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单线态裂变的电子耦合:轨道选择及向完全基组极限的外推

Electronic couplings for singlet fission: Orbital choice and extrapolation to the complete basis set limit.

作者信息

Speelman Tom, Cunha Ana V, Kathir R K, Havenith Remco W A

机构信息

Stratingh Institute for Chemistry, University of Groningen, Groningen, The Netherlands.

High Performance Computing Group, SURFSara, Amsterdam, The Netherlands.

出版信息

J Comput Chem. 2021 Feb 15;42(5):326-333. doi: 10.1002/jcc.26458. Epub 2020 Dec 8.

Abstract

For the search for promising singlet fission candidates, the calculation of the effective electronic coupling, which is required to estimate the singlet fission rate between the initially excited state (SS) and the multiexcitonic state (TT, two triplets on neighboring molecules, coupled into a singlet), should be sufficiently reliable and fast enough to explore the configuration space. We propose here to modify the calculation of the effective electronic coupling using a nonorthogonal configuration interaction approach by: (a) using only one set of orbitals, optimized for the triplet state of the molecules, to describe all molecular electronic states, and (b) only taking the leading configurations into consideration. Furthermore, we also studied the basis set convergence of the electronic coupling, and we found, by comparison to the complete basis set limit obtained using the cc-pVnZ series of basis sets, that both the aug-cc-pVDZ and 6-311++G** basis sets are a good compromise between accuracy and computational feasibility. The proposed approach enables future work on larger clusters of molecules than dimers.

摘要

为了寻找有前景的单线态裂变候选物,有效电子耦合的计算对于估计初始激发态(SS)和多激子态(TT,相邻分子上的两个三重态,耦合为单线态)之间的单线态裂变率是必需的,其计算应足够可靠且速度足够快,以便探索构型空间。我们在此提议通过非正交构型相互作用方法修改有效电子耦合的计算,具体做法是:(a)仅使用一组针对分子三重态优化的轨道来描述所有分子电子态,以及(b)仅考虑主要构型。此外,我们还研究了电子耦合的基组收敛性,通过与使用cc-pVnZ系列基组获得的完全基组极限进行比较,我们发现aug-cc-pVDZ和6-311++G**基组在准确性和计算可行性之间都是很好的折衷方案。所提出的方法使得未来能够对比二聚体更大的分子簇进行研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/293a/7898305/d9890ba4b4bf/JCC-42-326-g001.jpg

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