Division of Chemistry and Biological Chemistry, School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore 637371, Singapore.
J Phys Chem B. 2013 Feb 28;117(8):2294-9. doi: 10.1021/jp310154y. Epub 2013 Feb 12.
Ultrafast two-dimensional electronic spectroscopy has been used to study the spectral diffusion of the Qy transition of chlorophyll a in methanol. The two time frequency-fluctuation correlation function (FFCF) of the transition has been measured using the center line slope method, together with optimized fitting of the linear spectrum. The FFCF was measured to decay over four time scales. The three fastest time constants of which were measured to be ∼65 fs, ∼0.5 ps, and ∼7 ps. These are assigned as the inertial component of solvation and spectrally diffusive solvation processes respectively. The fourth time constant (>1 ns) may be attributed to the chromophore structural inhomogeneity.
超快二维电子光谱已被用于研究甲醇中叶绿素 a 的 Qy 跃迁的光谱扩散。使用中心线斜率法测量了跃迁的两个时间频移相关函数(FFCF),并与线性谱的优化拟合相结合。FFCF 被测量为在四个时间尺度上衰减。其中三个最快的时间常数被测量为约 65fs、约 0.5ps 和约 7ps。这些分别被分配为溶剂化的惯性分量和光谱扩散溶剂化过程。第四个时间常数(>1ns)可能归因于发色团结构的不均匀性。