Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
9578024 | Chemical Physics Letters | 2005 | 6 Pages |
Abstract
We investigated the electronic structure of 1-methylene-3,5-didehydrobenzene triradical (MDB, C7H5) containing a Ï1Ï1 biradical benzene ring coupled with an exocyclic Ï1 CH2. MS-CASPT2(9,9)/ANO-L calculations reveal that MDB exhibits a low-spin doublet 2B1 (2Î ) ground state, followed by an open-shell doublet 2A2 state with a 2A2-2B1 gap of 17 ±  3 kcal molâ1. The energy ordering of MDB is (kcal molâ1): X2B1 (0) < A2A2 (17) < a4A2 (20) < B2B2 (39) < b4A1 (59) < C2A1 (61) < c4B1 (75) < d4B2 (79). The doublet states are lower in energy than the quartets, violating Hund's rule, due to a coupling of the two unpaired Ï-electrons transforming the triradical into a radical.
Related Topics
Physical Sciences and Engineering
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Physical and Theoretical Chemistry
Authors
Hue Minh Thi Nguyen, Tran Thanh Hue, Jozef Peeters, Minh Tho Nguyen,