École Normale Supérieure, Département de Chimie, UMR 8640 CNRS-ENS-UPMC, 24, rue Lhomond, 75005 Paris, France.
J Chem Phys. 2012 Jul 21;137(3):034115. doi: 10.1063/1.4734009.
Hard-sphere mixtures provide one a solvable reference system that can be used to improve the density functional theory of realistic molecular fluids. We show how the Kierlik-Rosinberg's scalar version of the fundamental measure density functional theory of hard spheres [E. Kierlik and M. L. Rosinberg, Phys. Rev. A 42, 3382 (1990)], which presents computational advantages with respect to the original Rosenfeld's vectorial formulation or its extensions, can be implemented and minimized in three dimensions to describe fluid mixtures in complex environments. This implementation is used as a basis for defining a molecular density functional theory of water around molecular hydrophobic solutes of arbitrary shape.
硬球混合物提供了一个可解的参考系统,可用于改进实际分子流体的密度泛函理论。我们展示了如何实现 Kierlik-Rosinberg 的硬球基本测量密度泛函理论的标量版本[E. Kierlik 和 M. L. Rosinberg,Phys. Rev. A 42, 3382 (1990)],相对于原始的 Rosenfeld 向量形式或其扩展,该理论在计算上具有优势,可在三维空间中实现和最小化,以描述复杂环境中的流体混合物。这种实现被用作定义围绕任意形状分子疏水分子的水分子密度泛函理论的基础。