Yokojima Satoshi, Matsuda Kenji, Irie Masahiro, Murakami Akinori, Kobayashi Takao, Nakamura Shinichiro
Mitsubishi Chemical Group, Science and Technology Research Center, Inc. and CREST-JST, 1000 Kamoshida-cho, Aoba-ku, Yokohama, 227-8502 Japan.
J Phys Chem A. 2006 Jul 6;110(26):8137-43. doi: 10.1021/jp060648j.
Electrochemical cyclization/cycloreversion reactions of a diarylethene, 1,2-bis(3-methyl-2-thienyl)perfluorocyclopentene, are examined experimentally by electron spin resonance (ESR) and absorption spectra. To understand the ESR spectrum, the hyperfine coupling constants are calculated by the density functional theory (DFT) with the B3LYP exchange-correlation functional. The averaged values of the hyperfine coupling constants are approximated by imposing the C(2) symmetry on the structure of the diarylethene. We found that the spectral width of the ESR is significantly different between the open- and closed-ring isomers. This is due to the difference in the pi-conjugation between two isomers. The ESR spectral width analysis could, thus, be used to identify the isomerization of the radical species, which involve the change of the pi-conjugation. The experimentally observed spectrum is found to be the mixture of the open- and closed-ring isomers of the diarylethene. The excitation energies of the cationic diarylethenes are further identified by the SAC-CI calculations.
通过电子自旋共振(ESR)和吸收光谱对二芳基乙烯1,2-双(3-甲基-2-噻吩基)全氟环戊烯的电化学环化/环反转反应进行了实验研究。为了理解ESR光谱,采用具有B3LYP交换相关泛函的密度泛函理论(DFT)计算了超精细耦合常数。通过对二芳基乙烯结构施加C(2)对称性来近似超精细耦合常数的平均值。我们发现,ESR的光谱宽度在开环和闭环异构体之间存在显著差异。这是由于两种异构体之间π共轭的差异所致。因此,ESR光谱宽度分析可用于识别涉及π共轭变化的自由基物种的异构化。实验观察到的光谱是二芳基乙烯开环和闭环异构体的混合物。通过SAC-CI计算进一步确定了阳离子二芳基乙烯的激发能。