FeNPs@Co 3 O 4 hollow nanocages hybrids as effective peroxidase mimics for glucose biosensing

纳米笼 催化作用 介孔材料 化学工程 生物传感器 材料科学 纳米复合材料 X射线光电子能谱 纳米颗粒 基质(水族馆) 化学 核化学 纳米技术 有机化学 工程类 地质学 海洋学
作者
Jia Zhao,Wen‐Fei Dong,Xiaodan Zhang,Hongxiang Chai,Yuming Huang
出处
期刊:Sensors and Actuators B-chemical [Elsevier BV]
卷期号:263: 575-584 被引量:106
标识
DOI:10.1016/j.snb.2018.02.151
摘要

Constructing hollow mesoporous nanostructures for dispersing catalytically active sites has attracted growing interest. Here, for the first time, Co3O4 hollow nanocages (Co3O4 HNCs) derived from ZIF-67 were prepared for loading iron nanoparticles (FeNPs), resulting in [email protected]3O4 hollow nanocages ([email protected]3O4 HNCs). [email protected]3O4 HNCs were characterized by SEM, TEM, XRD, XPS and FT-IR. The [email protected]3O4 HNCs composites could catalyze the oxidation of TMB into blue product by H2O2, showing better peroxidase-like activity than FeNPs and Co3O4 HNCs. Notably, kinetic studies indicated that [email protected]3O4 HNCs behaved an excellent affinity to H2O2 with Km value of 0.019 mM, which was 195 times lower than that of HRP. On this basis, a facile colorimetric biosensing method was established to detect glucose. The linear range was 0.5–30 μM, and the limit of detection was 0.05 μM. The proposed sensor was successfully used to determine glucose in human serum samples. The highly catalytic performance of [email protected]3O4 HNCs is attributed to its porous hollow structure, which is beneficial for dispersion of in situ formed FeNPs and for reducing the agglomeration. Further, the [email protected]3O4 HNCs catalysts with porous character provide an essential way to expose active sites as far as possible to the substrate and increase the catalytic active sites.
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