Department of Chemistry, University of Florida, Gainesville, Florida 32611, United States.
Universidad Nacional de Quilmes, Roque Saenz Peña 352, Bernal B1876BXD, Argentina.
J Chem Theory Comput. 2022 Sep 13;18(9):5213-5220. doi: 10.1021/acs.jctc.2c00561. Epub 2022 Aug 31.
We present a method to link the Nonadiabatic EXcited-state Molecular Dynamics (NEXMD) package to the SANDER package supplied by AMBERTOOLS to provide excited-state adiabatic quantum mechanics/molecular mechanics (QM/MM) simulations. NEXMD is a computational package particularly developed to perform simulations of the photoexcitation and subsequent nonadiabatic electronic and vibrational energy relaxation in large multichromophoric conjugated molecules involving several coupled electronic excited states. The NEXMD-SANDER exchange has been optimized in order to achieve excited-state adiabatic dynamics simulations of large conjugated materials in a QM/MM environment, such as an explicit solvent. Dynamics of a substituted polyphenylene vinylene oligomer (PPV3-NO) in vacuum and different explicit solvents has been used as a test case by performing comparative analysis of changes in its optical spectrum, state-dependent conformational changes, and quantum bond orderings. The method has been tested and compared with respect to previous implicit solvent implementations. Also, the impact on the expansion of the QM region by including a variable number of solvent molecules has been analyzed. Altogether, these results encourage future implementations of NEXMD simulations using the same combination of methods.
我们提出了一种将非绝热激发态分子动力学(NEXMD)包与 AMBERTOOLS 提供的 SANDER 包连接起来的方法,以提供激发态绝热量子力学/分子力学(QM/MM)模拟。NEXMD 是一个专门开发的计算包,用于模拟涉及多个耦合电子激发态的大多色共轭分子中的光激发和随后的非绝热电子和振动能量弛豫。为了在 QM/MM 环境(如显式溶剂)中实现大共轭材料的激发态绝热动力学模拟,优化了 NEXMD-SANDER 交换。通过对其光学光谱、状态相关构象变化和量子键序的变化进行比较分析,使用取代的聚对苯乙炔低聚物(PPV3-NO)在真空和不同显式溶剂中的动力学作为测试案例。该方法已针对先前的隐式溶剂实现进行了测试和比较。此外,还分析了通过包含数量可变的溶剂分子来扩展 QM 区域对的影响。总之,这些结果鼓励未来使用相同的方法组合来实现 NEXMD 模拟。