A nanocomposite prepared from hemin and reduced graphene oxide foam for voltammetric sensing of hydrogen peroxide

被引:0
作者
Qinglian Li
Yao Zhang
Pengwei Li
Huaiguo Xue
Nengqin Jia
机构
[1] Shanghai Normal University,The Education Ministry Key Laboratory of Resource Chemistry, Shanghai Key Laboratory of Rare Earth Functional Materials, College of Chemistry and Materials Science
[2] Yangzhou University,College of Chemistry & Chemical Engineering
来源
Microchimica Acta | 2020年 / 187卷
关键词
One-pot hydrothermal method; Nanocomposite; H; O; Electrochemical sensor; π-Interactions;
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摘要
A foam consisting of reduced graphene oxide was synthesized by a one-pot hydrothermal method. The foam was used to prepare a nanocomposite with hemin which is formed via π-interactions. The nanocomposite was incorporated via a Nafion film and then placed on a glassy carbon electrode (GCE). The modified GCE displays outstanding catalytic activity towards H2O2. It is assumed that this is due to (a) the redox-active center [Fe(III/II)] of hemin, and (b) the crosslinked macroporous structure of the foam. Both improve the electron transfer rate and electrochemical signals. Under the optimum experimental conditions and a working voltage of typically −0.41 mV (vs. SCE), the sensor has a 2.8 nM H2O2 detection limit, and the analytically useful range extends from 5 nM to 5 mM with a sensitivity of 50.5 μA μM−1 cm−2. The modified GCE has high sensitivity and fast response. It was utilized to quantify H2O2 in spiked environmental water samples.
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