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首页> 外文期刊>The Journal of Chemical Physics >Cheap but accurate calculation of chemical reaction rate constants from ab initio data, via system-specific, black-box force fields
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Cheap but accurate calculation of chemical reaction rate constants from ab initio data, via system-specific, black-box force fields

机译:便宜但精确计算来自AB Initio数据的化学反应速率常数,通过系统特定于系统的黑盒力领域

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摘要

Building on the recently published quantum-mechanically derived force field (QMDFF) and its empirical valence bond extension, EVB-QMDFF, it is now possible to generate a reliable potential energy surface for any given elementary reaction step in an essentially black box manner. This requires a limited and pre-defined set of reference data near the reaction path and generates an accurate approximation of the reference potential energy surface, on and off the reaction path. This intermediate representation can be used to generate reaction rate data, with far better accuracy and reliability than with traditional approaches based on transition state theory (TST) or variational extensions thereof (VTST), even if those include sophisticated tunneling corrections. However, the additional expense at the reference level remains very modest. We demonstrate all this for three arbitrarily chosen example reactions. Published by AIP Publishing.
机译:在最近发表的量子机械衍生的力场(QMDFF)及其经验价键合延伸,EVB-QMDFF,现在可以以基本上黑盒方式产生可靠的势能表面。 这需要在反应路径附近的有限和预定的参考数据组,并产生参考电位能量表面的精确近似,开启和关闭反应路径。 该中间表示可用于产生反应速率数据,其比基于转换状态理论(TST)或其变分延伸(VTST)的传统方法更好的准确度和可靠性,即使这些包括复杂的隧道校正。 但是,参考水平的额外费用仍然非常适度。 我们向三个任意选择的示例反应展示了这一切。 通过AIP发布发布。

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