A comprehensive review of the application of Zr-based metal-organic frameworks for electrochemical sensors and biosensors.

IF 5.3 2区 化学 Q1 CHEMISTRY, ANALYTICAL Microchimica Acta Pub Date : 2024-07-05 DOI:10.1007/s00604-024-06515-w
Hossein Khosropour, Mansoureh Keramat, Federico Tasca, Wanida Laiwattanapaisal
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Abstract

A family of inorganic-organic hybrid crystalline materials made up of organic ligands and metal cations or clusters is known as metal-organic frameworks (MOFs). Because of their unique stability, intriguing characteristics, and structural diversity, zirconium-based MOFs (Zr-MOFs) are regarded as one of the most interesting families of MOF materials for real-world applications. Zr-MOFs that have the ligands, metal nodes, and guest molecules enclosed show distinct electrochemical reactions. They can successfully and sensitively identify a wide range of substances, which is important for both environmental preservation and human health. The rational design and synthesis of Zr-MOF electrochemical sensors and biosensors, as well as their applications in the detection of drugs, biomarkers, pesticides, food additives, hydrogen peroxide, and other materials, are the main topics of this comprehensive review. We also touch on the current issues and potential future paths for Zr-MOF electrochemical sensor research.

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关于 Zr 基金属有机框架在电化学传感器和生物传感器中的应用的全面综述。
金属有机框架(MOFs)是由有机配体和金属阳离子或团簇组成的无机-有机杂化晶体材料家族。锆基 MOFs(Zr-MOFs)因其独特的稳定性、引人入胜的特性和结构多样性,被认为是现实世界应用中最有趣的 MOF 材料家族之一。配体、金属节点和客体分子封闭的 Zr-MOFs 显示出独特的电化学反应。它们可以成功、灵敏地识别多种物质,这对环境保护和人类健康都非常重要。Zr-MOF 电化学传感器和生物传感器的合理设计与合成,以及它们在药物、生物标记物、农药、食品添加剂、过氧化氢和其他材料检测中的应用,是本综述的主要主题。我们还探讨了 Zr-MOF 电化学传感器研究的当前问题和潜在的未来发展方向。
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来源期刊
Microchimica Acta
Microchimica Acta 化学-分析化学
CiteScore
9.80
自引率
5.30%
发文量
410
审稿时长
2.7 months
期刊介绍: As a peer-reviewed journal for analytical sciences and technologies on the micro- and nanoscale, Microchimica Acta has established itself as a premier forum for truly novel approaches in chemical and biochemical analysis. Coverage includes methods and devices that provide expedient solutions to the most contemporary demands in this area. Examples are point-of-care technologies, wearable (bio)sensors, in-vivo-monitoring, micro/nanomotors and materials based on synthetic biology as well as biomedical imaging and targeting.
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