Yin Zhi-Yuan, Hu Jing-Han, Fu Qing-Qing, Gui Kai, Yao Ying
College of Chemical and Biological Engineering, Lanzhou Jiaotong University, Lanzhou, Gansu 730070, P. R. China.
Soft Matter. 2019 May 22;15(20):4187-4191. doi: 10.1039/c9sm00624a.
By rationally introducing multi-self-assembly driving forces and coordination binding sites into the same molecule, a designed functional gelator, G, was synthesized. Next, a novel supramolecular polymer material, OGV (1% DMSO), was constructed and used for the ultrasensitive detection and separation of multianalytes in gel states. Interestingly, OGV showed a fluorescent ultrasensitive response for the Hg2+ and Fe3+ ions in water. Moreover, by introducing these metal ions into the OGV, stable metal ion-coordinated supramolecular metallogels (HgG and FeG) were formed, which could sense CN- and H2PO4- in water with high selectivity and sensitivity.
通过将多种自组装驱动力和配位结合位点合理地引入到同一分子中,合成了一种设计的功能性凝胶因子G。接下来,构建了一种新型超分子聚合物材料OGV(1%二甲基亚砜),并将其用于凝胶态下多种分析物的超灵敏检测和分离。有趣的是,OGV对水中的Hg2+和Fe3+离子表现出荧光超灵敏响应。此外,通过将这些金属离子引入OGV中,形成了稳定的金属离子配位超分子金属凝胶(HgG和FeG),它们能够以高选择性和灵敏度检测水中的CN-和H2PO4-。