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First principles view on chemical compound space: Gaining rigorous atomistic control of molecular properties

机译:对化合物空间的基本原理看法:获得对分子性质的严格原子控制

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A well-defined notion of chemical compound space (CCS) is essential for gaining rigorous control of properties through variation of elemental composition and atomic configurations. Here, we give an introduction to an atomistic first principles perspective on CCS. First, CCS is discussed in terms of variational nuclear charges in the context of conceptual density functional and molecular grand-canonical ensemble theory. Thereafter, we revisit the notion of compound pairs, related to each other via "alchemical" interpolations involving fractional nuclear charges in the electronic Hamiltonian. We address Taylor expansions in CCS, property nonlinearity, improved predictions using reference compound pairs, and the ounce-of-gold prize challenge to linearize CCS. Finally, we turn to machine learning of analytical structure property relationships in CCS. These relationships correspond to inferred, rather than derived through variational principle, solutions of the electronic Schr?dinger equation.
机译:明确定义的化合物空间(CCS)概念对于通过改变元素组成和原子构型来严格控制属性至关重要。在这里,我们介绍了关于CCS的原子性第一原理的观点。首先,在概念密度泛函理论和分子大正则合奏理论的背景下,从变核电荷角度讨论了CCS。此后,我们重新讨论化合物对的概念,它们通过涉及电子哈密顿量中的分数核电荷的“炼金术”插值相互关联。我们将解决Taylor在CCS中的扩展,属性非线性,使用参考化合物对改进的预测以及将CCS线性化的金盎司挑战。最后,我们转向CCS中分析结构属性关系的机器学习。这些关系对应于电子薛定er方程的解,而不是通过变分原理推导出来的。

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