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首页> 外文期刊>Applied Surface Science >Investigation of the electrical and ethanol-vapour sensing properties of the junctions based on ZnO nanostructured thin film doped with copper
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Investigation of the electrical and ethanol-vapour sensing properties of the junctions based on ZnO nanostructured thin film doped with copper

机译:基于铜掺杂ZnO纳米结构薄膜的结的电和乙醇汽敏特性研究

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We present the investigation of ethanol sensing properties of the junctions composed by two plane parallel nanostructured thin film electrodes. One of them consists of pure ZnO and the other one is composed of ZnO doped with Cu. The thickness of the lower layer was kept constant for all of the investigated structures. The thickness of the upper layer was varied. The samples were produced with different thickness of the top layer by changing the numbers of dip-coatings cycles. On produced junction structures we investigate the dependence of the potential difference on the temperature in the air flow and the changes that occur under exposure to flow of air with certain concentration of ethanol vapour. For ZnO/ZnO:Cu junction with top layer produced by two dip-coatings cycles, the potential difference under the air flow were getting more positive values up to 290 degrees C and then the values were decreasing, while for ZnO/ZnO:Cu junction with top layer produced by three dip-coatings cycles, the potential difference were getting more negative values with increasing the temperature. However in both cases the potential difference increases in value, when the structures are exposed to the vapour of ethanol. On this installation by the exchange the content of gas atmosphere at fixed temperature the ethanol concentration dependence of the potential difference of produced junction structures were evaluated. Both samples have shown nonlinear dependence of signal towards the concentration of ethanol vapour. The observed results for ZnO/ZnO:Cu were compared with those of the junctions composed by layers of ZnO doped with Ga and pure ZnO nanowires. The performed fractal analysis based on the SEM images showed a correlation between the fractal dimension of the surface of the upper layer of the samples and gas-sensitive properties of the sensing structures. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们目前对两个平面平行的纳米结构薄膜电极组成的结的乙醇感测特性的研究。其中一种由纯ZnO组成,另一种由掺杂Cu的ZnO组成。对于所有研究的结构,下层的厚度保持恒定。上层的厚度是变化的。通过改变浸涂循环次数,可以生产出顶层厚度不同的样品。在产生的结结构上,我们研究了电势差对气流温度的依赖性以及暴露于具有一定浓度的乙醇蒸气的气流下发生的变化。对于由两个浸涂循环产生的顶层的ZnO / ZnO:Cu结,在290°C以下时,气流下的电势差变得更正,然后该值减小,而对于ZnO / ZnO:Cu结对于通过三个浸涂循环产生的顶层,电势差随着温度的升高而变得越来越负。但是,在两种情况下,当结构暴露于乙醇蒸汽中时,电位差的值都会增加。在该装置上,通过交换固定温度下的气体气氛,评估了乙醇浓度对所产生的结结构的电势差的依赖性。两种样品均显示出信号对乙醇蒸气浓度的非线性依赖性。将ZnO / ZnO:Cu的观察结果与由掺杂有Ga的ZnO层和纯ZnO纳米线组成的结的结果进行了比较。基于SEM图像进行的分形分析显示出样品的上层表面的分形尺寸与感测结构的气敏特性之间的相关性。 (C)2016 Elsevier B.V.保留所有权利。

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