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泡沫镍上负载钯纳米粒子的氧化锌-石墨烯复合电极及其在自供电非酶葡萄糖传感中的应用

Hybrid ZnO-graphene electrode with palladium nanoparticles on Ni foam and application to self-powered nonenzymatic glucose sensing.

作者信息

Wu Wenyi, Miao Fengjuan, Tao Bairui, Zang Yu, Zhu Lei, Shi Cuiping, Chu Paul K

机构信息

College of Communications and Electronics Engineering, Qiqihar University Heilongjiang 161006 China

College of Materials Science and Engineering, Qiqihar University Wenhua Street 42 Qiqihar China.

出版信息

RSC Adv. 2019 Apr 17;9(21):12134-12145. doi: 10.1039/c8ra09599j. eCollection 2019 Apr 12.

Abstract

A self-powered nonenzymatic glucose sensor electrode boasts the advantages of both a glucose sensor and fuel cell. Herein, an electrode composed of ZnO-graphene hybrid materials on nickel foam (NF) is prepared by electrodeposition of Pd NPs. The electrode is characterized systematically and the dependence of electrocatalytic oxidation of glucose on the concentrations of KOH and glucose, temperature, and potential limit in the anodic direction is investigated. The Pd/NF-ZnO-G electrode shows high catalytic activity, sensitivity, stability, and selectivity in glucose detection, as exemplified by an electrocatalytic glucose oxidation current of 222.2 mA cm under alkaline conditions, high linearity in the glucose concentration range from 5 μM to 6 mM ( = 0.98), and high sensitivity of 129.44 μA mM cm. The Pd/NF-ZnO-G electrode which exhibits superior electrocatalytic activity under alkaline conditions has large potential in nonenzymatic glucose sensing and direct glucose fuel cells and is suitable for miniaturized self-powered nonenzymatic glucose sensing.

摘要

自供电非酶葡萄糖传感器电极兼具葡萄糖传感器和燃料电池的优点。在此,通过电沉积钯纳米颗粒制备了一种由泡沫镍(NF)上的氧化锌-石墨烯混合材料组成的电极。对该电极进行了系统表征,并研究了葡萄糖的电催化氧化对氢氧化钾浓度、葡萄糖浓度、温度以及阳极方向电位极限的依赖性。钯/泡沫镍-氧化锌-石墨烯电极在葡萄糖检测中表现出高催化活性、灵敏度、稳定性和选择性,例如在碱性条件下电催化葡萄糖氧化电流为222.2 mA/cm²,在5 μM至6 mM的葡萄糖浓度范围内具有高线性(R² = 0.98),灵敏度高达129.44 μA/(mM·cm²)。在碱性条件下表现出优异电催化活性的钯/泡沫镍-氧化锌-石墨烯电极在非酶葡萄糖传感和直接葡萄糖燃料电池方面具有巨大潜力,适用于小型化自供电非酶葡萄糖传感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3941/9063497/0c2184564b23/c8ra09599j-f1.jpg

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