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首页> 外文期刊>The Journal of Chemical Physics >Mirror symmetry and vibrational structure in optical spectra of chlorophyll a
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Mirror symmetry and vibrational structure in optical spectra of chlorophyll a

机译:叶绿素a光谱中的镜对称性和振动结构

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The absorption and fluorescence emission spectra of chlorophyll a in different organic solvents where the central Mg atom is either penta- or hexacoordinated have been studied using conventional and selective spectroscopy methods at ambient and cryogenic temperatures. A breakdown of the basic model mirror-symmetry rule in relation to the lowest-energy Qy transitions was observed due to Franck–Condon and Hertzberg–Teller interactions. Detailed vibrational structure in the ground electronic state, virtually independent of the Mg coordination state, was revealed by hole-burning fluorescence line-narrowing technique. The total Huang–Rhys factor associated with the linear vibronic coupling strength of the solvent collective vibrations and the local chlorophyll a intramolecular vibrations is equal to 0.53±0.07 in fluorescence and to 0.39±0.05 in absorption. The electron-phonon coupling part was also found to depend on the excitation wavelength within the inhomogeneously broadened absorption origin band, its average value being Sph 0.38. All these numbers qualify for the weak vibronic coupling. A comparison of the conjugate Qy absorption and fluorescence emission spectra as well as the temperature dependence of the absorption spectra allowed unambiguous locating of the still controversial Qx absorption band position for penta- and hexacoordinated chlorophyll a species. The basic experimental findings have been qualitatively supported by semiempirical quantum chemical calculations.
机译:使用常规和选择性光谱法在环境温度和低温条件下研究了中心Mg原子为五配位或六配位的不同有机溶剂中叶绿素a的吸收和荧光发射光谱。由于Franck-Condon和Hertzberg-Teller相互作用,观察到与最低能量Qy跃迁有关的基本模型镜像对称规则的分解。空穴燃烧荧光线变窄技术揭示了基本电子状态下的详细振动结构,实际上与Mg配位状态无关。与溶剂集体振动和局部叶绿素a分子内振动的线性振动耦合强度有关的总Huang-Rhys因子在荧光上等于0.53±0.07,在吸收上等于0.39±0.05。还发现电子-声子耦合部分取决于非均匀加宽的吸收原带内的激发波长,其平均值为Sph 0.38。所有这些数字都适用于弱电声耦合。共轭Qy吸收光谱和荧光发射光谱的比较以及吸收光谱的温度依赖性使得对于五配位和六配位叶绿素a物种而言,仍然有争议的Qx吸收带位置明确定位。基本实验结果得到了半经验量子化学计算的定性支持。

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