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一些热激活延迟荧光发射体的激发态性质:寻求一种准确可靠的计算方法

Excited-State Properties of Some Thermally Activated Delayed Fluorescence Emitters: Quest for an Accurate and Reliable Computational Method.

作者信息

Rohman Satter, Kar Rahul

机构信息

Department of Chemistry, Dibrugarh University, Dibrugarh, Assam 786004, India.

出版信息

J Phys Chem A. 2022 Jun 9;126(22):3452-3462. doi: 10.1021/acs.jpca.2c01463. Epub 2022 May 24.

Abstract

Thermally activated delayed fluorescence (TADF) finds application in organic light-emitting diodes. The molecules exhibiting TADF are characterized by small singlet-triplet energy gaps that help reverse intersystem crossing. Recently, ionization potential (IP)-tuned range-separated (RS) density functionals have been well accepted for studying excited-state properties. In the present work, two efficient descriptor-based tuning schemes [electron localization function (ELF) and Sol] of RS density functionals have been used to accurately reproduce the excited-state properties of TADF emitters by performing a single self-consistent field calculation. The lowest singlet vertical excitation energies ((S)) and the vertical singlet-triplet energy gaps (Δ) are computed with ELF-, Sol-, and IP-tuned RS functionals (LC-BLYP, ωB97, ωB97X, and ωB97XD). Encouraging mean absolute deviations from the experimental values with ELF*-, Sol*-, and IP-tuned functionals are observed. Consistent performance of the non-empirical tuned functionals is noted in different solvent dielectrics. In addition to these, fractional occupation calculations have shown that our tuned functionals almost satisfy the energy linearity curve. Thus, ELF*- and Sol*-tuned functionals are promising and reliable alternatives in computing the excited-state properties. Considering the small experimental singlet-triplet gap, we recommend ELF* to calculate (S) and Sol* to calculate Δ.

摘要

热激活延迟荧光(TADF)在有机发光二极管中得到应用。表现出TADF的分子具有小的单重态-三重态能隙,这有助于反向系间窜越。最近,电离势(IP)调谐的范围分离(RS)密度泛函已被广泛接受用于研究激发态性质。在本工作中,通过进行单次自洽场计算,使用了两种基于有效描述符的RS密度泛函调谐方案[电子定域函数(ELF)和Sol]来准确再现TADF发射体的激发态性质。使用ELF、Sol和IP调谐的RS泛函(LC-BLYP、ωB97、ωB97X和ωB97XD)计算了最低单重态垂直激发能((S))和垂直单重态-三重态能隙(Δ)。观察到ELF*、Sol和IP调谐泛函与实验值的平均绝对偏差令人鼓舞。在不同溶剂电介质中,非经验调谐泛函表现出一致的性能。除此之外,分数占据计算表明我们的调谐泛函几乎满足能量线性曲线。因此,ELF和Sol调谐泛函在计算激发态性质方面是有前景且可靠的替代方案。考虑到实验单重态-三重态能隙较小,我们推荐使用ELF计算(S),使用Sol*计算Δ。

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