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Mechanical Motion of Chiral Azobenzene Crystals with Twisting upon Photoirradiation

机译:手性偶氮苯晶体在光辐照下扭曲的机械运动

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The photomechanical motion of chiral crystals of trans-azobenzene derivatives with an (S)- and (R)-phenylethylamide group was investigated and compared with a racemic crystal. Changes in the UV/Vis absorption spectra of the powdered crystals before and after UV irradiation were measured by using an optical waveguide spectrometer, showing that the lifetime of the cis-to-trans thermal backisomerization of the chiral crystals was faster than that of the racemic crystals. Upon UV irradiation, a long plate-like chiral microcrystal bent away from the light source with a twisting motion. A square-like chiral microcrystal curled toward the light with some twisting. Reversible bending of a rod-like chiral microcrystal was repeatable over twenty-five cycles. In contrast, bending of a plate-like racemic microcrystal was small. A possible mechanism for the bending and twisting motion was discussed based on the optimized cis conformer determined by using calculations, showing that the bending motion with twisting is caused by elongation along the b axis and shrinkage along the a axis.
机译:研究了具有(S)-和(R)-苯基乙酰胺基的反式偶氮苯衍生物的手性晶体的光机械运动,并将其与外消旋晶体进行了比较。使用光波导光谱仪测量了紫外线照射前后粉末状晶体的紫外线/可见光吸收光谱的变化,表明手性晶体的顺式至反式热反异构化的寿命比外消旋体的寿命快。晶体。在紫外线照射下,长板状手性微晶以扭曲运动远离光源弯曲。正方形的手性微晶在扭曲的情况下朝着光弯曲。棒状手性微晶的可逆弯曲在二十五个循环中是可重复的。相反,板状外消旋微晶的弯曲小。基于通过计算确定的最佳顺式构象异构体,讨论了可能的弯曲和扭曲运动机理,结果表明,扭曲的弯曲运动是由沿b轴的伸长和沿a轴的收缩引起的。

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