A nickel nanoparticle/nafion-graphene oxide modified screen-printed electrode for amperometric determination of chemical oxygen demand

被引:0
|
作者
Baojian Zhang
Liming Huang
Meihua Tang
Kenneth W. Hunter
Yan Feng
Qianwen Sun
Jikui Wang
Guosong Chen
机构
[1] Nanjing Tech University,College of Chemistry and Molecular Engineering
[2] University of Nevada,Department of Microbiology and Immunology, School of Medicine
[3] Nanjing Tech University,School of Biotechnology and Pharmaceutical Engineering
来源
Microchimica Acta | 2018年 / 185卷
关键词
COD; Graphene; Nickel nanoparticles; Screen-printing; Flow detection; 3D-printing; Thin-layer flow cell;
D O I
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中图分类号
学科分类号
摘要
A nickel nanoparticle/nafion-graphene oxide (NiNP/Nf-GO) modified screen-printed electrode (SPE) was developed for rapid and environmentally friendly electrochemical determination of chemical oxygen demand (COD). The morphology and the electrochemical performance of the SPEs with different surface modifications were investigated by scanning electron microscopy, electrochemical impedance spectroscopy, amperometry, and cyclic voltammetry, respectively. Interestingly, incorporation of graphene oxide as supporting materials to the NiNP/Nf-GO modified SPE enables high catalyst loading and electrode contact, leading to excellent electrocatalytic oxidation ability. A flow detection system was constructed based the newly designed NiNP/Nf-GO modified SPE with USB connection, a 3D-printed thin-layer flow cell (TLFC), and a peristaltic pump. The flow detection system showed an excellent performance for COD analysis with a linear detection range of 0.1~400 mg L−1 and a lower detection limit of 0.05 mg L−1 with an oxidation potential of 0.45 V. The system was further applied to determine the COD in surface water samples. The results were consistent with those obtained by using the standard method (ISO 6060).
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