Department of Chemistry Education, Kongju National University, Gongju 32588, Korea.
Molecules. 2022 Jul 8;27(14):4380. doi: 10.3390/molecules27144380.
The rational design of small building block molecules and understanding their molecular assemblies are of fundamental importance in creating new stimuli-responsive organic architectures with desired shapes and functions. Based on the experimental results of light-induced conformational changes of four types of triangular azo dyes with different terminal functional groups, as well as absorption and fluorescence characteristics associated with their molecular assemblies, we report that aggregation-active emission enhancement (AIEE)-active compound () substituted with sterically crowded -butyl (-Bu) groups showed approximately 35% light-induced molecular switching and had a strong tendency to assemble into highly stable hexagonal structures with AIEE characteristics. Their sizes were regulated from nanometer-scale hexagonal rods to micrometer-scale sticks depending on the concentration. This is in contrast to other triangular compounds with bromo (Br) and triphenylamine (TPA) substituents, which exhibited no photoisomerization and tended to form flexible fibrous structures. Moreover, non-contact exposure of the fluorescent hexagonal nanorods to ultraviolet (UV) light led to a dramatic hexagonal-to-amorphous structure transition. The resulting remarkable variations, such as in the contrast of microscopic images and fluorescence characteristics, were confirmed by various microscopic and spectroscopic measurements.
小分子砌块的合理设计和对其分子组装的深入理解,对于构建具有理想形状和功能的新型刺激响应性有机结构具有重要意义。基于四种具有不同末端官能团的三角型偶氮染料的光致构象变化的实验结果,以及与其分子组装相关的吸收和荧光特性,我们报告说,具有聚集诱导发光增强(AIEE)活性的化合物(),其中取代基为空间位阻较大的叔丁基(-Bu)基团,表现出约 35%的光致分子开关特性,并且具有强烈的倾向,组装成具有 AIEE 特性的高度稳定的六方结构。根据浓度的不同,它们的尺寸从纳米级的六方棒调控到微米级的棒。这与具有溴(Br)和三苯胺(TPA)取代基的其他三角型化合物形成鲜明对比,后者没有光致异构化,倾向于形成柔性纤维状结构。此外,荧光六方纳米棒的非接触式紫外(UV)光暴露导致了显著的六方-无定形结构转变。通过各种微观和光谱测量证实了这些显著变化,例如微观图像和荧光特性的对比度。