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Electronic π‐to‐π* Excitations of Rhodamine Dyes Exhibit a Time‐Dependent Kohn–Sham Theory Cyanine Problem

机译:若丹明染料的π-π*电子激发表现出时间依赖的Kohn-Sham理论花菁问题

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摘要

The longest‐wavelength π‐to‐π* electronic excitations of rhodamine‐like dyes (RDs) with different group 16 heteroatoms (O, S, Se, Te) have been investigated. Time‐dependent Kohn–Sham theory (TDKST) calculations were compared with coupled‐cluster (CC) and equations‐of‐motion (EOM) CC results for π‐to‐π* singlet and triplet excitations. The RDs exhibit characteristics in the TDKST calculations that are very similar to previously investigated cyanine dyes, in the sense that the singlet energies obtained with nonhybrid functionals are too high compared with the CC results at the SD(T) level. The errors became increasingly larger for functionals with increasing amounts of exact exchange. TDKST with all tested functionals led to severe underestimations of the corresponding triplet excitations and overestimations of the singlet–triplet gaps. Long‐range‐corrected range‐separated exchange and “optimal tuning” of the range separation parameter did not significantly improve the TDKST results. A detailed analysis suggests that the problem is differential electron correlation between the ground and excited states, which is not treated sufficiently by the relatively small integrals over the exchange‐correlation response kernel that enter the excitation energy expression. Numerical criteria are suggested that may help identify “cyanine‐like” problems in TDKST calculations of excitation spectra.
机译:研究了具有不同的16个杂原子(O,S,Se,Te)的若丹明样染料(RD)的最长波长π至π*电子激发。将时间相关的Kohn-Sham理论(TDKST)计算与π-π*单重态和三重态激发的耦合簇(CC)和运动方程(EOM)CC结果进行了比较。 RD在TDKST计算中表现出的特性与以前研究的花菁染料非常相似,从某种意义上来说,与非混合官能团获得的单重态能量相比,在SD(T)水平上获得的CC能量太高。随着功能的精确交换数量的增加,功能的错误变得越来越大。具有所有经过测试的功能的TDKST导致相应三重态激发的严重低估和单重态-三重态间隙的高估。远程校正后的距离分离交换和距离分离参数的“最佳调整”并没有显着改善TDKST结果。详细的分析表明,问题在于基态和激发态之间的差分电子相关性,而进入激发能表达式的交换相关响应内核上的相对较小的积分并未充分解决这一问题。建议使用数字标准,以帮助识别TDKST激发光谱的“类花青”问题。

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