You Feng-Qi, Yu Yang-Xin, Gao Guang-Hua
Department of Chemical Engineering, Tsinghua University, Beijing 100084, People's Republic of China.
J Phys Chem B. 2005 Mar 3;109(8):3512-8. doi: 10.1021/jp045112h.
A density functional theory is proposed for an inhomogeneous hard-core Yukawa (HCY) fluid based on Rosenfeld's perturbative method. The excess Helmholtz energy functional is derived from a modified fundamental measure theory for the hard-core repulsion and a quadratic functional Taylor expansion for the long-ranged attractive or repulsive interactions. To test the established theory, grand canonical ensemble Monte Carlo simulations are carried out to simulate the density profiles of attractive and repulsive HCY fluid near a wall. Comparison with the results from the Monte Carlo simulations shows that the present density functional theory gives accurate density profiles for both attractive and repulsive HCY fluid near a wall. Both the present theory and simulations suggest that there is depletion for attractive HCY fluid at low temperature, but no depletion is found for repulsive HCY fluid. The calculated results indicate that the present density functional theory is better than those of the modified version of the Lovett-Mou-Buff-Wertheim and other density functional theories. The present theory is simple in form and computationally efficient. It predicts accurate radial distribution functions of both attractive and repulsive HCY fluid except for the repulsive case at high density, where the theory overestimates the radial distribution function in the vicinity of contact.
基于罗森菲尔德的微扰方法,提出了一种针对非均匀硬核汤川(HCY)流体的密度泛函理论。过量亥姆霍兹自由能泛函由用于硬核排斥的修正基本度量理论以及用于长程吸引或排斥相互作用的二次泛函泰勒展开推导得出。为了检验所建立的理论,进行了巨正则系综蒙特卡罗模拟,以模拟壁附近吸引和排斥HCY流体的密度分布。与蒙特卡罗模拟结果的比较表明,当前的密度泛函理论能够给出壁附近吸引和排斥HCY流体准确的密度分布。当前的理论和模拟均表明,低温下吸引性HCY流体存在耗尽现象,但排斥性HCY流体未发现耗尽现象。计算结果表明,当前的密度泛函理论优于洛维特 - 牟 - 巴夫 - 韦特海姆修正版及其他密度泛函理论。当前理论形式简单且计算效率高。它能预测吸引和排斥HCY流体准确的径向分布函数,但在高密度排斥情况下除外,此时该理论高估了接触附近的径向分布函数。