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基于 SiO 壳封装的 AgPt-FeO 杂化纳米酶固有催化活性的高选择性比色探针检测氟离子。

Highly Specific Colorimetric Probe for Fluoride by Triggering the Intrinsic Catalytic Activity of a AgPt-FeO Hybrid Nanozyme Encapsulated in SiO Shells.

机构信息

College of Science and State Key Laboratory of Heavy Oil Processing, China University of Petroleum (East China), Qingdao 266580, P. R. China.

Institute of Analytical Chemistry, Department of Chemistry, Zhejiang University, Hangzhou 310058, P. R. China.

出版信息

Environ Sci Technol. 2022 Feb 1;56(3):1713-1723. doi: 10.1021/acs.est.1c06453. Epub 2022 Jan 11.

Abstract

Current colorimetric probes for fluoride (F) primarily rely on organic chromophores that often suffer from unsatisfactory selectivity, complex organic synthesis, and low aqueous compatibility. Herein, we proposed a highly specific colorimetric method for F with 100% aqueous compatibility by triggering the intrinsic peroxidase-like activity of a AgPt-FeO nanozyme encapsulated in SiO shells. The excellent catalytic performance of the AgPt-FeO nanozyme serves as an ideal platform for sensitive colorimetric sensing. After being encapsulated in SiO, the enzyme-like activity of AgPt-FeO is inhibited and only F can exclusively etch the SiO shell to expose the active site of the nanozyme, thereby inducing color changes via oxidation of the chromogenic substrate. The limit of detection of the proposed method can reach as low as 13.73 μM in aqueous solution, which is lower than the maximum allowable concentration (79 μM) stipulated in the World Health Organization drinking water regulation. More importantly, this method is highly specific toward F over other types of anions commonly found in environmental water, making it capable of analyzing sewage samples with very complex matrices. Finally, the nanoprobe is embedded into a test strip by electrostatic spinning to enable the rapid, visual, and on-site detection of F.

摘要

目前用于氟化物(F)的比色探针主要依赖于有机生色团,但通常存在选择性差、有机合成复杂以及水相兼容性低等问题。在此,我们提出了一种通过触发包裹在 SiO 壳中的 AgPt-FeO 纳米酶的固有过氧化物酶样活性,实现具有 100%水相兼容性的 F 的高特异性比色方法。AgPt-FeO 纳米酶的优异催化性能为灵敏比色传感提供了理想的平台。SiO 封装后,AgPt-FeO 的酶样活性被抑制,只有 F 可以专一地蚀刻 SiO 壳以暴露纳米酶的活性位点,从而通过显色底物的氧化诱导颜色变化。该方法在水溶液中的检测限低至 13.73 μM,低于世界卫生组织饮用水规定中规定的最大允许浓度(79 μM)。更重要的是,该方法对 F 具有高度的特异性,而对环境水中常见的其他类型阴离子没有特异性,使其能够分析基质非常复杂的污水样品。最后,将纳米探针嵌入到静电纺丝的测试条中,以实现 F 的快速、可视化和现场检测。

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