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The Reaction Mechanism of Claisen Rearrangement Obtained by Transition State Spectroscopy and Single Direct-Dynamics Trajectory

机译:过渡态光谱和单直接动态轨迹获得的克莱森重排反应机理

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摘要

Chemical bond breaking and formation during chemical reactions can be observed using “transition state spectroscopy”. Comparing the measurement result of the transition state spectroscopy with the simulation result of single direct-dynamics trajectory, we have elucidated the reaction dynamics of Claisen rearrangement of allyl vinyl ether. Observed the reaction of the neat sample liquid, we have estimated the time constants of transformation from straight-chain structure to aromatic-like six-membered ring structure forming the C1-C6 bond. The result clarifies that the reaction proceeds via three steps taking longer time than expected from the gas phase calculation. This finding provides new hypothesis and discussions, helping the development of the field of reaction mechanism analysis.
机译:可以使用“过渡态光谱”观察化学反应过程中化学键的断裂和形成。将过渡态光谱的测量结果与单个直接动力学轨迹的模拟结果进行比较,我们阐明了烯丙基乙烯基醚的克莱森重排的反应动力学。观察纯净样品液的反应,我们估计了从直链结构转变为形成C 1 -C 6 的芳香族六元环结构的时间常数。 sup>债券。结果表明,反应通过三个步骤进行,所花费的时间比气相计算所预期的要长。这一发现提供了新的假设和讨论,有助于反应机理分析领域的发展。

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