Chen Xiao, Hou Xiao-Fang, Chen Xu-Man, Li Quan
Institute of Advanced Materials and School of Chemistry and Chemical Engineering, Southeast University, Nanjing, 211189, China.
Materials Science Graduate Program, Kent State University, Kent, OH, 44242, USA.
Nat Commun. 2024 Jun 26;15(1):5401. doi: 10.1038/s41467-024-49670-7.
Photocontrollable luminescent molecular switches capable of changing emitting color have been regarded as the ideal integration between intelligent and luminescent materials. A remaining challenge is to combine good luminescence properties with wide range of wavelength transformation, especially when confined in a single molecular system that forms well-defined nanostructures. Here, we report a π-expanded photochromic molecular photoswitch, which allows for the comprehensive achievements including wide emission wavelength variation (240 nm wide, 400-640 nm), high photoisomerization extent (95%), and pure emission color (<100 nm of full width at half maximum). We take the advantageous mechanism of modulating self-assembly and intramolecular charge transfer in the synthesis and construction, and further realize the full color emission by simple photocontrol. Based on this, both photoactivated anti-counterfeiting function and self-erasing photowriting films are achieved of fluorescence. This work will provide insight into the design of intelligent optical materials.
能够改变发光颜色的光控发光分子开关被视为智能材料与发光材料的理想结合。一个尚存的挑战是将良好的发光性能与宽范围的波长转换相结合,尤其是当限制在形成明确纳米结构的单个分子体系中时。在此,我们报道了一种π扩展的光致变色分子光开关,它实现了包括宽发射波长变化(240nm宽,400 - 640nm)、高光异构化程度(95%)和纯发射颜色(半高宽<100nm)等全面成果。我们在合成与构建过程中采用了调制自组装和分子内电荷转移的有利机制,并通过简单的光控进一步实现了全色发射。基于此,实现了光激活防伪功能和荧光自擦除光写入薄膜。这项工作将为智能光学材料的设计提供思路。