School of Chemical Science and Engineering , Tongji University , Siping Road 1239 , Shanghai 200092 , China.
Inorg Chem. 2019 Jan 7;58(1):524-534. doi: 10.1021/acs.inorgchem.8b02738. Epub 2018 Dec 14.
A novel three-dimensional microporous framework, [Tb(pddb)phen(ox)] (Tb-MOF), was synthesized hydrothermally with V-shaped 4,4'-(pyridine-2,6-diyl)dibenzoic acid (Hpddb), oxalate (ox), and 1,10-phenanthroline (phen). The framework of Tb-MOF features one-dimensional channels functionalized with pyridine-N Lewis base groups and the absence of coordinated and lattice water molecules in the structure. The Tb-MOF exhibits high thermostability (up to 385 °C) and chemical stability in a wide pH range (4-11) and common organic solvents as well as boiling water. The luminescence investigations of the Tb-MOF in common solvents, water with different pH values, and inorganic ions were performed. Results show that the Tb-MOF has high luminescence stability and the ability to probe Fe ions. Significantly, the Tb-MOF with particularly high water stability can be first developed as a highly selective and sensitive luminescent sensor for the biomarker 2-thiazolidinethione-4-carboxylic acid (TTCA) via fluorescence quenching. The low detection limit (1 ppm), reusability, and high antidisturbance together make the Tb-MOF become a promising sensor for the practical detection of TTCA in urine systems, and for the first time realize the detection of urinary TTCA through fluorescence spectrometry based on an Ln-MOF sensor.
一种新型的三维微孔骨架,[Tb(pddb)phen(ox)](Tb-MOF),通过水热法合成,使用 V 形 4,4'-(吡啶-2,6-二基)二苯甲酸(Hpddb)、草酸盐(ox)和 1,10-菲啰啉(phen)。Tb-MOF 的骨架具有一维通道,通道功能化有吡啶-N 路易斯碱基团,并且在结构中不存在配位和晶格水分子。Tb-MOF 表现出高热稳定性(高达 385°C)和在宽 pH 范围(4-11)和常见有机溶剂以及沸水条件下的化学稳定性。对 Tb-MOF 在常见溶剂、不同 pH 值的水中以及无机离子中的发光性能进行了研究。结果表明,Tb-MOF 具有高发光稳定性和探测 Fe 离子的能力。重要的是,具有特别高的水稳定性的 Tb-MOF 可以首先被开发为一种高选择性和高灵敏度的荧光传感器,用于生物标志物 2-噻唑烷硫酮-4-羧酸(TTCA),通过荧光猝灭。低检测限(1 ppm)、可重复使用性和高抗干扰性共同使 Tb-MOF 成为尿液系统中 TTCA 实际检测的有前途的传感器,并首次实现了基于 Ln-MOF 传感器的尿液 TTCA 的荧光光谱检测。