Dong Shunni, Zang Qiguang, Ma Zhao-Yu, Tang Meiqi, Xu Zhi-Kang, Nie Jingjing, Du Binyang, Sun Jing Zhi, Tang Ben Zhong
MOE Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science & Engineering, Zhejiang University, Hangzhou 310027, China.
Department of Chemistry, Zhejiang University, Hangzhou 310027, China.
ACS Appl Mater Interfaces. 2022 Apr 20;14(15):17794-17805. doi: 10.1021/acsami.2c01620. Epub 2022 Apr 11.
The proposal of the aggregation-induced emission (AIE) effect shines a light on the practical application of luminescent materials. The AIE-active luminescence microgels (TPEC MGs) with photo-induced color-changing behavior were developed by integrating positively charged AIE luminogens (AIEgens) into the anionic network of microgels, where AIEgens of TPEC were obtained from the quaternization reaction between tetra-(4-pyridylphenyl)ethylene (TPE-4Py) and 7-(6-bromohexyloxy)-coumarin. The aqueous suspensions of TPEC MGs exhibit a significant AIE effect following the enhancement of quantum yield. In addition, further increase in fluorescence intensity and blueshift occur at elevated temperatures due to the collapse of microgels. The distinctive photochromic behavior of TPEC MGs was observed, which presents as the transition from orange-yellow to blue-green color under UV irradiation, which is different from TPEC in good organic solvents. The phenomenon of color changing can be ascribed to the competition between photodimerization of the coumarin part and photocyclization of TPE-4Py in TPEC. The photochromic TPEC MG aqueous suspensions can be conducted as aqueous microgel inks for information display, encryption, and dynamic anticounterfeiting.
聚集诱导发光(AIE)效应的提出为发光材料的实际应用带来了曙光。通过将带正电荷的AIE发光体(AIEgens)整合到微凝胶的阴离子网络中,制备了具有光致变色行为的AIE活性发光微凝胶(TPEC MGs),其中TPEC的AIEgens是由四(4-吡啶基苯基)乙烯(TPE-4Py)与7-(6-溴己氧基)香豆素之间的季铵化反应得到的。TPEC MGs的水悬浮液在量子产率提高后表现出显著的AIE效应。此外,由于微凝胶的塌陷,在升高的温度下荧光强度进一步增加并发生蓝移。观察到TPEC MGs独特的光致变色行为,即在紫外光照射下呈现从橙黄色到蓝绿色的转变,这与TPEC在良好有机溶剂中的情况不同。颜色变化现象可归因于TPEC中香豆素部分的光二聚化与TPE-4Py的光环化之间的竞争。光致变色的TPEC MG水悬浮液可作为水性微凝胶油墨用于信息显示、加密和动态防伪。