Wu Manman, Tan Zeqing, Zhao Jian, Zhang Hao, Xu Yushu, Long Teng, Zhao Shigui, Cheng Xiao, Zhou Chuanjian
Research Institute of Polymer Materials, School of Materials Science and Engineering, Shandong University, Jinan, 250061, China.
State Key Laboratory of Catalysis, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian, 116023, China.
Talanta. 2024 May 15;272:125767. doi: 10.1016/j.talanta.2024.125767. Epub 2024 Feb 8.
Herein, polysiloxane-based aggregation-induced emission (AIE) polymers and rubbers were prepared which display interesting multi-stimuli responsive fluorescence. TPE-modified polydimethylsiloxanes (PDMS-TPE) as polysiloxane-based AIE polymers were synthesized through Heck reaction of bromo-substituted tetraphenylethene (TPE-Br) and vinyl polysiloxanes. As expected, TPE moiety endows the modified polysiloxane with typical AIE behavior. However, limited by the long polymer chains, the aggregation process of PDMS-TPE shows obvious differences compared with the small molecule TPE-Br. The fluorescence of PDMS-TPE in THF/HO starts to increase when the HO fraction (f) is 70% while TPE-Br is nearly non-luminous until the f is up to 99%. The fluorescence intensity ratio (I/I) of PDMS-TPE in the aggregated state and dispersed state is over 1300, greater than that of TPE-Br (I/I = 380). More importantly, the exceptional thermal motion of Si-O-Si chains and AIE characteristic of TPE moiety work together, enabling PDMS-TPE to show specific temperature-dependent fluorescence with a wider response range of room temperature to 190°C, which is distinguished from TPE-Br. And such fluorescence responsiveness possess good fatigue-resistance. Furthermore, fluorescent silicone rubbers, r-PDMS-TPE were prepared by using PDMS-TPE as additive of the base gum. They display interesting solvent-controllable fluorescence and higher tensile strength (4.42 MPa) than the control sample without TPE component (1.96 MPa). Notably, a unique stretching-enhanced emission (SEE) phenomenon is observed from these TPE-modified silicone rubbers. When being stretched, the rubbers' fluorescent emission intensity could increase by 143%.
在此,制备了基于聚硅氧烷的聚集诱导发光(AIE)聚合物和橡胶,它们表现出有趣的多刺激响应荧光。通过溴代四苯乙烯(TPE-Br)与乙烯基聚硅氧烷的Heck反应合成了作为基于聚硅氧烷的AIE聚合物的TPE改性聚二甲基硅氧烷(PDMS-TPE)。正如预期的那样,TPE部分赋予改性聚硅氧烷典型的AIE行为。然而,受限于长聚合物链,PDMS-TPE的聚集过程与小分子TPE-Br相比表现出明显差异。当水的比例(f)为70%时,PDMS-TPE在四氢呋喃/水体系中的荧光开始增强,而TPE-Br直到f高达99%时几乎不发光。PDMS-TPE在聚集态和分散态的荧光强度比(I/I0)超过1300,大于TPE-Br的(I/I0 = 380)。更重要的是,Si-O-Si链的特殊热运动和TPE部分的AIE特性共同作用,使PDMS-TPE在室温至190°C的更宽响应范围内表现出特定的温度依赖性荧光,这与TPE-Br不同。并且这种荧光响应具有良好的抗疲劳性。此外,通过使用PDMS-TPE作为基础胶的添加剂制备了荧光硅橡胶r-PDMS-TPE。它们表现出有趣的溶剂可控荧光,并且拉伸强度(4.42MPa)高于不含TPE组分的对照样品(1.96MPa)。值得注意的是,在这些TPE改性硅橡胶中观察到独特的拉伸增强发射(SEE)现象。拉伸时,橡胶的荧光发射强度可增加143%。