Wakabayashi Masamitsu, Yokojima Satoshi, Fukaminato Tuyoshi, Shiino Ken-ichi, Irie Masahiro, Nakamura Shinichiro
Department of Biomolecular Engineering, Tokyo Institute of Technology , 4259 Nagatsuta-cho, Midori-ku, Yokohama, Kanagawa 226-8501, Japan.
J Phys Chem A. 2014 Jul 10;118(27):5046-57. doi: 10.1021/jp409559t. Epub 2014 Jun 25.
A formula for an anisotropic dissymmetry factor g evaluating the chiroptical response of orientationally fixed molecules is derived. Incorporating zeroth- and first-order multipole expansion terms, it is applied to bridged triarylamine helicene molecules to examine the experimental results of single-molecule chiroptical spectroscopy. The ground- and excited-state wave functions and a series of transition moments required for the evaluation of the anisotropic g value are calculated using time-dependent density functional theory (TDDFT). The probability histograms obtained for simulated g values, uniformly sampled in regard to the direction of light propagation toward the fixed molecule, show that even for a given diastereomer, the dissymmetry factors have positive and negative values and can deviate from their averages to a considerable extent when the angle between the electric dipole transition moment and the propagation vector of the incident light is near 0 or 180°.
推导了一个用于评估取向固定分子的手性光学响应的各向异性不对称因子g的公式。结合零阶和一阶多极展开项,将其应用于桥连三芳基胺螺旋烯分子,以检验单分子手性光谱的实验结果。使用含时密度泛函理论(TDDFT)计算评估各向异性g值所需的基态和激发态波函数以及一系列跃迁矩。对于朝着固定分子传播的光的方向进行均匀采样得到的模拟g值的概率直方图表明,即使对于给定的非对映异构体,当电偶极跃迁矩与入射光的传播矢量之间的夹角接近0或180°时,不对称因子也有正值和负值,并且可以在相当程度上偏离其平均值。