纳米技术
金属有机骨架
材料科学
电化学
水溶液中的金属离子
合理设计
金属
导电体
多孔性
重金属
氧化还原
表面改性
生物传感器
光学传感
共价键
多孔介质
离子
作者
Rudra Kumar,Muhammad Shafique,Sergio O. Martínez‐Chapa,Marc Madou
标识
DOI:10.1016/j.microc.2025.116151
摘要
Metal-organic frameworks (MOFs) and covalent organic frameworks (COFs) are advanced porous materials with tunable porosity, high surface area, and structural versatility, making them ideal for electrochemical and optical biosensing. This review summarizes recent progress in MOF- and COF-based platforms for the detection of toxic heavy metal ions, including Pb 2+ , Cu 2+ , Hg 2+ , As 3+ , As 5+ , Cr 3+ , and Cr 6+ , which pose significant environmental and health risks. Integration of these frameworks with conductive nanomaterials, functional groups, and redox-active sites enhances electron transfer, increases active site density, and lowers detection limits. Various synthetic approaches for pristine frameworks and their composites are discussed, along with mechanistic insights into electrochemical and optical detection strategies. By consolidating state-of-the-art developments, this work provides a scientific basis for the rational design of next-generation MOF- and COF-based sensors, enabling the development of portable, cost-effective, and ultrasensitive tools for environmental monitoring and biomedical applications.
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