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Level of Theory and Solvent Effects on DASA Absorption Properties Prediction: Comparing TD-DFT CASPT2 and NEVPT2

机译:理论水平和溶剂对DASA吸收性能预测的影响:比较TD-DFTCASPT2和NEVPT2

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摘要

Donor–acceptor Stenhouse adducts (DASAs) are a very recent class of organic photoswitches that combine excellent properties, such as color and polarity change, a large structural modification, and excellent fatigue resistance. Despite their potential applications in different fields, very few studies have focused on rationalizing their electronic structure properties. Here, by means of different state-of-the-art theoretical methods, including solvent and vibrational effects, we show that while time dependent-density functional theory (TD-DFT) can qualitatively describe DASAs’ excited states, multiconfigurational quantum chemistry methods along with dynamic electron correlation (CASPT2, NEVPT2) are required for a quantitative agreement with the experiment. This finding is reasoned based on the different charge transfer characteristics observed. Moreover, the TD-DFT computed two-photon absorption properties are reported and suggested to red-shift the absorption band, as required for biological applications.
机译:供体-受体Stenhouse加合物(DASAs)是一类非常新的有机光敏开关,具有出色的性能,例如颜色和极性变化,较大的结构修饰和出色的抗疲劳性。尽管它们在不同领域中具有潜在的应用,但很少有研究致力于使其电子结构特性合理化。在这里,通过包括溶剂效应和振动效应在内的不同最新理论方法,我们表明,虽然时变密度泛函理论(TD-DFT)可以定性描述DASA的激发态,但多构型量子化学方法具有动态电子相关性(CASPT2,NEVPT2)与实验的定量协议是必需的。该发现是根据观察到的不同电荷转移特性得出的。此外,据报道TD-DFT计算出的两光子吸收特性,并建议根据生物应用的要求使吸收带发生红移。

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