Ren Pengyu, Wu Chuanjie, Ponder Jay W
Department of Biomedical Engineering, The University of Texas at Austin, Austin, TX 78712.
J Chem Theory Comput. 2011 Oct 11;7(10):3143-3161. doi: 10.1021/ct200304d.
An empirical potential based on permanent atomic multipoles and atomic induced dipoles is reported for alkanes, alcohols, amines, sulfides, aldehydes, carboxylic acids, amides, aromatics and other small organic molecules. Permanent atomic multipole moments through quadrupole moments have been derived from gas phase ab initio molecular orbital calculations. The van der Waals parameters are obtained by fitting to gas phase homodimer QM energies and structures, as well as experimental densities and heats of vaporization of neat liquids. As a validation, the hydrogen bonding energies and structures of gas phase heterodimers with water are evaluated using the resulting potential. For 32 homo- and heterodimers, the association energy agrees with ab initio results to within 0.4 kcal/mol. The RMS deviation of hydrogen bond distance from QM optimized geometry is less than 0.06 Å. In addition, liquid self-diffusion and static dielectric constants computed from molecular dynamics simulation are consistent with experimental values. The force field is also used to compute the solvation free energy of 27 compounds not included in the parameterization process, with a RMS error of 0.69 kcal/mol. The results obtained in this study suggest the AMOEBA force field performs well across different environments and phases. The key algorithms involved in the electrostatic model and a protocol for developing parameters are detailed to facilitate extension to additional molecular systems.
报道了一种基于永久原子多极矩和原子诱导偶极矩的经验势,用于烷烃、醇类、胺类、硫化物、醛类、羧酸、酰胺、芳烃及其他小分子有机化合物。通过四极矩的永久原子多极矩是由气相从头算分子轨道计算得出的。范德华参数是通过拟合气相同二聚体的量子力学(QM)能量和结构,以及纯液体的实验密度和汽化热得到的。作为验证,使用所得势评估了与水形成的气相异二聚体的氢键能量和结构。对于32个同二聚体和异二聚体,缔合能与从头算结果的吻合度在0.4千卡/摩尔以内。氢键距离相对于QM优化几何结构的均方根偏差小于0.06埃。此外,通过分子动力学模拟计算得到的液体自扩散系数和静态介电常数与实验值一致。该力场还用于计算27种未包含在参数化过程中的化合物的溶剂化自由能,均方根误差为0.69千卡/摩尔。本研究获得的结果表明,AMOEBA力场在不同环境和相态下表现良好。详细介绍了静电模型中涉及的关键算法以及开发参数的方案,以促进对其他分子体系的扩展。