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孤立发色团和激基复合物激发态性质的密度泛函性能:发射光谱、溶剂化显色位移和电荷转移特性

Performance of Density Functionals for Excited-State Properties of Isolated Chromophores and Exciplexes: Emission Spectra, Solvatochromic Shifts, and Charge-Transfer Character.

作者信息

Patra Abhilash, Pipim George Baffour, Krylov Anna I, Mallikarjun Sharada Shaama

机构信息

Mork Family Department of Chemical Engineering and Materials Science, University of Southern California, Los Angeles, California 90089, United States.

Department of Chemistry, University of Southern California, Los Angeles ,California 90089, United States.

出版信息

J Chem Theory Comput. 2024 Mar 26;20(6):2520-2537. doi: 10.1021/acs.jctc.4c00005. Epub 2024 Mar 15.

Abstract

This study assesses the performance of various meta-generalized gradient approximation (meta-GGA), global hybrid, and range-separated hybrid (RSH) density functionals in capturing the excited-state properties of organic chromophores and their excited-state complexes (exciplexes). Motivated by their uses in solar energy harvesting and photoredox CO reduction, we use oligo-(p-phenylenes) and their excited-state complexes with triethylamine as model systems. We focus on the fluorescence properties of these systems, specifically emission energies. We also consider solvatochromic shifts and wave function characteristics. The latter is described by using reduced quantities such as natural transition orbitals (NTOs) and exciton descriptors. The functionals are benchmarked against the experimental fluorescence spectra and the equation-of-motion coupled-cluster method with single and double excitations. Both in isolated chromophores and in exciplexes, meta-GGA functionals drastically underestimate the emission energies and exhibit significant exciton delocalization and anticorrelation between electron and hole motion. The performance of global hybrid functionals is strongly dependent on the percentage of exact exchange. Our study identifies RSH GGAs as the best-performing functionals, with ωPBE demonstrating the best agreement with experimental results. RSH meta-GGAs often overestimate emission energies in exciplexes and yield larger hole NTOs. Their performance can be improved by optimally tuning the range-separation parameter.

摘要

本研究评估了各种元广义梯度近似(meta-GGA)、全局杂化和范围分离杂化(RSH)密度泛函在捕捉有机发色团及其激发态复合物(激基复合物)的激发态性质方面的性能。受其在太阳能收集和光催化CO还原中的应用启发,我们使用寡聚对亚苯基及其与三乙胺的激发态复合物作为模型体系。我们关注这些体系的荧光性质,特别是发射能量。我们还考虑了溶剂化显色位移和波函数特征。后者通过使用诸如自然跃迁轨道(NTO)和激子描述符等简化量来描述。这些泛函以实验荧光光谱和含单双激发的运动方程耦合簇方法为基准进行评估。无论是在孤立的发色团中还是在激基复合物中,meta-GGA泛函都严重低估了发射能量,并表现出显著的激子离域以及电子和空穴运动之间的反相关。全局杂化泛函的性能强烈依赖于精确交换的百分比。我们的研究确定RSH GGA是性能最佳的泛函,其中ωPBE与实验结果的一致性最好。RSH meta-GGA在激基复合物中常常高估发射能量,并产生更大的空穴NTO。通过优化调整范围分离参数可以改善它们的性能。

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