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首页> 外文期刊>Sensors and Actuators, A. Physical >Theoretical and experimental investigations of ethanol vapour sensitive properties of junctions composed from produced by sol-gel technology pure and Fe modified nanostructured ZnO thin films
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Theoretical and experimental investigations of ethanol vapour sensitive properties of junctions composed from produced by sol-gel technology pure and Fe modified nanostructured ZnO thin films

机译:溶胶-凝胶技术和纯铁改性的纳米ZnO薄膜组成的结对乙醇蒸气敏感性的理论和实验研究

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Nanosized thin films of pure and Fe modified ZnO are used to construct the composed by two plane- parallel nanostructured thin film electrodes sensing junctions. The lower and upper layers overlap is kept ~80mm~2 for all of the investigated samples. The samples are produced with different thickness of the Fe doped top sensing layer by changing the numbers of dip-coatings. The investigations of the tem- perature dependence of the potential difference of produced junctions and their changes under exposure to ethanol vapour with certain concentration are made by means of a newly constructed experimental setup. These investigations are performed in the temperature range of 180-350℃ in environment of pure air and at fixed temperature sample is exposed to certain concentration of ethanol vapour. The best sensing performance is obtained for the structure with upper layer produced by two dip-coatings in the sol containing 3 at.% of Fe into it. For explanation of observed nonlinearity of sensor response towards ethanol vapour concentration as well as change in polarity of the potential difference with modifying the morphology of Fe doped working layer of the gas sensing junction, the theoretical model of operation of produced sensing junctions is developed. This model provides the possibility of prediction of gas-sensing properties of ZnO/ZnO:Fe junction structures depending on concentration of electrons into the compos- ing junction layers. It is worthy to mention that the model is applicable for prediction of suitability of this kind for sensing structures to detect many gasses, which is very important for the researchers, working in the field of gas-detection.
机译:纯的和Fe修饰的ZnO的纳米尺寸薄膜用于构建由两个平面平行的纳米结构薄膜电极感应结组成的薄膜。所有调查样品的下层和上层重叠均保持在〜80mm〜2。通过改变浸涂的数量,可以生产出具有不同厚度的掺杂Fe的顶部传感层的样品。通过新建的实验装置对所产生的结的电位差及其在暴露于一定浓度的乙醇蒸汽下的变化的温度依赖性进行了研究。这些研究是在纯空气环境中,在180-350℃的温度范围内进行的,并且在固定温度下,将样品暴露于一定浓度的乙醇蒸气中。对于具有通过在其中包含3 at。%Fe的溶胶中进行两次浸涂产生的上层结构,可以获得最佳的感测性能。为了解释观察到的传感器对乙醇蒸气浓度的响应的非线性,以及通过修改气体传感结的铁掺杂工作层的形态来改变电位差的极性,建立了所产生的传感结的工作理论模型。该模型提供了根据电子在组成结层中的浓度来预测ZnO / ZnO:Fe结结构的气敏特性的可能性。值得一提的是,该模型可用于预测此类结构对传感结构以检测多种气体的适用性,这对于从事气体检测领域的研究人员而言非常重要。

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