首页> 外文期刊>Journal of chemical theory and computation: JCTC >Low-Lying pi pi* States of Heteroaromatic Molecules: A Challenge for Excited State Methods
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Low-Lying pi pi* States of Heteroaromatic Molecules: A Challenge for Excited State Methods

机译:杂芳分子的低空pi pi *状态:激发态方法的挑战

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摘要

The description of low-lying pi pi* states of linear acenes by standard electronic structure methods is known to be challenging. Here, we broaden the framework of this problem by considering a set of fused heteroaromatic rings and demonstrate that standard electronic structure methods do not provide a balanced description of the two (typically) lowest singlet state (L-a and L-b) excitations. While the L-b state is highly sensitive to correlation effects, L-a suffers from the same drawbacks as charge transfer excitations. We show that the comparison between CIS/CIS(D) can serve as a diagnostic for detecting the two problematic excited states. Standard TD-DFT and even its spin-flip variant lead to inaccurate excitation energies and interstate gaps, with only a double hybrid functional performing somewhat better. The complication inherent to a balanced description of these states is so important that even CC2 and ADC(2) do not necessarily match the ADC(3) reference.
机译:已知通过标准电子结构方法描述线性并苯的低价pi pi *状态是具有挑战性的。在这里,我们通过考虑一组稠合的杂芳环拓宽了这个问题的框架,并证明了标准的电子结构方法不能提供两个(通常)最低单重态(L-a和L-b)激发的平衡描述。 L-b状态对相关效应高度敏感,而L-a则具有与电荷转移激发相同的缺点。我们表明,CIS / CIS(D)之间的比较可以用作检测两个有问题的激发态的诊断。标准TD-DFT甚至其自旋翻转变型都会导致激励能量和状态间隙不准确,只有双重混合动力性能更好。平衡描述这些状态所固有的复杂性是如此重要,以至于CC2和ADC(2)都不一定与ADC(3)参考相匹配。

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