Filatov Michael, Lee Seunghoon, Choi Cheol Ho
Department of Chemistry, Kyungpook National University, Daegu 702-701, South Korea.
Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91125, United States.
J Chem Theory Comput. 2021 Aug 10;17(8):5123-5139. doi: 10.1021/acs.jctc.1c00479. Epub 2021 Jul 28.
Sudden polarization (SP) is one of the manifestations of electron transfer in the electronically excited states of molecules. Proposed initially to explain the unusual reactivity of photoexcited olefins, SP often occurs in the excited states of molecules possessing strongly correlated diradical ground state. Theoretical description of SP involves mixing between the singly excited and the doubly excited zwitterionic states, which makes it inaccessible with the use of the popular linear-response time-dependent density functional theory methods. In this work, an extended variant of the state-interaction state-averaged spin-restricted ensemble-referenced Kohn-Sham (SI-SA-REKS, or SSR) method is applied to study SP in a number of organic diradical systems. To this end, the analytical derivative formalism is derived and implemented for the SSR(3,2) method (see the main text for explanation of the acronym), which enables the automatic geometry optimization and obtains the relaxed density matrices as well as the electron binding energies and respective Dyson's orbitals. Application of the new method to SP in the lowest singlet excited state of ethylene agrees with the results obtained previously with the use of multireference methods of wavefunction theory. A number of interesting manifestations of SP are observed, such as the charge transfer in photoexcited tetramethyleneethene (TME) diradical mediated by the vibrational motion and conductivity switching in the excited state of a donor-acceptor dyad placed in an external electric field.
突然极化(SP)是分子电子激发态中电子转移的表现之一。SP最初是为了解释光激发烯烃的异常反应性而提出的,它经常出现在具有强相关双自由基基态的分子激发态中。SP的理论描述涉及单激发态和双激发两性离子态之间的混合,这使得使用流行的线性响应含时密度泛函理论方法无法对其进行研究。在这项工作中,应用了态相互作用态平均自旋限制系综参考Kohn-Sham(SI-SA-REKS,或SSR)方法的扩展变体来研究一些有机双自由基体系中的SP。为此,推导并实现了SSR(3,2)方法(首字母缩写的解释见正文)的解析导数形式,它能够自动进行几何优化,并获得松弛密度矩阵以及电子结合能和相应的戴森轨道。将新方法应用于乙烯最低单重激发态的SP,与先前使用波函数理论的多参考方法得到的结果一致。观察到了SP的一些有趣表现,例如光激发的四亚甲基乙烯(TME)双自由基中由振动介导的电荷转移以及置于外部电场中的供体-受体二元体系激发态中的电导率切换。