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Mapping the potential energy surfaces for ring-closing metathesis reactions of prototypical dienes by electronic structure calculations

机译:通过电子结构计算映射原型二烯的闭环易位反应的势能面

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摘要

The potential energy surfaces for ring-closing metathesis reactions of a series of simple alpha,omega-dienes which lead to 5-10 membered ring products, have been explored using density functional theory methods. We have investigated both the conformational aspects of the hydrocarbon chain during the course of the reactions, as well as the stationary structures on the corresponding potential energy surfaces. Extensive conformational searches reveal that the reaction proceeds via the conformation that would be expected for the cycloalkene product, though most unexpectedly, cyclohexene forms via complexes in boat-like conformations. The M06-L density functional has been used to map out the potential energy surfaces, and has identified metallocyclobutane fragmentation as being generally the highest barrier along the pathway. The structural variations along the pathway have been discussed for the reactant hydrocarbons of differing chain length to identify points at which cyclisation events may begin to affect reaction rates. Our study provides an excellent starting point from which to begin to learn about the way RCM reaction outcomes are controlled by diene structure
机译:已经使用密度泛函理论方法探索了一系列简单的α,ω-二烯导致5-10元环产物的闭环复分解反应的势能面。我们已经研究了反应过程中烃链的构象方面以及相应势能表面上的固定结构。广泛的构象研究表明反应是通过环烯产物所预期的构象进行的,尽管最出乎意料的是,环己烯是通过舟状构象的络合物形成的。 M06-L密度官能团已被用于绘制势能表面,并已确定金属环丁烷片段化通常是沿着该途径的最高障碍。对于不同链长的反应物烃,已经讨论了沿着该途径的结构变化,以识别环化事件可能开始影响反应速率的点。我们的研究提供了一个很好的起点,从这里可以开始了解RCM反应结果受二烯结构控制的方式

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