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金属有机框架纳米酶在重金属离子比色传感中的应用进展。

Advances in the application of metal-organic framework nanozymes in colorimetric sensing of heavy metal ions.

机构信息

Key Laboratory of Modern Agricultural Equipment and Technology, Ministry of Education, School of Agricultural Engineering, Jiangsu University, Zhenjiang, Jiangsu 212013, China.

出版信息

Nanoscale. 2023 Aug 10;15(31):12853-12867. doi: 10.1039/d3nr02024j.

Abstract

Nanozymes, which can be defined as nanomaterials with excellent catalytic function, are well known to the scientific community due to their distinct merits, such as low cost and high stability, which render them preferable to natural enzymes. As porous organic-inorganic coordination materials, metal-organic frameworks (MOFs) possess a large number of active sites and thus can effectively mimic the properties of natural enzymes. Recently, MOF-based nanozymes have also exhibited good application potential for the analysis of heavy metal ions. In comparison to the traditional detection methods for heavy metal ions, nanozyme-based colorimetric sensing permits intuitive visual analysis by using relatively simple instruments, facilitating rapid and simple on-site screening. In this minireview, the preparation of MOF-based nanozymes and the different nanozyme activity types are briefly described, such as peroxidase-like and oxidase-like, and the relevant catalytic mechanisms are elaborated. Based on this, different response mechanisms of MOF-based colorimetric methods to heavy metal ions, such as turn-off, turn-on, and turn-off-on, are discussed. In addition, the colorimetric sensing applications of MOF-based nanozymes for the detection of heavy metal ions are summarized. Finally, the current research status of MOF-based nanozymes and the future development direction are discussed.

摘要

纳米酶是指具有优异催化功能的纳米材料,由于其成本低、稳定性高等优点,有别于天然酶,在科学界广为人知。作为多孔有机-无机配位材料,金属-有机框架(MOFs)具有大量的活性位点,因此可以有效地模拟天然酶的性质。最近,基于 MOF 的纳米酶在重金属离子的分析中也显示出了良好的应用潜力。与传统的重金属离子检测方法相比,基于纳米酶的比色传感可以使用相对简单的仪器进行直观的视觉分析,便于快速、简单的现场筛选。在这篇小综述中,简要描述了 MOF 基纳米酶的制备及其不同的纳米酶活性类型,如过氧化物酶样和氧化酶样,并阐述了相关的催化机制。在此基础上,讨论了 MOF 基比色法对重金属离子的不同响应机制,如关闭、开启和关闭-开启。此外,还总结了基于 MOF 的纳米酶用于检测重金属离子的比色传感应用。最后,讨论了 MOF 基纳米酶的现状和未来的发展方向。

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