Cheng Yuan-Yuan, Liu Ya-Jun
Key Laboratory of Theoretical and Computational Photochemistry, Ministry of Education, College of Chemistry, Beijing Normal University, Beijing, China.
Photochem Photobiol. 2016 Jul;92(4):552-60. doi: 10.1111/php.12601. Epub 2016 Jun 8.
Firefly bioluminescence has been applied in several fields. However, the absorption and fluorescence spectra of the substrate, luciferin, have not been observed at the vibrational level. In this study, the vibrationally resolved absorption and fluorescence spectra of firefly luciferin (neutral form LH2 , phenolate ion form LH(-) and dianion form L(2-) ) are simulated using the density functional method and convoluted by a Gaussian function, with displacement, distortion and Duschinsky effects in the framework of the Franck-Condon approximation. Both neutral and anionic forms of the luciferin are considered in the gas phase and in solution. The simulated spectra have desired band maxima with the experimental ones. The vibronic structure analysis reveals that the features of the most contributive vibrational modes coincide with the key geometry-changing region during transition between the ground state and the first singlet excited state.
萤火虫生物发光已应用于多个领域。然而,尚未在振动水平上观察到底物荧光素的吸收光谱和荧光光谱。在本研究中,采用密度泛函方法模拟了萤火虫荧光素(中性形式LH2、酚盐离子形式LH(-)和双阴离子形式L(2-))的振动分辨吸收光谱和荧光光谱,并在弗兰克-康登近似框架下,通过高斯函数对其进行卷积,同时考虑了位移、畸变和杜什insky效应。在气相和溶液中均考虑了荧光素的中性和阴离子形式。模拟光谱与实验光谱具有所需的谱带最大值。振转结构分析表明,在基态和第一单线态激发态之间跃迁过程中,最具贡献的振动模式的特征与关键的几何结构变化区域相吻合。