Gillan Michael J, Alfè Dario, Michaelides Angelos
London Centre for Nanotechnology, Gordon St., London WC1H 0AH, United Kingdom.
J Chem Phys. 2016 Apr 7;144(13):130901. doi: 10.1063/1.4944633.
Kohn-Sham density functional theory (DFT) has become established as an indispensable tool for investigating aqueous systems of all kinds, including those important in chemistry, surface science, biology, and the earth sciences. Nevertheless, many widely used approximations for the exchange-correlation (XC) functional describe the properties of pure water systems with an accuracy that is not fully satisfactory. The explicit inclusion of dispersion interactions generally improves the description, but there remain large disagreements between the predictions of different dispersion-inclusive methods. We present here a review of DFT work on water clusters, ice structures, and liquid water, with the aim of elucidating how the strengths and weaknesses of different XC approximations manifest themselves across this variety of water systems. Our review highlights the crucial role of dispersion in describing the delicate balance between compact and extended structures of many different water systems, including the liquid. By referring to a wide range of published work, we argue that the correct description of exchange-overlap interactions is also extremely important, so that the choice of semi-local or hybrid functional employed in dispersion-inclusive methods is crucial. The origins and consequences of beyond-2-body errors of approximate XC functionals are noted, and we also discuss the substantial differences between different representations of dispersion. We propose a simple numerical scoring system that rates the performance of different XC functionals in describing water systems, and we suggest possible future developments.
科恩-沈密度泛函理论(DFT)已成为研究各类水性体系不可或缺的工具,这些体系在化学、表面科学、生物学和地球科学中都很重要。然而,许多广泛使用的交换关联(XC)泛函近似方法对纯水体系性质的描述精度并不完全令人满意。明确包含色散相互作用通常会改善描述,但不同含色散方法的预测之间仍存在很大差异。我们在此对关于水团簇、冰结构和液态水的DFT研究工作进行综述,目的是阐明不同XC近似方法的优缺点在各种水体系中的表现。我们的综述强调了色散在描述许多不同水体系(包括液态)紧凑结构和扩展结构之间微妙平衡方面的关键作用。通过参考大量已发表的工作,我们认为正确描述交换重叠相互作用也极其重要,因此在含色散方法中使用半局域或杂化泛函的选择至关重要。我们指出了近似XC泛函三体以上误差的来源和后果,还讨论了色散不同表示之间的显著差异。我们提出了一个简单的数值评分系统来评估不同XC泛函在描述水体系方面的性能,并建议了未来可能的发展方向。