College of Chemistry, Chemical Engineering and Materials Science, Collaborative Innovation Center of Functionalized Probes for Chemical Imaging in Universities of Shandong, Key Laboratory of Molecular and Nano Probes, Ministry of Education, Institutes of Biomedical Sciences, Shandong Normal University, Jinan 250014, P.R. China.
Anal Chem. 2022 Aug 9;94(31):11062-11069. doi: 10.1021/acs.analchem.2c01999. Epub 2022 Jul 26.
Ratiometric detection of pH is always significant in environmental regulation, medical diagnosis, synthetic chemistry, and beyond. The construction of practical ratiometric pH sensors with reusability is still challenging. Herein, by exploiting a multivariate strategy, we first synthesized and reported a series of novel three-component covalent organic frameworks (COF-COOH, = 33, 50, and 67) through Schiff base reaction between 2-hydroxybenzene-1,3,5-tricarbaldehyde (HTA), 4,4'-diamino-3,3'-biphenyldicarboxylic acid (DBA), and 5,5'-diamino-2,2'-bipyridine (BPY) at various molar ratios ( = [DBA]/([BPY] + [DBA]) × 100 = 33, 50, and 67). COF-COOH ( = 33, 50, and 67) displayed ratiometric pH sensing performance in acidic conditions with selectivity and repeatability. By tuning the molar ratio of DBA and BPY, the fluorescent properties, linear pH responsive ranges, and p values of COF-COOH ( = 33, 50, and 67) can be regulated. Meanwhile, the two-component COF-COOH and COF-COOH did not exhibit ratiometric pH detection ability. Moreover, the constructed three ratiometric sensors can be applied to detect pH in drug solutions and carbonated drinks with satisfactory results. This work sheds new light on the design and fabrication of innovative ratiometric fluorescent sensors using COFs.
比率型 pH 检测在环境调控、医学诊断、合成化学等领域一直具有重要意义。然而,构建具有可重复使用性的实用比率型 pH 传感器仍然具有挑战性。在此,我们通过多元策略,首次通过 2-羟基苯-1,3,5-三甲醛(HTA)、4,4'-二氨基-3,3'-联苯二甲酸(DBA)和 5,5'-二氨基-2,2'-联吡啶(BPY)之间的席夫碱反应,在不同摩尔比( = [DBA]/([BPY]+[DBA])×100 = 33、50 和 67)下合成并报道了一系列新型三组分共价有机框架(COF-COOH)。COF-COOH( = 33、50 和 67)在酸性条件下表现出比率型 pH 传感性能,具有选择性和重复性。通过调节 DBA 和 BPY 的摩尔比,可以调节 COF-COOH( = 33、50 和 67)的荧光性质、线性 pH 响应范围和 p 值。同时,二组分 COF-COOH 和 COF-COOH 不具有比率型 pH 检测能力。此外,构建的三个比率型传感器可用于检测药物溶液和碳酸饮料中的 pH 值,结果令人满意。这项工作为使用 COFs 设计和制造创新的比率型荧光传感器提供了新的思路。