Two-Dimensional Nanozyme Based on Iron Metal–Organic Gel/Carboxylated Graphene Oxide for Electrochemical and Colorimetric Dual-Mode Detection of Hydrogen Peroxide

石墨烯 过氧化氢 电化学 氧化物 金属 双模 对偶(语法数字) 无机化学 材料科学 化学 纳米技术 电极 有机化学 冶金 艺术 文学类 物理化学 航空航天工程 工程类
作者
Jing Hu,Qin Ren,Dongqing Fan,Wenbo Wu,Xiaoying Zhang,Dongxin Wang,Junxiu Zhao,Ping Zhang,Xiangjun Li,Liangpo Liu,Jisheng Nie,Hong Cui
出处
期刊:ACS applied nano materials [American Chemical Society]
卷期号:8 (10): 4989-5000 被引量:8
标识
DOI:10.1021/acsanm.4c06510
摘要

Metal–organic gel (MOG) is a distinctive metal–organic hybrid material with a unique porous structure and exceptional catalytic site accessibility. The rational design of an electrochemical and colorimetric dual-mode sensor platform utilizing the peroxidase (POD)-like activity of MOG for the detection of H 2 O 2 is crucial for clinical diagnosis. In this article, a two-dimensional composite nanozyme based on Fe-MOG and carboxylated graphene oxide (GO-COOH) was synthesized, which serves dual functions to establish electrochemical sensing and colorimetric sensing based on its excellent electrocatalytic reduction of H 2 O 2 and POD-like activity. GO-COOH played a critical role, and the electrochemically reduced ERGO-COOH facilitated electron transfer from the metal catalytic site in Fe-MOG, enhancing the performance of electrocatalytic reduction of H 2 O 2 . Additionally, GO-COOH amplified the POD-like activity of Fe-MOG, and the Fe-MOG/GO-COOH composite participated in various ROS-mediated catalytic reactions. The developed dual-mode sensor exhibited a rapid response and high sensitivity in detecting H 2 O 2, demonstrating excellent selectivity, reproducibility, and stability. These attributes enhanced the accuracy and reliability of the detection of H 2 O 2 released from living cells. This MOG-based nanozymatic dual-mode sensing technology offers promising prospects for enhancing the reliability of rapid detection and holds significant potential for application in pathophysiological monitoring of living cells.
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