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首页> 外文期刊>Chemical engineering journal >An electrochemical sensing platform based on hollow mesoporous ZnO nanoglobules modified glassy carbon electrode: Selective detection of piperidine chemical
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An electrochemical sensing platform based on hollow mesoporous ZnO nanoglobules modified glassy carbon electrode: Selective detection of piperidine chemical

机译:基于空心介孔ZnO纳米球修饰玻碳电极的电化学传感平台:哌啶化学物质的选择性检测

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Hollow mesoporous ZnO nanoglobules were synthesized through carbon spheres template assisted sono-chemical process followed by annealing at 600 degrees C. The synthesized hollow mesoporous ZnO nanoglobules was applied as a working electrode or electron mediator electrode for the fabrication of reproducible, highly sensitive and reliable chemical sensors for the detection of piperidine chemical. The synthesized nanomaterials possessed the porous hollow globular morphology due to the radial arrangement of nanoparticles on the outer shell of nanoglobules. The formation of hollow mesoporous ZnO nanoglobules was confirmed by analyzing the structural, crystalline and the compositional properties. The electrochemical behavior was examined by performing the cyclic voltammetry using hollow mesoporous ZnO nanoglobules based glassy carbon electrode (GCE) towards the detection of piperidine chemical. The performance of piperidine chemical sensor based on hollow mesoporous ZnO nanoglobules GCE was analyzed by measuring the current (I)-voltage (V) characteristics of different piperidine concentrations in phosphate buffer solution. The hollow ZnO nanoglobules GCE based piperidine chemical sensor exhibited the high sensitivity of similar to 59.9 mu A mM(-1) cm(-2) and a detection limit of similar to 3.3 mu M with a correlation coefficient (R) of similar to 0.98782 and a short response time of 10 s. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过碳球模板辅助声化学工艺合成空心介孔ZnO纳米球,然后在600摄氏度下退火。合成的空心介孔ZnO纳米球用作工作电极或电子介体电极,用于制备可再现,高度灵敏和可靠的化学物质用于检测哌啶化学物质的传感器。由于纳米粒子在纳米球的外壳上的径向排列,因此合成的纳米材料具有多孔的空心球状形态。通过分析结构,晶体和组成特性,确认了中空介孔ZnO纳米球的形成。通过使用中空介孔的ZnO纳米球基玻碳电极(GCE)进行循环伏安法对哌啶化学物进行检测来检查电化学行为。通过测量磷酸盐缓冲溶液中不同哌啶浓度的电流(I)-电压(V)特性,分析了基于空心介孔ZnO纳米球GCE的哌啶化学传感器的性能。空心ZnO纳米球GCE基哌啶化学传感器表现出的高灵敏度类似于59.9μA mM(-1)cm(-2),检测极限类似于3.3μM,相关系数(R)类似于0.98782响应时间短至10 s。 (C)2015 Elsevier B.V.保留所有权利。

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