State Key Laboratory of Structural Chemistry, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences , Fuzhou 35002, P. R. China.
ACS Appl Mater Interfaces. 2016 Jan 27;8(3):2399-405. doi: 10.1021/acsami.5b11552. Epub 2016 Jan 13.
The use of dynamic assembly for molecular sensing is an intensive area of research in supramolecular chemistry. However, the development of self-assembly architectures for the detection of multiple signals remains challenging. Here, we present dynamic covalent assemblies with multiresponsive properties that also show unique selectivity profiles in water. The receptors were generated in a single step with modularly designed building blocks through acylhydrazone linkages, and their orthogonal assembly with a series of external stimuli was investigated. Notably, the system exhibits responses toward cations, anions, solvents, pH, and amphiphilicity. The discrimination of Cu(2+) from other divalent metal ions was achieved by simply changing the solvent and was evidenced by a Cu(2+)-induced pKa shift. The selective recognition of CN(-) in pure aqueous media was also accomplished through a cooperative effect in conjunction with Zn(2+). Furthermore, the assembly and its responsiveness are functional both in solution and the solid state. The aggregation ability of these dynamic covalent systems supports their binding and sensing properties.
动态组装在超分子化学中是分子传感的一个研究热点。然而,开发用于检测多种信号的自组装结构仍然具有挑战性。在这里,我们提出了具有多重响应特性的动态共价组装体,它们在水中也表现出独特的选择性特征。通过酰腙键将模块化设计的构建块在单个步骤中生成,研究了它们与一系列外部刺激的正交组装。值得注意的是,该系统对阳离子、阴离子、溶剂、pH 值和两亲性均有响应。通过简单改变溶剂即可实现对 Cu(2+)与其他二价金属离子的区分,并通过 Cu(2+)诱导的 pKa 位移得到证实。通过与 Zn(2+)结合的协同作用,也可以在纯水溶液中选择性识别 CN(-)。此外,组装体及其响应性在溶液和固态中均具有功能。这些动态共价体系的聚集能力支持其结合和传感性能。