Xiao Yuxin, Li Jiahui, Song Zihe, Liao Jimeng, Shen Mingyao, Yu Tao, Huang Wei
Frontiers Science Center for Flexible Electronics, Xi'an Institute of Flexible Electronics & Xi'an Institute of Biomedical Materials and Engineering, Northwestern Polytechnical University, 127 West Youyi Road, Xi'an 710072, China.
Key Laboratory of Flexible Electronics of Zhejiang Province, Ningbo Institute of Northwestern Polytechnical University, 218 Qingyi Road, Ningbo 315103, China.
J Am Chem Soc. 2025 Jun 18;147(24):20372-20380. doi: 10.1021/jacs.5c00976. Epub 2025 Jun 6.
Light-responsive organic functional materials, especially photochromic materials and room temperature phosphorescence (RTP) materials, have emerged as key players recently for driving advancements in various cutting-edge optical applications. Most of them exhibit a single functional property upon ultraviolet (UV) light irradiation, while visible light triggered functional materials are still scarce. Herein, we have designed three triphenylethylene materials with visible light triggered photochromism and RTP dual-functional properties via a local rigidity design strategy and host-guest strategy and successfully fabricated 3D structures through digital light processing 3D printing methods. The extended π-conjugation structure of triphenylethylene derivatives in the ring-closed forms by introducing dibenzothiophene into the triphenylethylene skeleton influenced the redshift of the absorption peaks and excitation spectra. The halogens and twisted molecules create abundant intermolecular interactions that stabilize the triplet exciton and reduce energy, leading to visible light triggered photochromism and RTP. Taking advantage of the great convenience of excitation light in the visible range, these dual-functional 3D printed materials can be used to create individualized structures. This study not only opens up a strategy for developing functional photosensitive materials that combine photochromism and RTP properties but also provides our insight into optical multichannel information storage with high resolution.
光响应有机功能材料,尤其是光致变色材料和室温磷光(RTP)材料,近来已成为推动各种前沿光学应用发展的关键因素。它们中的大多数在紫外光照射下表现出单一功能特性,而可见光触发的功能材料仍然稀缺。在此,我们通过局部刚性设计策略和主客体策略设计了三种具有可见光触发光致变色和RTP双功能特性的三苯乙烯材料,并通过数字光处理3D打印方法成功制备了三维结构。通过将二苯并噻吩引入三苯乙烯骨架,三苯乙烯衍生物在闭环形式下的扩展π共轭结构影响了吸收峰和激发光谱的红移。卤素和扭曲分子产生丰富的分子间相互作用,稳定三重态激子并降低能量,从而导致可见光触发的光致变色和RTP。利用可见范围内激发光的极大便利性,这些双功能3D打印材料可用于创建个性化结构。本研究不仅为开发兼具光致变色和RTP特性的功能性光敏材料开辟了一种策略,还为高分辨率光学多通道信息存储提供了我们的见解。