De Boni L, Correa D S, Pavinatto F J, dos Santos D S, Mendonça C R
Instituto de Física de São Carlos, Universidade de São Paulo, Caixa Postal 369, 13560-970 São Carlos, São Paulo, Brazil.
J Chem Phys. 2007 Apr 28;126(16):165102. doi: 10.1063/1.2722755.
The study of excited state properties of chlorophyll a is a subject of foremost interest, given that it plays important roles in biological process and has also been proposed for applications in photonics. This work reports on the excited state absorption spectrum of chlorophyll a solution from 460 to 700 nm, obtained through the white-light continuum Z-scan technique. Saturation of absorption was observed due to the ground state depletion, induced by the white-light continuum region that is resonant with the Q band of chlorophyll a. The authors also observed reverse saturation of absorption related to the excitation from the first excited state to a higher energy level for wavelengths below 640 nm. An energy-level diagram, based on the electronic states of chlorophyll a, was employed to interpret their results, revealing that more states than the ones related to the Q and B bands participate in the excited state absorption of this molecule.
鉴于叶绿素a在生物过程中发挥着重要作用,并且在光子学应用方面也有相关提议,对其激发态性质的研究是一个备受关注的课题。这项工作报道了通过白光连续Z扫描技术获得的叶绿素a溶液在460至700纳米范围内的激发态吸收光谱。由于与叶绿素a的Q带共振的白光连续区域引起的基态耗尽,观察到了吸收饱和现象。作者还观察到,对于波长低于640纳米的情况,与从第一激发态到更高能级的激发相关的吸收呈现反饱和现象。基于叶绿素a的电子态构建了一个能级图,用于解释他们的结果,结果表明,参与该分子激发态吸收的态比与Q带和B带相关的态更多。