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通过与GW能级的优化调整评估TD-DFT激发态几何结构的准确性。

Assessing the accuracy of TD-DFT excited-state geometries through optimal tuning with GW energy levels.

作者信息

Knysh Iryna, Raimbault Denez, Duchemin Ivan, Blase Xavier, Jacquemin Denis

机构信息

Nantes Université, CNRS, CEISAM UMR 6230, F-44000 Nantes, France.

Université Grenoble Alpes, CEA, IRIG-MEM-L_Sim, 38054 Grenoble, France.

出版信息

J Chem Phys. 2024 Apr 14;160(14). doi: 10.1063/5.0203818.

Abstract

We study the accuracy of excited state (ES) geometries using optimally tuned LC-PBE functionals with tuning based on GW quasiparticle energies. We compare the results obtained with the PBE, PBE0, non-tuned, and tuned LC-PBE functionals with available high-level CC reference values as well as experimental data. First, we compare ES geometrical parameters obtained for three different types of systems: molecules composed of a few atoms, 4-(dimethylamino)benzonitrile (DMABN), and conjugated dyes. To this end, we used wave-function results as benchmarks. Next, we evaluate the accuracy of the theoretically simulated spectra as compared to the experimental ones for five large dyes. Our results show that, besides small compact molecules for which tuning LC-PBE does not allow obtaining geometries more accurate than those computed with standard functionals, tuned range-separated functionals are clearly to be favored, not only for ES geometries but also for 0-0 energies, band shapes, and intensities for absorption and emission spectra. In particular, the results indicate that GW-tuned LC-PBE functionals provide improved matching with experimental spectra as compared to conventionally tuned functionals. It is an open question whether TD-DFT with GW-tuned functionals can qualitatively mimic the actual many-body Bethe-Salpeter (BSE/GW) formalism for which analytic ionic gradients remain to be developed.

摘要

我们使用基于GW准粒子能量进行调谐的最优调谐LC-PBE泛函来研究激发态(ES)几何结构的准确性。我们将使用PBE、PBE0、未调谐和调谐后的LC-PBE泛函所获得的结果与可用的高水平耦合簇(CC)参考值以及实验数据进行比较。首先,我们比较了为三种不同类型的体系所获得的ES几何参数:由几个原子组成的分子、4-(二甲氨基)苯甲腈(DMABN)和共轭染料。为此,我们将波函数结果用作基准。接下来,我们将五种大染料的理论模拟光谱与实验光谱进行比较,评估其准确性。我们的结果表明,除了对于小分子紧凑分子而言,调谐LC-PBE无法获得比使用标准泛函计算出的更精确的几何结构外,调谐后的范围分离泛函显然更受青睐,不仅对于ES几何结构,而且对于0-0能量、吸收和发射光谱的能带形状及强度都是如此。特别是,结果表明与传统调谐泛函相比,GW调谐的LC-PBE泛函能更好地与实验光谱匹配。对于具有GW调谐泛函的含时密度泛函理论(TD-DFT)是否能够定性地模拟实际的多体贝叶斯-萨尔皮特(BSE/GW)形式体系,这仍是一个悬而未决的问题,因为该形式体系的解析离子梯度仍有待开发。

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