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首页> 外文期刊>The Journal of Chemical Physics >MULTICONFIGURATIONAL MOLECULAR DYNAMICS WITH QUANTUM TRANSITIONS - MULTIPLE PROTON TRANSFER REACTIONS [Review]
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MULTICONFIGURATIONAL MOLECULAR DYNAMICS WITH QUANTUM TRANSITIONS - MULTIPLE PROTON TRANSFER REACTIONS [Review]

机译:具有量子跃迁的多构型分子动力学-多个质子转移反应[综述]

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We present the new method ''multiconfigurational molecular dynamics with quantum transitions'' (MC-MDQT) for the simulation of processes involving multiple proton transfer reactions. MC-MDQT is a mixed quantum/classical molecular dynamics method that allows the quantum mechanical treatment of the nuclear motion of multiple hydrogen atoms and accurately describes branching processes (i.e., processes involving multiple channels or pathways). MC-MDQT is based on the surface hopping method MDQT, which has already been applied to single proton transfer reactions in solution, where the nuclear motion of only the hydrogen atom being transferred is treated quantum mechanically. The direct extension of MDQT to multiple proton transfer reactions, where many hydrogen atoms must be treated quantum mechanically, is not computationally practical. In MC-MDQT a multiconfigurational self-consistent-field method is combined with MDQT to allow the quantum mechanical treatment of multiple hydrogen atoms while still including the significant correlation. The adiabatic states are expanded in a basis set of single configurations, which are products of one-particle states calculated using effective Hamiltonians derived from the occupied adiabatic state. Thus the one-particle states and the multiconfigurational adiabatic states must be calculated self-consistently. Both the MC-MDQT and the full basis set expansion MDQT methods are applied to a model system comprised of two quantum protons moving in double well potentials and one classical harmonic solvent degree of freedom. The results show that MC-MDQT incorporates the significant correlation and accurately describes branching processes. The MC-MDQT method is also used to study model systems comprised of three quantum protons and one classical solvent degree of freedom. (C) 1996 American Institute of Physics. [References: 104]
机译:我们提出了一种新的方法``具有量子跃迁的多构型分子动力学''(MC-MDQT),用于模拟涉及多个质子转移反应的过程。 MC-MDQT是一种混合量子/经典分子动力学方法,可以对多个氢原子的核运动进行量子力学处理,并准确描述分支过程(即涉及多个通道或途径的过程)。 MC-MDQT基于表面跳变方法MDQT,该方法已应用于溶液中的单个质子转移反应,其中仅对转移的氢原子的核运动进行量子力学处理。 MDQT直接扩展到多个质子转移反应(其中许多氢原子必须通过量子力学进行处理)是不实际的。在MC-MDQT中,将多配置自洽场方法与MDQT结合使用以允许对多个氢原子进行量子力学处理,同时仍然包括显着的相关性。绝热态在单一构型的基础上扩展,这是使用从占据的绝热态导出的有效哈密顿量计算的单粒子态的乘积。因此,必须自洽地计算单粒子态和多构型绝热态。 MC-MDQT方法和全基集展开MDQT方法都应用于模型系统,该系统由两个在双阱势中运动的量子质子和一个经典的谐波溶剂自由度组成。结果表明,MC-MDQT包含了显着的相关性并准确地描述了分支过程。 MC-MDQT方法还用于研究由三个量子质子和一个经典溶剂自由度组成的模型系统。 (C)1996年美国物理研究所。 [参考:104]

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