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金(I)催化的1,2-二苯乙炔水合反应:计算见解

Gold(I)-Catalyzed Hydration of 1,2-Diphenylacetylene: Computational Insights.

作者信息

Mazzone Gloria, Russo Nino, Sicilia Emilia

机构信息

Dipartimento di Chimica, Università della Calabria, I-87030, Arcavacata di Rende, Italy.

出版信息

J Chem Theory Comput. 2010 Sep 14;6(9):2782-9. doi: 10.1021/ct100254v.

Abstract

A DFT investigation of 1,2-diphenylacetilene hydration mediated by the (Ph3P)Au complex has been carried out to shed light on the mechanistic details of such process with the support of the experimental observations and mechanistic proposal. Computational analysis proves that the first inner-sphere attack of water occurs with gold acting as a proton shuttle to transfer the migrating hydrogen in cis position with respect to OH group. From the formed E isomer of the enol the Z one could be formed by rotation around the C-C bond. The addition of the second water molecule to give the ketone final product occurs favorably with the assistance of the catalyst and involves coordination of water followed by a second hydrogen shift from oxygen to carbon. If the E isomer is involved, gold directly participates in the reaction assisting the hydrogen transfer, whereas if the product is obtained starting from the Z isomer, gold is not directly involved. The elimination of a water molecule and the release of the catalyst close the catalytic cycle. Calculations show that the intervention of a third water molecule lowers the energy barrier for the elimination of water and formation of the π carbonyl bond.

摘要

在实验观察和机理推测的支持下,开展了一项由(Ph3P)Au络合物介导的1,2 - 二苯乙炔水合作用的密度泛函理论(DFT)研究,以阐明该过程的机理细节。计算分析表明,水的首次内界进攻发生时,金作为质子穿梭体,将迁移的氢转移至相对于羟基的顺式位置。从形成的烯醇E异构体出发,通过围绕C - C键的旋转可形成Z异构体。在催化剂的协助下,第二个水分子的加成生成最终的酮产物,这涉及水的配位,随后是氢从氧向碳的第二次转移。如果涉及E异构体,金直接参与反应并协助氢转移,而如果产物是从Z异构体开始获得的,则金不直接参与。水分子的消除和催化剂的释放完成了催化循环。计算表明,第三个水分子的介入降低了消除水和形成π羰基键的能垒。

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