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相干超快扭转运动和仿生偶极光开关的异构化。

Coherent ultrafast torsional motion and isomerization of a biomimetic dipolar photoswitch.

机构信息

Institut de Physique et Chimie des Matériaux de Strasbourg, UMR 7504, Strasbourg University, CNRS, IPCMS-DON, 23, rue du Loess, 67034 Strasbourg, France.

出版信息

Phys Chem Chem Phys. 2010 Apr 7;12(13):3178-87. doi: 10.1039/b918603d. Epub 2010 Feb 10.

Abstract

Femtosecond fluorescence up-conversion, UV-Vis and IR transient absorption spectroscopy are used to study the photo-isomerization dynamics of a new type of zwitterionic photoswitch based on a N-alkylated indanylidene pyrroline Schiff base framework (ZW-NAIP). The system is biomimetic, as it mimics the photophysics of retinal, in coupling excited state charge translocation and isomerization. While the fluorescence lifetime is 140 fs, excited state absorption persists over 230 fs in the form of a vibrational wavepacket according to twisting of the isomerizing double bond. After a short "dark" time window in the UV-visible spectra, which we associate with the passage through a conical intersection (CI), the wavepacket appears on the ground state potential energy surface, as evidenced by the transient mid-IR data. This allows for a precise timing of the photoreaction all the way from the initial Franck-Condon region, through the CI and into both ground state isomers, until incoherent vibrational relaxation dominates the dynamics. The photo-reaction dynamics remarkably follow those observed for retinal in rhodopsin, with the additional benefit that in ZW-NAIP the conformational change reverses the zwitterion dipole moment direction. Last, the pronounced low-frequency coherences make these molecules ideal systems for investigating wavepacket dynamics in the vicinity of a CI and for coherent control experiments.

摘要

飞秒荧光上转换、紫外-可见和红外瞬态吸收光谱被用于研究一种新型基于 N-烷基吲哚并吡咯啉席夫碱骨架(ZW-NAIP)的两性离子光致开关的光异构化动力学。该体系是仿生的,因为它模拟了视黄醛的光物理性质,通过激发态电荷转移和异构化来耦合。虽然荧光寿命为 140 fs,但根据异构化双键的扭转,激发态吸收以振动波包的形式持续超过 230 fs。在紫外-可见光谱中出现一个短暂的“暗”时间窗口,我们将其与通过锥形交叉(CI)的过程相关联,波包出现在基态势能表面上,这可以从瞬态中红外数据得到证明。这使得光反应的精确计时从初始 Franck-Condon 区域一直到 CI 并进入两种基态异构体,直到非相干振动弛豫主导动力学。光反应动力学与视黄醛在视蛋白中的观察结果非常吻合,此外,在 ZW-NAIP 中,构象变化使两性离子偶极矩方向反转。最后,明显的低频相干性使这些分子成为研究 CI 附近波包动力学和相干控制实验的理想体系。

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