College of Chemistry, State Key Laboratory of Elemento-Organic Chemistry , Nankai University , Tianjin 300071 , P. R. China.
Collaborative Innovation Center of Chemical Science and Engineering , Tianjin 300071 , P. R. China.
ACS Appl Mater Interfaces. 2018 Apr 18;10(15):12135-12140. doi: 10.1021/acsami.7b12822. Epub 2017 Oct 31.
The precise control of molecular interaction and motion is a powerful strategy in the creation and development of intelligent materials. We demonstrate here a simple concept and approach to integrate intramolecular photochromic property with intermolecular aggregation-induced emission behaviors, with the aim to construct a new type of photoswitchable luminescent materials. This strategy is realized by the dithienylethene-bridged bispyridinium salt as photochromic molecular turnstile, and their subsequent fabrication into optically functional materials is reported. By restricting the rotation of central chemical bonds, the obtained molecular turnstile not only exhibits photocontrolled fluorescence emission through solvent exchange but is also capable of transforming into photowritable and photoerasable films in polymeric matrix with good recyclability. This functional molecular turnstile provides convenient routes to construct photochromic nanomaterials with controlled photophysical behaviors.
精确控制分子相互作用和运动是创造和开发智能材料的一种强大策略。在这里,我们展示了一种简单的概念和方法,将分子内光致变色性质与分子间聚集诱导发射行为相结合,旨在构建新型的光致开关发光材料。该策略是通过二噻吩乙烯桥联双吡啶鎓盐作为光致变色分子转门来实现的,并报道了它们随后被制备成具有光学功能的材料。通过限制中心化学键的旋转,所得的分子转门不仅通过溶剂交换表现出光控荧光发射,而且还能够在具有良好可回收性的聚合物基质中转化为可光写入和光擦除的薄膜。这种功能分子转门为构建具有可控光物理行为的光致变色纳米材料提供了便捷途径。