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Thermally oxidized zinc oxide nanowires for use as chemical sensors

机译:热氧化锌纳米线用作化学传感器

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Zinc oxide (ZnO) mat-based conductometric devices were fabricated using a thermal oxidation technique. A metallic zinc layer was deposited on the alumina transducer and then oxidized in a controlled atmosphere, in order to obtain ZnO nanostructures. Two different batches of sensors have been prepared, and their sensing performances have been evaluated towards oxidizing and reducing gases. Functional measurements showed very good sensing performances towards ethanol and acetone at 500°C, and NO_2 at 200°C, indirectly confirming the n-type behaviour of the material. The influence of the humidity on the response has been explored. In practical conditions the interference of humidity is very small, and could be neglected in many applications. Simultaneous measurements on different devices from the same batch confirm the high reproducibility of the response within the batch.
机译:使用热氧化技术制造了基于氧化锌(ZnO)垫的电导器件。为了获得ZnO纳米结构,将金属锌层沉积在氧化铝换能器上,然后在受控气氛中氧化。已经准备了两批不同的传感器,并且已经评估了它们对氧化和还原气体的传感性能。功能测量表明,在500°C下对乙醇和丙酮以及200°C下对NO_2具有非常好的感测性能,间接证实了该材料的n型行为。已经研究了湿度对响应的影响。在实际条件下,湿度的干扰非常小,在许多应用中可以忽略不计。在同一批次的不同设备上同时进行的测量确认了批次内响应的高度可重复性。

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