Shao Yihan, Kong Jing
Q-Chem Inc., 5001 Baum Boulevard, Pittsburgh, PA 15213, USA.
J Phys Chem A. 2007 May 10;111(18):3661-71. doi: 10.1021/jp067307q. Epub 2007 Apr 13.
A simple interface is proposed for combined quantum mechanical (QM) molecular mechanical (MM) calculations for the systems where the QM and MM regions are connected through covalent bonds. Within this model, the atom that connects the two regions, called YinYang atom here, serves as an ordinary MM atom to other MM atoms and as a hydrogen-like atom to other QM atoms. Only one new empirical parameter is introduced to adjust the length of the connecting bond and is calibrated with the molecule propanol. This model is tested with the computation of equilibrium geometries and protonation energies for dozens of molecules. Special attention is paid on the influence of MM point charges on optimized geometry and protonation energy, and it is found that it is important to maintain local charge-neutrality in the MM region in order for the accurate calculation of the protonation and deprotonation energies. Overall the simple YinYang atom model yields comparable results to some other QM/MM models.
针对量子力学(QM)区域和分子力学(MM)区域通过共价键相连的体系,提出了一种用于联合量子力学和分子力学计算的简单接口。在此模型中,连接两个区域的原子,在此称为阴阳原子,对其他MM原子而言作为普通的MM原子,对其他QM原子而言作为类氢原子。仅引入一个新的经验参数来调整连接键的长度,并以丙醇分子进行校准。该模型通过对数十个分子的平衡几何结构和质子化能的计算进行了测试。特别关注了MM点电荷对优化几何结构和质子化能的影响,发现为了准确计算质子化和去质子化能,在MM区域保持局部电荷中性很重要。总体而言,简单的阴阳原子模型产生的结果与其他一些QM/MM模型相当。