Nikitin Alexei, Wang Feng
Department of Chemistry and Biochemistry, University of Arkansas, Fayetteville, Arkansas 72701, United States.
J Chem Theory Comput. 2024 Jun 25;20(12):5241-5249. doi: 10.1021/acs.jctc.4c00509. Epub 2024 Jun 7.
Predicting ensemble properties, such as density and heat of vaporization, of small hydrocarbons is challenging due to the dispersion-dominated weak interactions between these molecules. With the adaptive force matching (AFM) method, the bonded and short-range nonbonded interactions are fitted to second-order Møller-Plesset perturbation theory (MP2) references computed with the def2-TZVP basis set. The dispersion is modeled using symmetry adapted perturbation theory (SAPT) at MP4 accuracy using the def2-TZVPD basis set. A new charge matrix decomposition technique is described to obtain partial charges in AFM. Although the models developed do not have any empirical parameters, several properties of the resulting models are compared with experiments as validations. The density, heat of vaporization, pressure dependence of density, diffusion constants, and surface tensions all show quantitative agreement with experiments. Although the density shows a very small systematic error, which could be due to missing three-body dispersion, the heat of vaporization agrees with experiments of within 0.5%. The paper shows that AFM can be used as a reliable tool to enable simulations at post-Hartree-Fock quality at the cost of molecular mechanics force fields.
预测小分子烃类的整体性质,如密度和汽化热,具有挑战性,因为这些分子之间以色散为主的弱相互作用。采用自适应力匹配(AFM)方法,将键合和短程非键相互作用拟合到使用def2-TZVP基组计算的二阶Møller-Plesset微扰理论(MP2)参考数据。色散采用对称适配微扰理论(SAPT),使用def2-TZVPD基组,精度为MP4。描述了一种新的电荷矩阵分解技术,以在AFM中获得部分电荷。尽管所开发的模型没有任何经验参数,但将所得模型的几个性质与实验进行比较以进行验证。密度、汽化热、密度的压力依赖性、扩散常数和表面张力均与实验结果呈现定量一致。尽管密度显示出非常小的系统误差,这可能是由于缺少三体色散,但汽化热与实验结果的吻合度在0.5%以内。本文表明,AFM可作为一种可靠的工具,以分子力学力场的成本实现后Hartree-Fock质量的模拟。