Department of Chemistry, University of Pennsylvania, 231 S. 34 Street, Cret Wing 141D, Philadelphia, Pennsylvania 19104-6243, United States.
Zernike Institute for Advanced Materials, Faculty of Science and Engineering, University of Groningen, Nijenborgh 4, 9747AG Groningen, The Netherlands.
J Chem Theory Comput. 2022 Aug 9;18(8):4601-4614. doi: 10.1021/acs.jctc.2c00204. Epub 2022 Jul 28.
The accurate description of large molecular systems in complex environments remains an ongoing challenge for the field of computational chemistry. This problem is even more pronounced for photoinduced processes, as multiple excited electronic states and their corresponding nonadiabatic couplings must be taken into account. Multiscale approaches such as hybrid quantum mechanics/molecular mechanics (QM/MM) offer a balanced compromise between accuracy and computational burden. Here, we introduce an open-source software package (INAQS) for nonadiabatic QM/MM simulations that bridges the sampling capabilities of the GROMACS MD package and the excited-state infrastructure of the Q-CHEM electronic structure software. The interface is simple and can be adapted easily to other MD codes. The code supports a variety of different trajectory-based molecular dynamics, ranging from Born-Oppenheimer to surface hopping dynamics. To illustrate the power of this combination, we simulate electronic absorption spectra, free-energy surfaces along a reaction coordinate, and the excited-state dynamics of 1,3-cyclohexadiene in solution.
在复杂环境下对大分子系统进行准确描述仍然是计算化学领域的一个持续挑战。对于光致过程来说,这个问题更加突出,因为必须考虑多个激发电子态及其相应的非绝热耦合。混合量子力学/分子力学(QM/MM)等多尺度方法在准确性和计算负担之间提供了一个平衡的折衷。在这里,我们引入了一个用于非绝热 QM/MM 模拟的开源软件包(INAQS),它弥合了 GROMACS MD 包的采样能力和 Q-CHEM 电子结构软件的激发态基础设施之间的差距。该接口简单易用,并且可以轻松适应其他 MD 代码。该代码支持多种不同的基于轨迹的分子动力学,从 Born-Oppenheimer 到表面跳跃动力学。为了说明这种组合的强大功能,我们模拟了 1,3-环己二烯在溶液中的电子吸收光谱、沿着反应坐标的自由能表面和激发态动力学。