Ma Yu-Juan, Xu Fei, Ren Xin-Ye, Chen Fan-Yao, Pan Jie, Li Jin-Hua, Han Song-De, Wang Guo-Ming
College of Chemistry and Chemical Engineering, Key Laboratory of Shandong Provincial Universities for Functional Molecules and Materials, Qingdao University Qingdao Shandong 266071 P. R. China
Chem Sci. 2024 Oct 2;15(42):17642-51. doi: 10.1039/d4sc04632c.
Smart optical materials with tunable fluorescence and room temperature phosphorescence (RTP) exhibit promising application prospects in the field of intelligent switches, information security, Herein, a tetraimidazole derivative was grafted to one-dimensional lanthanum-diphosphonate through H-bonds, generating a coordination polymer (CP), (H-TIBP)·[LaLi(H-HEDP)(H-HEDP)]·3HO (termed La; TIBP = 3,3,5,5-tetra(imidazole-1-yl)-1,1-biphenyl; H-HEDP = 1-hydroxyethylidene-1,1-diphosphonic acid) with a three-dimensional supramolecular structure. La shows dynamic fluorescence from blue to red and switchable monotonous yellowish-green RTP, which can be manipulated by reversible photochromism. It is worth noting that Eu/Tb-doped CPs exhibit time-resolved (red to yellow) and monotonous green afterglow, respectively, which can be attributed to multiple emissions with different decay rates. The dynamic and multicolor luminescence endows these CPs with potential for application in the domains of optical communications, multi-step encryption, and anti-counterfeiting. This work not only integrates color-adjustable fluorescence, switchable RTP, and photochromism in one material, but also realizes the manipulation of the resultant optical performances photochromism, paving the pathway for the design and synthesis of smart optical materials.
具有可调荧光和室温磷光(RTP)的智能光学材料在智能开关、信息安全等领域展现出广阔的应用前景。在此,一种四咪唑衍生物通过氢键接枝到一维镧二膦酸盐上,生成了一种具有三维超分子结构的配位聚合物(CP),即(H-TIBP)·[LaLi(H-HEDP)(H-HEDP)]·3H₂O(命名为La;TIBP = 3,3,5,5-四(咪唑-1-基)-1,1-联苯;H-HEDP = 1-羟基亚乙基-1,1-二膦酸)。La表现出从蓝色到红色的动态荧光以及可切换的单一黄绿色RTP,这可以通过可逆光致变色来操控。值得注意的是,铕/铽掺杂的CPs分别表现出时间分辨的(红色到黄色)和单一的绿色余辉,这可归因于具有不同衰减率的多重发射。这种动态和多色发光赋予这些CPs在光通信、多步加密和防伪领域的应用潜力。这项工作不仅将颜色可调荧光、可切换RTP和光致变色集成于一种材料中,还通过光致变色实现了对所得光学性能的操控,为智能光学材料的设计与合成铺平了道路。