石墨烯
抗坏血酸
生物传感器
纳米复合材料
氧化物
材料科学
安培法
选择性
催化作用
纳米技术
检出限
基质(水族馆)
无机化学
化学工程
电化学
化学
有机化学
物理化学
电极
工程类
冶金
海洋学
食品科学
色谱法
地质学
作者
Bangguo Peng,Jiewu Cui,Yan Wang,Yucheng Wu,Hongmei Zheng,Li Jin,Xinyi Zhang,Yong Zhang,Yucheng Wu
出处
期刊:Nanoscale
[The Royal Society of Chemistry]
日期:2017-12-15
卷期号:10 (4): 1939-1945
被引量:96
摘要
Developing suitable substrate materials is of significance in constructing electrochemical biosensors for fast and reliable quantification of molecules of chemical and biomedical interest. For practical applications, biosensors working at low negative potentials have the advantage of high selectivity and sensitivity. In this work, CeO2-x/C/rGO nanocomposites have been synthesized through the pyrolysis of metal organic frameworks with graphene oxide. The CeO2-x/C/rGO nanocomposites exhibit excellent catalytic properties towards H2O2, which is one of the uricase catalyzed intermediates at low working potentials due to the coexistence of Ce3+ and reduced graphene oxide (rGO). A novel biosensor based on the CeO2-x/C/rGO nanocomposites has been developed and utilized for the detection of uric acid, an important molecule in the biological and medical fields. The biosensor based on the CeO2-x/C/rGO nanocomposites presents a high sensitivity of 284.5 μA cm-2 mM-1 at -0.4 V (vs. SCE), a wide linear range between 49.8 and 1050.0 μM and a low detection limit of 2.0 μM. Moreover, it is found that the amperometric responses are free from interference of ascorbic acid and urea, which shows a great potential for practical applications.
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