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Photoswitchable molecular switches featuring both axial and tetrahedral chirality

机译:具有轴向和四面体手性的光开关分子开关

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In this study, we develop a kind of novel photoswitchable chiral azo switches bearing both axially chiral binaphthyl center and single tetrahedrally chiral center with different configurations. The influence of the configuration of the tetrahedrally chiral centers and the introduction of a rigid structure on the helical twisting power (HTP) of the chiral azo switch was addressed in detail. Our results demonstrate that the import of the tetrahedrally chiral center dramatically decreased the HTP of the axially chiral azo switch, while the rigid long core increased the HTP. According to a molecular simulation based on Gaussian03 calculations at the B3LYP/6-31G(d) level, both the molecular configuration and the molecular aspect ratio were found to be the key factors influencing the HTP of the chiral azo switch. Finally, we utilize the above chiral azo switch to fabricate a photo-addressed, flexible liquid crystal device. This work provides an insight into the relationship between the chiral effect and molecular structure of chiral switches and their potential applications for photonic and display fields.
机译:在这项研究中,我们开发了一种新型的可光开关的手性偶氮开关,其同时具有轴向手性联萘中心和具有不同构型的单个四面体手性中心。详细讨论了四面体手性中心构型的影响以及刚性结构的引入对手性偶氮开关的螺旋扭曲力(HTP)的影响。我们的结果表明,四面体手性中心的导入显着降低了轴向手性偶氮开关的HTP,而刚性长核则提高了HTP。根据基于Gaussian03计算的B3LYP / 6-31G(d)水平的分子模拟,发现分子构型和分子长宽比都是影响手性偶氮开关HTP的关键因素。最后,我们利用上述手性偶氮开关来制造光寻址的柔性液晶器件。这项工作为手性效应和手性开关的分子结构之间的关系及其在光子和显示领域的潜在应用提供了见解。

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