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NAST:用于预测自旋相关过程动力学的非绝热统计理论软件包。

NAST: Nonadiabatic Statistical Theory Package for Predicting Kinetics of Spin-Dependent Processes.

作者信息

Dergachev Vsevolod D, Rooein Mitra, Dergachev Ilya D, Lykhin Aleksandr O, Mauban Robert C, Varganov Sergey A

机构信息

Department of Chemistry, University of Nevada, Reno, 1664 N. Virginia Street, Reno, NV, 89557-0216, USA.

Department of Chemistry, The University of Chicago, Chicago, IL, 60637, USA.

出版信息

Top Curr Chem (Cham). 2022 Feb 24;380(2):15. doi: 10.1007/s41061-022-00366-w.

Abstract

We present a nonadiabatic statistical theory (NAST) package for predicting kinetics of spin-dependent processes, such as intersystem crossings, spin-forbidden unimolecular reactions, and spin crossovers. The NAST package can calculate the probabilities and rates of transitions between the electronic states of different spin multiplicities. Both the microcanonical (energy-dependent) and canonical (temperature-dependent) rate constants can be obtained. Quantum effects, including tunneling, zero-point vibrational energy, and reaction path interference, can be accounted for. In the limit of an adiabatic unimolecular reaction proceeding on a single electronic state, NAST reduces to the traditional transition state theory. Because NAST requires molecular properties at only a few points on potential energy surfaces, it can be applied to large molecular systems, used with accurate high-level electronic structure methods, and employed to study slow nonadiabatic processes. The essential NAST input data include the nuclear Hessian at the reactant minimum, as well as the nuclear Hessians, energy gradients, and spin-orbit coupling at the minimum energy crossing point (MECP) between two states. The additional computational tools included in the NAST package can be used to extract the required input data from the output files of electronic structure packages, calculate the effective Hessian at the MECP, and fit the reaction coordinate for more advanced NAST calculations. We describe the theory, its implementation, and three examples of application to different molecular systems.

摘要

我们提出了一种非绝热统计理论(NAST)软件包,用于预测自旋相关过程的动力学,如系间窜越、自旋禁阻的单分子反应和自旋交叉。NAST软件包可以计算不同自旋多重性电子态之间跃迁的概率和速率。可以得到微正则(能量相关)和正则(温度相关)速率常数。可以考虑量子效应,包括隧穿、零点振动能和反应路径干涉。在单电子态上进行的绝热单分子反应的极限情况下,NAST简化为传统的过渡态理论。由于NAST仅需要势能面上少数点的分子性质,因此它可以应用于大分子体系,与精确的高水平电子结构方法一起使用,并用于研究缓慢的非绝热过程。NAST的基本输入数据包括反应物最低点处的核 Hessian 矩阵,以及两个态之间的最低能量交叉点(MECP)处的核 Hessian 矩阵、能量梯度和自旋轨道耦合。NAST软件包中包含的额外计算工具可用于从电子结构软件包的输出文件中提取所需的输入数据,计算MECP处的有效 Hessian 矩阵,并拟合反应坐标以进行更高级的NAST计算。我们描述了该理论、其实现方法以及在不同分子体系中的三个应用示例。

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