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用于催化剂中毒介导的CO比色检测的三金属AgPt-FeO纳米酶的合理设计。

Rational design of trimetallic AgPt-FeO nanozyme for catalyst poisoning-mediated CO colorimetric detection.

作者信息

Duan Wei, Wang Jinling, Peng Xiaomeng, Cao Shoufu, Shang Jingjing, Qiu Zhiwei, Lu Xiaoqing, Zeng Jingbin

机构信息

College of Chemistry and Chemical Engineering, China University of Petroleum (East China), Qingdao, 266580, PR China; Institute of Analytical Chemistry, Department of Chemistry, Zhejiang University, Hangzhou, 310058, PR China.

College of Chemistry and Chemical Engineering, China University of Petroleum (East China), Qingdao, 266580, PR China.

出版信息

Biosens Bioelectron. 2023 Mar 1;223:115022. doi: 10.1016/j.bios.2022.115022. Epub 2022 Dec 17.

Abstract

Carbon monoxide (CO) is not only a highly poisonous gas that brings great health risk, but also a significant signaling molecule in body. However, it is still challengeable for development of alternative colorimetric probes to traditional organic chromophores for simple, sensitive and convenient CO sensing. Here, for the first time, we rationally design a novel hydrophilic AgPt-FeO nanozyme with a unique heterodimeric nanostructure for colorimetric sensing of CO based on the excellent peroxidase-like catalytic activity as well as highly poisonous effect of CO on the nanozyme's catalytic activity. Both experimental evidence and theoretical calculations reveal the trimetallic AgPt-FeO nanozyme is susceptible to poisoning with the strongest affinity towards CO compared to individual FeO or Ag-FeO, which is attributed to the adequate exposure of the active metallic sites and efficient interfacial synergy of unique heterodimeric nanostructure. Accordingly, a novel nanozyme-based colorimetric strategy is developed for CO detection with a low detection limit of 5.6 ppb in solution. Furthermore, the probe can be prepared as very convenient test strips and integrated with the portable smartphone platforms for detecting CO gas samples with a low detection limit of 8.9 ppm. Overall, our work proposes guidelines for the rational design of metallic heterogeneous nanostructure to expand the analytical application of nanozyme.

摘要

一氧化碳(CO)不仅是一种剧毒气体,会带来巨大的健康风险,还是体内一种重要的信号分子。然而,开发替代传统有机发色团的比色探针以实现简单、灵敏且便捷的CO传感仍然具有挑战性。在此,我们首次合理设计了一种具有独特异二聚体纳米结构的新型亲水性AgPt-FeO纳米酶,用于基于其优异的类过氧化物酶催化活性以及CO对纳米酶催化活性的高毒性效应来进行CO的比色传感。实验证据和理论计算均表明,与单独的FeO或Ag-FeO相比,三金属AgPt-FeO纳米酶对CO中毒最为敏感,且具有最强的亲和力,这归因于活性金属位点的充分暴露以及独特异二聚体纳米结构的高效界面协同作用。据此,开发了一种基于纳米酶的新型比色策略用于CO检测,在溶液中的检测限低至5.6 ppb。此外,该探针可制备成非常便捷的测试条,并与便携式智能手机平台集成,用于检测CO气体样品,检测限低至8.9 ppm。总体而言,我们的工作为合理设计金属异质纳米结构以拓展纳米酶的分析应用提供了指导方针。

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