Madrid Institute for Advanced Studies, IMDEA Nanoscience, Ciudad Universitaria de Cantoblanco, C. Faraday 9, 28049 Madrid, Spain.
São Paulo State Department of Education, 03349-030 São Paulo, Brazil.
J Chem Theory Comput. 2022 Sep 13;18(9):5449-5458. doi: 10.1021/acs.jctc.2c00302. Epub 2022 Aug 8.
Excited-state absorption (ESA) spectra of π-conjugated compounds are frequently calculated by (quadratic response) time-dependent density functional theory, (QR) TD-DFT, often giving a reasonable representation of the experimental results despite the (known) incomplete electronic description. To investigate whether this is inherent to the method, we calculate here the ESA spectra of small-to-medium-sized oligophenylenevinylenes (PV) and oligothiophenes (T) using QR TD-DFT as well as CASPT2 based on CASSCF geometries. CASPT2 gives indeed a reliable, theoretically correct description of the ESA features for all compounds; the computational effort can be reduced without significant loss of accuracy using TD-DFT geometries. QR TD-DFT, based on BHandHLYP and CAM-/B3LYP functionals, fails on short but provides a reasonable description for spectral positions of and long . The failure on short is, however, only partly due to the incomplete configuration description but, in particular, related to an improper MO description, resulting in an asymmetric energy spacing of the occupied vs unoccupied MOs in the DFT scheme. Longer , on the other side, adapt approximately the MO scheme for alternant hydrocarbons just like in , while contributions by two triplet excitations combined to a singlet (which inhibits an accurate treatment of polyenes with standard TD-DFT) do not play a relevant role in the current case. For such "well-behaved" systems, a reasonable representation of ESA spectra is found at the QR TD-DFT level due to the rather small energy shifts when including higher-order excitations.
π 共轭化合物的激发态吸收(ESA)光谱通常通过(二次响应)含时密度泛函理论(QR TD-DFT)进行计算,尽管存在(已知的)不完全电子描述,但该方法通常可以合理地表示实验结果。为了研究这是否是该方法固有的特性,我们使用 QR TD-DFT 以及基于 CASSCF 几何形状的 CASPT2 计算了中小尺寸的寡聚苯乙烯基乙烯(PV)和寡聚噻吩(T)的 ESA 光谱。CASPT2 确实为所有化合物的 ESA 特征提供了可靠的、理论上正确的描述;使用 TD-DFT 几何形状可以在不显著降低准确性的情况下降低计算工作量。基于 BHandHLYP 和 CAM-/B3LYP 泛函的 QR TD-DFT 在短 上失败,但为 和长 的光谱位置提供了合理的描述。然而,短 上的失败不仅部分归因于不完全的构型描述,而且特别与 DFT 方案中占据和未占据 MO 的不对称能隙有关,导致 MO 描述不当。另一方面,较长的 近似地适应交替烃的 MO 方案,就像在 中一样,而由两个三重态激发组合成一个单重态(这抑制了用标准 TD-DFT 对多烯的准确处理)的贡献在当前情况下并不起重要作用。对于这种“表现良好”的系统,由于包括更高阶激发时能量位移较小,因此在 QR TD-DFT 水平上可以找到 ESA 光谱的合理表示。