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首页> 外文期刊>The Journal of Chemical Physics >Quantum mechanical tunneling in the automerization of cyclobutadiene
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Quantum mechanical tunneling in the automerization of cyclobutadiene

机译:Quantum机械隧穿在环丁二烯的自动化中

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Cyclobutadiene has a four-membered carbon ring with two double bonds, but this highly strained molecular configuration is almost square and, via a coordinated motion, the nuclei quantum mechanically tunnels through the high-energy square state to a configuration equivalent to the initial configuration under a 90 degrees rotation. This results in a square ground state, comprising a superposition of two molecular configurations, that is driven by quantum tunneling. Using a quantum mechanical model, and an effective nuclear potential from density functional theory, we calculate the vibrational energy spectrum and the accompanying wavefunctions. We use the wavefunctions to identify the motions of the molecule and detail how different motions can enhance or suppress the tunneling rate. This is relevant for kinematics of tunneling-driven reactions, and we discuss these implications. We are also able to provide a qualitative account of how the molecule will respond to an external perturbation and how this may enhance or suppress infra-red-active vibrational transitions. Published by AIP Publishing.
机译:环丁二烯有一个四元碳环,具有两个双键,但这种高度应变的分子配置几乎是正方形的,并且通过协调运动,通过高能方形状态机械地隧道隧道到等于初始配置的配置旋转90度。这导致正方形地,包括由量子隧道驱动的两个分子配置的叠加。使用量子机械模型以及密度函数理论的有效核电位,我们计算振动能谱和伴随的波力。我们使用波形文件来识别分子的动作,并详细说明不同的运动如何增强或抑制隧道速率。这与隧道驱动反应的运动学相关,我们讨论了这些影响。我们还能够提供分子如何响应外部扰动以及如何增强或抑制红外线主动振动转换的定性叙述。通过AIP发布发布。

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