X-ray constrained wavefunctions based on Hirshfeld atoms. I. Method and review.

Max L. Davidson, S. Grabowsky, D. Jayatilaka
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引用次数: 0

Abstract

The X-ray constrained wavefunction (XCW) procedure for obtaining an experimentally reconstructed wavefunction from X-ray diffraction data is reviewed. The two-center probability distribution model used to perform nuclear-position averaging in the original paper [Grimwood & Jayatilaka (2001). Acta Cryst. A57, 87-100] is carefully distinguished from the newer one-center probability distribution model. In the one-center model, Hirshfeld atoms are used, and the Hirshfeld atom based X-ray constrained wavefunction (HA-XCW) procedure is described for the first time, as well as its efficient implementation. In this context, the definition of the related X-ray wavefunction refinement (XWR) method is refined. The key halting problem for the XCW method - the procedure by which one determines when overfitting has occurred - is named and work on it reviewed.
基于Hirshfeld原子的x射线约束波函数。一、方法与回顾。
综述了用x射线约束波函数法从x射线衍射数据中获得实验重构波函数的方法。原论文[Grimwood & Jayatilaka(2001)]中用于核位置平均的双中心概率分布模型。Acta结晶。[57,87 -100]与较新的单中心概率分布模型有仔细的区别。在单中心模型中,采用Hirshfeld原子,首次描述了基于Hirshfeld原子的x射线约束波函数(HA-XCW)过程及其高效实现。在此背景下,对相关的x射线波函数细化(XWR)方法的定义进行了细化。XCW方法的关键停机问题(确定何时发生过拟合的程序)被命名并对其进行了审查。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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