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Crystal Crosslinked Gels with Aggregation-Induced Emissive Crosslinker Exhibiting Swelling Degree-Dependent Photoluminescence

机译:具有聚集诱导的发射交联剂的晶体交联凝胶其具有溶胀度依赖性的光致发光

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摘要

The synthesis and photoluminescence properties of crystal crosslinked gels (CCGs) with an aggregation-induced emission (AIE) active crosslinker derived from tetraphenylethene (TPE) is discussed in this article. The CCG was prepared from a metal organic framework (MOF) with large pore aperture to allow the penetration of TPE crosslinker. The obtained CCG possessed a rectangular shape originated from the parent MOF, KUMOF. The CCG showed stimuli-responsive photoluminescence behavior depending on the swelling degree, thus the photoluminescence intensity was higher at higher swelling degree. By changing the solvent, water content, or ionic strength, the photoluminescence intensity was controllable, accompanying the change of swelling degree. Moreover, emission color tuning was also achieved by the introduction of luminescent rare earth ions to form a coordination bonding with residual carboxylate inside the CCG.
机译:本文讨论了具有源自四苯乙烯(TPE)的聚集诱导发射(AIE)活性交联剂的晶体交联凝胶(CCG)的合成和光致发光特性。 CCG由具有大孔径的金属有机骨架(MOF)制备,以允许TPE交联剂渗透。所获得的CCG具有源自父MOF KUMOF的矩形形状。 CCG显示出与溶胀度有关的刺激响应性光致发光行为,因此在较高溶胀度下光致发光强度更高。通过改变溶剂,水含量或离子强度,伴随着溶胀度的变化,可控制光致发光强度。此外,还通过引入发光稀土离子与CCG内部残留的羧酸盐形成配位键来实现发射颜色的调节。

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