软件可移植性
金属有机骨架
纳米技术
适体
Mercury(编程语言)
材料科学
计算机科学
化学
遗传学
生物
吸附
有机化学
程序设计语言
作者
Wei Ma,Q Zhang,Dongshan Xiang,Kang Mao,Jiaqi Xue,Zhuo Chen,Zhe Chen,Wei Du,Kun Zhai,Hua Zhang
标识
DOI:10.1002/chem.202403760
摘要
Abstract Monitoring mercury (Hg) is critical for environmental and public health. Metal‐organic framework (MOF)‐based sensors demonstrate the advantage of high sensitivity and rapid response. We summarize the advances of MOF sensors for Hg2+ detection from the perspective of MOF type and role in the sensors. First, we introduce three MOFs used in Hg sensors‐UIO, ZIF, and MIL‐that have demonstrated superior performance. Then, we discuss the specifics of MOF‐based sensors for Hg2+ detection in terms of the recognition and signal elements. Currently, the recognition elements include T‐rich aptamers, noble metal nanoparticles, central metal ions, and organic functional groups inherent to MOFs. Sensors with fluorescence and colorimetric signals are the two main types of optical MOF sensors used for Hg detection. Electrochemical sensors have also been fabricated, but these are less frequently reported, potentially due to the limited conductivity and cycling stability of MOFs. Notably, dual‐signal sensors mitigate background signals interference and enhance the accuracy of Hg2+ detection. Furthermore, to facilitate portability and user‐friendliness, portable devices such as microfluidics, paper‐based devices, and smartphones have been developed for Hg2+ detection, showcasing potential applications. We also address the challenges related to MOF‐based sensors for Hg2+ and future outlook.
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