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A unified picture of the covalent bond within quantum-accurate force fields: From organic molecules to metallic complexes’ reactivity

机译:量子精确力场中共价键的统一图:从有机分子到金属络合物的反应性

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摘要

Computational studies of chemical processes taking place over extended size and time scales are inaccessible by electronic structure theories and can be tackled only by atomistic models such as force fields. These have evolved over the years to describe the most diverse systems. However, as we improve the performance of a force field for a particular physical/chemical situation, we are also moving away from a unified description. Here, we demonstrate that a unified picture of the covalent bond is achievable within the framework of machine learning–based force fields. Ridge regression, together with a representation of the atomic environment in terms of bispectrum components, can be used to map a general potential energy surface for molecular systems at chemical accuracy. This protocol sets the ground for the generation of an accurate and universal class of potentials for both organic and organometallic compounds with no specific assumptions on the chemistry involved.
机译:电子结构理论无法进行在扩展的尺寸和时间范围内进行的化学过程的计算研究,并且只能通过诸如力场之类的原子模型来解决。这些年来,它们已经发展成为描述最多样化的系统。但是,随着我们针对特定物理/化学情况改进力场的性能,我们也远离统一的描述。在这里,我们证明了在基于机器学习的力场框架内可以实现共价键的统一描述。岭回归以及以双谱成分表示的原子环境,可用于以化学精确度绘制分子系统的一般势能面。该协议为有机和有机金属化合物生成准确而通用的电位类别奠定了基础,并且对所涉及的化学反应没有特定的假设。

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