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Ultrafast isomerization-induced cooperative motions to higher molecular orientation in smectic liquid-crystalline azobenzene molecules

机译:近晶液晶偶氮苯分子中超快异构化诱导的向更高分子取向的协同运动

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摘要

The photoisomerization of molecules is widely used to control the structure of soft matter in both natural and synthetic systems. However, the structural dynamics of the molecules during isomerization and their subsequent response are difficult to elucidate due to their complex and ultrafast nature. Herein, we describe the ultrafast formation of higher-orientation of liquid-crystalline (LC) azobenzene molecules via linearly polarized ultraviolet light (UV) using ultrafast time-resolved electron diffraction. The ultrafast orientation is caused by the trans-to-cis isomerization of the azobenzene molecules. Our observations are consistent with simplified molecular dynamics calculations that revealed that the molecules are aligned with the laser polarization axis by their cooperative motion after photoisomerization. This insight advances the fundamental chemistry of photoresponsive molecules in soft matter as well as their ultrafast photomechanical applications.
机译:分子的光异构化被广泛用于控制天然和合成系统中软物质的结构。然而,由于其复杂和超快的性质,很难阐明分子在异构化过程中的结构动力学及其后续反应。在这里,我们描述了使用超快时间分辨电子衍射通过线偏振紫外线(UV)超快速形成液晶(LC)偶氮苯分子的高取向。超快速取向是由偶氮苯分子的反式-顺式异构化引起的。我们的观察结果与简化的分子动力学计算是一致的,该计算揭示了分子在光异构化之后通过其协同运动与激光偏振轴对齐。这种见解促进了光响应分子在软物质及其超快光机械应用中的基本化学作用。

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