High-performance non-enzymatic glucose-sensing electrode fabricated by α-nickel hydroxide-reduced graphene oxide nanocomposite on nickel foam substrate

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作者
Min Dong
Hongli Hu
Shujiang Ding
Changcheng Wang
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[1] Xi′an Jiaotong University,School of Electrical Engineering, State Key Laboratory of Electrical Insulation and Power Equipment
[2] Xi′an Jiaotong University,Department of Applied Chemistry, School of Science, MOE Key Laboratory for Nonequilibrium Synthesis and Modulation of Condensed Matter, State Key Laboratory for Mechanical Behavior of Materials
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摘要
A non-enzymatic glucose-sensing material composed of α-nickel hydroxide nanosheets grown on reduced graphene oxide sheets (α-Ni(OH)2-rGO) is fabricated by a straightforward co-precipitation method. The morphology and composition of the α-Ni(OH)2-rGO are analyzed by field emission scanning electron microscopy, transmission electron microscopy, X-ray diffraction, Raman spectroscopy, thermogravimetric analyzer, and X-ray photoelectron spectroscopy. The characterization results show that the content of Ni(OH)2 in the α-Ni(OH)2-rGO composites is about 82.77 wt%. The introduction of rGO can effectively prevent α-Ni(OH)2 from agglomeration. The thickness of the α-Ni(OH)2 sheets grown vertically on the rGO is less than 10 nm, and they are interwoven to form a porous network structure. Then, the α-Ni(OH)2-rGO/NiF (Nickel Foam)-sensing electrode is prepared with NiF as the substrate. The sensing mechanism and detection property of the α-Ni(OH)2-rGO/NiF-sensing electrode are researched through cyclic voltammetry (CV) and amperometry. The test results demonstrate that α-Ni(OH)2-rGO/NiF-sensing electrode has excellent glucose-sensing performance. Its linear detection range is as wide as 0.5–22.5 mM, and the sensitivity is as high as 95.5 μAmM−1 cm−2, which is obviously much better than previously studied glucose-sensing materials. Moreover, it is found that the prepared sensing electrode has excellent anti-interference and stability. After repeated measurements, the anodic peak current is only 6% lower than the initial current. More importantly, the sensing electrode also showed a good detection ability for actual samples, which fully confirms that α-Ni(OH)2-rGO/NiF-sensing electrode has good practical application potential.
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页码:19327 / 19338
页数:11
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