Mones Letif, Jones Andrew, Götz Andreas W, Laino Teodoro, Walker Ross C, Leimkuhler Ben, Csányi Gábor, Bernstein Noam
Engineering Department, University of Cambridge, Cambridge, CB2 1PZ, United Kingdom.
J Comput Chem. 2015 Apr 5;36(9):633-48. doi: 10.1002/jcc.23839. Epub 2015 Feb 3.
The implementation and validation of the adaptive buffered force (AdBF) quantum-mechanics/molecular-mechanics (QM/MM) method in two popular packages, CP2K and AMBER are presented. The implementations build on the existing QM/MM functionality in each code, extending it to allow for redefinition of the QM and MM regions during the simulation and reducing QM-MM interface errors by discarding forces near the boundary according to the buffered force-mixing approach. New adaptive thermostats, needed by force-mixing methods, are also implemented. Different variants of the method are benchmarked by simulating the structure of bulk water, water autoprotolysis in the presence of zinc and dimethyl-phosphate hydrolysis using various semiempirical Hamiltonians and density functional theory as the QM model. It is shown that with suitable parameters, based on force convergence tests, the AdBF QM/MM scheme can provide an accurate approximation of the structure in the dynamical QM region matching the corresponding fully QM simulations, as well as reproducing the correct energetics in all cases. Adaptive unbuffered force-mixing and adaptive conventional QM/MM methods also provide reasonable results for some systems, but are more likely to suffer from instabilities and inaccuracies.
介绍了自适应缓冲力(AdBF)量子力学/分子力学(QM/MM)方法在两个流行软件包CP2K和AMBER中的实现与验证。这些实现基于每个代码中现有的QM/MM功能,对其进行扩展,以便在模拟过程中重新定义QM和MM区域,并根据缓冲力混合方法通过舍弃边界附近的力来减少QM-MM界面误差。还实现了力混合方法所需的新型自适应恒温器。通过使用各种半经验哈密顿量和密度泛函理论作为QM模型,模拟体相水的结构、锌存在下的水自质子化以及磷酸二甲酯水解,对该方法的不同变体进行了基准测试。结果表明,基于力收敛测试,采用合适的参数时,AdBF QM/MM方案能够在动态QM区域中提供与相应全QM模拟相匹配的结构的精确近似,并且在所有情况下都能再现正确的能量学。自适应无缓冲力混合和自适应传统QM/MM方法在某些系统中也能提供合理的结果,但更有可能出现不稳定性和不准确的情况。