competition between the Hiyama and Suzuki-Miyaura Pd-catalyzed cross-coupling reaction mechanisms for the formation of some regioselective derivatives of quinoxaline and benzofuran; Which reaction mechanism is more favorable?

机译:Hiyama和Suzuki-Miyaura的竞争PD催化的交叉偶联反应机制,形成喹喔啉和苯并呋喃的一些区域选择性衍生物; 哪种反应机制更有利?

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Pd-NHC type complexes are supposed to have a high degree of participation in 'C-C' cross-coupling reactions, so they are commonly used in industry as well as academia. As regards the competition between Hiyama and Suzuki-Miyaura, this research aims to establish amore suitable reaction pathway and cross-coupling mechanism for the formation of certain derivatives of quinoxaline and benzofuran at the Cam-B3LYP-D3 theoretical level. First of all, the 2-phenyl-toluene formation cycle was determined using two specified cross-coupling reactions due to the presence of experimental 2-phenyl-toluene formation data in both Suzuki-Miyaura and Hiyama cross-coupling reactions. The mechanisms for the development of regioselective compounds 2-(2-methoxyphenyl)-6-p-tolylquinoxaline and 2,3-bis (4-chlorophenyle) benzofuran by Suzuki-Miyaura and Hiyama cross-coupling reactions are computationally compared to more suitable reaction pathways and cross-coupling reactions. In particular, our findings are consistent with the Pd-NHC type complex approach to this problem, which is more desirable for the development of regioselective compounds in competition between the various types of cross-coupling reaction mechanisms. (C) 2020 Elsevier B.V. All rights reserved.
机译:Pd-NHC型配合物被认为在“C-C”交叉偶联反应中具有高度的参与性,因此它们在工业界和学术界都有广泛的应用。关于Hiyama和Suzuki Miyaura之间的竞争,本研究旨在在Cam-B3LYP-D3理论水平上建立更合适的反应途径和交叉偶联机制,以形成某些喹喔啉和苯并呋喃衍生物。首先,由于Suzuki Miyaura和Hiyama交叉偶联反应中均存在2-苯基甲苯形成的实验数据,因此使用两个指定的交叉偶联反应来确定2-苯基甲苯形成循环。计算比较了Suzuki Miyaura和Hiyama交叉偶联反应生成区域选择性化合物2-(2-甲氧基苯基)-6-对甲苯基喹啉和2,3-双(4-氯苯基)苯并呋喃的机理与更合适的反应途径和交叉偶联反应。特别是,我们的研究结果与Pd-NHC型络合物解决这个问题的方法一致,这对于在各种交叉偶联反应机制之间竞争开发区域选择性化合物更为理想。(C) 2020爱思唯尔B.V.版权所有。

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