Hao Xi, Song Weihua, Wang Yinghui, Qin Jieling, Jiang Zhenqi
School of Medical Technology, School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing, 100081, China.
Xuanwu Hospital Capital Medical University, Beijing, 100037, China.
Small. 2024 Dec 15:e2408624. doi: 10.1002/smll.202408624.
Metal-organic frameworks (MOFs) are composed of metal nodes and organic linkers that can self-assemble into an infinite network. The high porosity and large surface area of MOFs facilitate the effective enrichment and mass transfer of analytes, which can enhance the signal response and improve the sensitivity of electrochemical sensors. Additionally, MOFs and their derivatives possess the properties of unsaturated metal sites and tunable structures, collectively demonstrating their potential for electrochemical sensing. This paper summarizes the preparation methods, structural properties, and applications of MOFs and their derivatives in electrochemical sensing, emphasizing sensors' selectivity and sensitivity from the perspectives of direct and indirect detection. Additionally, it also explores future directions and prospects for MOFs in electrochemical sensing, with the aim of overcoming current limitations through innovative approaches.
金属有机框架材料(MOFs)由金属节点和有机连接体组成,它们能够自组装成无限网络。MOFs的高孔隙率和大表面积有利于分析物的有效富集和传质,这可以增强信号响应并提高电化学传感器的灵敏度。此外,MOFs及其衍生物具有不饱和金属位点和可调控结构的特性,共同展示了它们在电化学传感方面的潜力。本文综述了MOFs及其衍生物在电化学传感中的制备方法、结构特性和应用,从直接检测和间接检测的角度强调了传感器的选择性和灵敏度。此外,还探讨了MOFs在电化学传感方面的未来方向和前景,旨在通过创新方法克服当前的局限性。