School of Chemistry and Chemical Engineering, Liaoning Normal University, Dalian 116029, P. R. China.
Dalton Trans. 2023 Apr 25;52(16):5202-5211. doi: 10.1039/d3dt00392b.
Developing high-accuracy luminescent sensors for detecting emerging environmental pollutants is of great importance and is still a challenge. Utilizing a 4-carboxyphenylphosphonic acid (Hpbc) ligand, a novel one-dimensional (1D) Zn-based coordination polymer with the formula [Zn(Hpbc)(2,2'-bipy)(HO)]·HO (Zn-CP, Hpbc = 4-HOOCCHPOH, 2,2'-bipy = 2,2'-bipyridine) has been hydrothermally synthesized. Each of the 1D chains was linked π-π stacking interactions and formed a supramolecular framework. Furthermore, due to the existence of uncoordinated -COOH groups, the terbium-functionalized hybrid (Tb3+@Zn-CP) was prepared by introducing Tb ions into the structure through coordinated postsynthetic modification (PSM). Tb3+@Zn-CP shows the characteristic emission of Tb ions due to the "antenna effect" of the Hpbc ligand. Based on the excellent luminescence properties and structural stabilities of Zn-CP and Tb3+@Zn-CP, they can be used as highly sensitive and selective luminescent probes of the UV filter BP (benzophenone) depending on multiquenching effects. In addition, their obvious color change can be easily distinguished by the naked eye under ultraviolet light, which was successfully used in the preparation of portable BP test paper. More importantly, Tb3+@Zn-CP is the first example of CPs as a ratiometric luminescent sensor for BP. This work provides a novel strategy for the construction of ratiometric luminescent probes of BP-type UVFs through coordinated postsynthetic modification.
开发用于检测新兴环境污染物的高准确度荧光传感器具有重要意义,但仍具有挑战性。利用 4-羧基苯膦酸(Hpbc)配体,通过水热合成了一种具有化学式[Zn(Hpbc)(2,2'-bipy)(HO)]·HO(Zn-CP,Hpbc=4-HOOCCHPOH,2,2'-bipy=2,2'-联吡啶)的新型一维(1D)Zn 基配位聚合物。一维链之间通过π-π堆积相互作用连接,并形成超分子框架。此外,由于存在未配位的-COOH 基团,通过配位后合成修饰(PSM)将Tb 离子引入结构中,制备了Tb 功能化的杂化材料(Tb3+@Zn-CP)。由于 Hpbc 配体的“天线效应”,Tb3+@Zn-CP 显示出 Tb 离子的特征发射。基于 Zn-CP 和 Tb3+@Zn-CP 的优异发光性能和结构稳定性,它们可以用作 BP(苯并酮)型紫外线滤光剂的高灵敏度和选择性荧光探针,这取决于多重猝灭效应。此外,它们在紫外光下的明显颜色变化可以通过肉眼轻松识别,这成功用于制备便携式 BP 试纸。更重要的是,Tb3+@Zn-CP 是 CPs 作为 BP 比率型荧光传感器的第一个例子。这项工作通过配位后合成修饰为 BP 型 UVF 的比率型荧光探针的构建提供了一种新策略。