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Increasing Radical Character of Large [n]cyclacenes Unveiled by Wave Function Theory
Author(s) -
Stefano Battaglia,
Noelia FaginasLago,
Dirk Andrae,
Stefano Evangelisti,
Thierry Leininger
Publication year - 2017
Publication title -
the journal of physical chemistry a
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.756
H-Index - 235
eISSN - 1520-5215
pISSN - 1089-5639
DOI - 10.1021/acs.jpca.7b00123
Subject(s) - complete active space , singlet state , wave function , character (mathematics) , valence (chemistry) , perturbation theory (quantum mechanics) , space (punctuation) , quantum mechanics , physics , electron , chemistry , mathematics , computer science , geometry , operating system , atomic orbital , excited state
We have investigated the radicality and the vertical singlet-triplet energy gap of [n]cyclacenes (cyclic polyacenes) as a function of the system size for n even, from 6 to 22. The calculations are performed using the complete active space self-consistent field method and second-order n-electron valence perturbation theory. We present a systematic way for the selection of the active space in order to have a balanced description of the wave function as the size of the system increases. Moreover, we provide didactic insight into the failure of an approach based on a minimal active space. We find that the ground state is an open-shell singlet and its multireference character increases progressively with n. The singlet-triplet gap decreases as a function of the system size and approaches a finite positive value for the limit n → ∞. Finally, an analysis based on the one-particle reduced density matrix suggests a polyradical character for the largest cyclacenes.

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