Key Laboratory of Eco-Environment-Related Polymer Materials, Ministry of Education of China, Key Laboratory of Polymer Materials of Gansu Province, College of Chemistry and Chemical Engineering, Northwest Normal University, Lanzhou, Gansu 730070, P. R. China.
Soft Matter. 2018 Oct 31;14(42):8529-8536. doi: 10.1039/c8sm01838c.
Here, a novel pseudorotaxanes-type crosslinker of a supramolecular polymer network (WP5-PN) has been constructed from a host water-soluble pillar[5]arene (WP5) and a guest naphthalene dimethylamine derivative (PN) via a stepwise process involving multiple non-covalent interactions. The obtained supramolecular polymers were able to transform into a supramolecular polymer gel (WP5-PN-G) and show AIE properties in DMSO-H2O binary solution. Interestingly, due to the dynamic and reversible nature of non-covalent interactions, the resultant supramolecular polymer gels exhibited external stimuli-responsiveness to different parameters, such as temperature, acid-base, competitive guest and mechanical stress. Moreover, WP5-PN-G showed fluorescent response for Fe3+ and Cu2+, while its xerogel showed excellent recyclable separation properties for these metal ions with adsorption rates up to 98.07% and 95.38%, respectively. Moreover, by rational introduction of these metal ions into the WP5-PN-G, corresponding metal ion coordinated metallogels, such as WP5-PN-FeG and WP5-PN-CuG were obtained. These metallogels could selectively and sensitively sense F- and CN-, respectively. The detection limits of these metallogels for F- and CN- were about 1 × 10-8 M. The WP5-PN-G has potential applications in multi-analytes detection and separation as well as fluorescent display materials.
在这里,通过涉及多种非共价相互作用的逐步过程,构建了一种超分子聚合物网络(WP5-PN)的新型伪轮烷型交联剂,由主体水溶性杯[5]芳烃(WP5)和客体萘二甲胺衍生物(PN)组成。所得超分子聚合物能够转化为超分子聚合物凝胶(WP5-PN-G),并在 DMSO-H2O 二元溶液中表现出聚集诱导发光(AIE)性质。有趣的是,由于非共价相互作用的动态和可逆性质,所得超分子聚合物凝胶对外界刺激的不同参数(如温度、酸碱、竞争客体和机械应力)表现出响应性。此外,WP5-PN-G 对 Fe3+和 Cu2+表现出荧光响应,而其干凝胶对这些金属离子表现出出色的可重复使用的分离性能,吸附率分别高达 98.07%和 95.38%。此外,通过合理地将这些金属离子引入 WP5-PN-G 中,得到了相应的金属离子配位金属凝胶,如 WP5-PN-FeG 和 WP5-PN-CuG。这些金属凝胶可以分别选择性和灵敏地感应 F-和 CN-。这些金属凝胶对 F-和 CN-的检测限分别约为 1×10-8 M。WP5-PN-G 在多分析物检测和分离以及荧光显示材料方面具有潜在应用。