首页> 外文期刊>Journal of chemical theory and computation: JCTC >Excited State Geometries and Vertical Emission Energies of Solvated Dyes for DSSC: A PCM/TD-DFT Benchmark Study
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Excited State Geometries and Vertical Emission Energies of Solvated Dyes for DSSC: A PCM/TD-DFT Benchmark Study

机译:DSSC溶剂化染料的激发态几何形状和垂直发射能:PCM / TD-DFT基准研究

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摘要

The ability of Time-Dependent Density Functional Theory (TD-DFT) to provide exdted state geometries and reproduce emission energies of organic D-;r-A dyes designed for DSSC applications is evaluated. The performance of six functionals (CAM-B3LYP, MPW1K, ωB97X-D, LC-BLYP, LC-ωPBE, and M06-HF) in combination with three basis sets (cc-pVDZ, 6-31+G(d,p), and 6-311+G(2d,p)) has been analyzed. Solvent effects have been taken into account by means of a Polarizable Continuum Model in both LR and SS formalisms. Our LR-PCM/ TD-DFT results show that accurate emission energies are obtained only when solvent effects are included in the computation of excited state geometries and when a range separated hybrid functional is used. Vertical emission energies are reproduced with a mean absolute error of at most 0.2 eV. The accuracy is further improved using the SS-PCM formalism.
机译:评估了随时间变化的密度泛函理论(TD-DFT)提供过剩的状态几何并复制专为DSSC应用而设计的有机D-; r-A染料的发射能的能力。六个功能(CAM-B3LYP,MPW1K,ωB97X-D,LC-BLYP,LC-ωPBE和M06-HF)与三个基础集(cc-pVDZ,6-31 + G(d,p) ,并且分析了6-311 + G(2d,p))。在LR和SS形式主义中,已经通过极化可连续体模型考虑了溶剂的影响。我们的LR-PCM / TD-DFT结果表明,只有在计算激发态几何时包括溶剂效应并且使用范围分离的混合功能时,才能获得准确的发射能量。垂直发射能量的平均绝对误差最大为0.2 eV。使用SS-PCM形式可以进一步提高准确性。

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