Zhao Ruirui, Lu Wenjing, Chai Xiaojing, Dong Chuan, Shuang Shaomin, Guo Yujing
College of Chemistry and Chemical Engineering, Institute of Environmental Science, Shanxi University, Taiyuan, 030006, China.
College of Chemistry and Chemical Engineering, Institute of Environmental Science, Shanxi University, Taiyuan, 030006, China.
Anal Chim Acta. 2024 Apr 15;1298:342403. doi: 10.1016/j.aca.2024.342403. Epub 2024 Feb 24.
The construction of ratiometric fluorescent MOF sensors with integrated self-calibration and dual-channel detection can efficiently overcome the deficiencies of single-signal sensing. In this regard, the rational design of structurally functionalized MOFs is paramount for enhancing their performance in ratiometric fluorescent sensors. Lately, the concept of MOF-on-MOF design has garnered notable interest as a potential strategy for regulating the structural parameters of MOFs by integrating two or more distinct MOF types. Great efforts have been dedicated to exploring new MOF-on-MOF hybrids and developing their applications in diverse fields. Even so, these materials are still in the stage of advancement in the sensing field.
Herein, a Zr-based metal-organic framework anchored on a rare-earth metal-organic framework (UiO-66(OH)@Y-TCPP) was prepared for the ratiometric fluorescence detection toward Al (III) and pH. In this probe, the UiO-66(OH) featured hydroxyl active sites for Al (III), leading to a significant enhancement in fluorescence intensity upon the addition of Al (III), while the signal emitted by the red-emitting Y-TCPP, serving as the reference, remained constant. UiO-66(OH)@Y-TCPP exhibited excellent selectivity for Al (III) sensing with a wider linear range of 0.1-1000 μM, and a lower detection limit of 0.06 μM. This probe has also been utilized for the quantitative determination of Al (III) in hydrotalcite chewable tablets with satisfactory results. In addition, the probe realized ratiometric pH sensing in the range of 7-13 using UiO-66(OH) as an interior reference. The paper-based probe strip was developed for visual pH sensing. By installing color recognition and processing software on a smartphone, real-time and convenient pH sensing could be achieved.
This is the first ratiometric fluorescent sensor for Al (III) and pH detection based on a MOF-on-MOF composite probe, which yields two different response modes. The detection results of Al (III) in hydrotalcite chewable tables and smartphone imaging for pH test paper demonstrate the practicability of the probe. This work opens up a new outlook on constructing a multi-functional application platform with substantial potential for employment in environmental and biological analysis tasks.
构建具有集成自校准和双通道检测功能的比率荧光MOF传感器可以有效克服单信号传感的不足。在这方面,对结构功能化MOF进行合理设计对于提高其在比率荧光传感器中的性能至关重要。最近,MOF-on-MOF设计概念作为一种通过整合两种或更多不同类型的MOF来调节MOF结构参数的潜在策略引起了显著关注。人们致力于探索新型MOF-on-MOF杂化材料并开发其在不同领域的应用。即便如此,这些材料在传感领域仍处于发展阶段。
在此,制备了一种锚定在稀土金属有机框架上的锆基金属有机框架(UiO-66(OH)@Y-TCPP)用于对铝(III)和pH进行比率荧光检测。在该探针中,UiO-66(OH)具有用于铝(III)的羟基活性位点,加入铝(III)后荧光强度显著增强,而作为参比的红色发射Y-TCPP发出的信号保持不变。UiO-66(OH)@Y-TCPP对铝(III)传感表现出优异的选择性,线性范围更宽,为0.1 - 1000 μM,检测限更低,为0.06 μM。该探针还用于水滑石咀嚼片中铝(III)的定量测定,结果令人满意。此外,该探针以UiO-66(OH)作为内部参比,实现了7 - 13范围内的比率pH传感。开发了用于可视化pH传感的纸质探针条。通过在智能手机上安装颜色识别和处理软件,可以实现实时便捷的pH传感。
这是首个基于MOF-on-MOF复合探针的用于铝(III)和pH检测的比率荧光传感器,产生两种不同的响应模式。水滑石咀嚼片中铝(III)的检测结果以及pH试纸的智能手机成像证明了该探针的实用性。这项工作为构建多功能应用平台开辟了新前景,在环境和生物分析任务中有很大的应用潜力。