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Three-dimensional ZnO hybrid nanostructures for oxygen sensing application

机译:氧传感应用的三维ZnO杂化纳米结构

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摘要

Three-dimensional (3D) ZnO hybrid nanostructures, composed of a bottom ZnO film, ZnO nanowire arrays, and a top ZnO film, are continuously fabricated by adjusting the supersaturation conditions, using metal-organic chemical vapour deposition, to utilize the vertically aligned ZnO nanowires as an active element in oxygen sensing applications. The oxygen sensing characteristics of the different 3D hybrid nanostructures, fabricated to have different average values of radius and length of the ZnO nanowire arrays, are studied comparatively without complicated nanowire manipulation processes. The decrease of the current flow through the ZnO nanowire arrays with increasing ambient oxygen concentration indicates that the 3D hybrid nanostructures can be applied in oxygen sensors. In addition, the 3D hybrid nanostructure having thinner radius of the nanowire arrays exhibits higher oxygen sensitivity.
机译:通过调整过饱和条件,利用金属有机化学气相沉积,利用垂直排列的ZnO,连续制造由底部ZnO膜,ZnO纳米线阵列和顶部ZnO膜组成的三维(3D)ZnO杂化纳米结构。纳米线作为氧传感应用中的活性元素。在没有复杂的纳米线操纵过程的情况下,比较研究了3D杂化纳米结构的氧传感特性,这些结构被制造为具有不同的ZnO纳米线阵列的半径和长度平均值。随着环境氧气浓度的增加,流经ZnO纳米线阵列的电流减少,表明3D杂化纳米结构可应用于氧气传感器。另外,具有更细的纳米线阵列半径的3D杂化纳米结构表现出更高的氧敏感性。

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