Low-Lying ππ* States of Heteroaromatic Molecules: A Challenge for Excited State Methods
Author(s) -
Antonio Prlj,
María Eugenia SandovalSalinas,
David Casanova,
Denis Jacquemin,
Clémence Corminbœuf
Publication year - 2016
Publication title -
journal of chemical theory and computation
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.001
H-Index - 185
eISSN - 1549-9626
pISSN - 1549-9618
DOI - 10.1021/acs.jctc.6b00245
Subject(s) - excited state , singlet state , excitation , electronic structure , charge (physics) , set (abstract data type) , physics , state (computer science) , excited electronic state , molecule , statistical physics , computer science , atomic physics , quantum mechanics , algorithm , programming language
The description of low-lying ππ* 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 (La and Lb) excitations. While the Lb state is highly sensitive to correlation effects, La 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.
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