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首页> 外文期刊>Journal of Science: Advanced Materials and Devices >Prototype edge-grown nanowire sensor array for the real-time monitoring and classification of multiple gases
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Prototype edge-grown nanowire sensor array for the real-time monitoring and classification of multiple gases

机译:原型边缘生长的纳米线传感器阵列,用于多个气体的实时监测和分类

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The monitoring and classification of different gases using a single resistive semiconductor sensor are challenging because of the similar response characteristics. An array of separated sensors can be used as an electronic nose, but such arrays have a bulky structure and complex fabrication processes. Herein, we easily fabricated a gas-sensor array based on edge-grown SnO2nanowires for the real-time monitoring and classification of multiple gases. The array comprised four sensors and was designed on a glass substrate. SnO2nanowires were grown on-chip from the edge of electrodes, made contact together, and acted as sensing elements. This method was advantageous over the post-synthesis technique because the SnO2nanowires were directly grown from the edge of the electrodes rather than on the surface. Accordingly, damage to the electrode was avoided by alloying Sn with Pt at a high growth temperature. The sensing characteristics of the sensor array were further examined for different gases, including methanol, isopropanol, ethanol, ammonia, hydrogen sulphide and hydrogen. Radar plots were used to improve the selective detection of different gases and enable effective classification.
机译:由于相似的响应特性,使用单个电阻半导体传感器的不同气体的监测和分类是具有挑战性的。分离传感器阵列可以用作电子鼻子,但是这种阵列具有庞大的结构和复杂的制造工艺。这里,我们容易地基于边缘生长的SnO2Nanifers制造气体传感器阵列,用于实时监测和多种气体的分类。该阵列包括四个传感器,并设计在玻璃基板上。 SnO2NanoWires从电极边缘成长,使接触在一起,并用作传感元件。该方法在合成后技术的优点是有利的,因为SnO2NaNOWIRE直接从电极的边缘而不是表面上生长。因此,通过在高生长温度下用Pt合金的Sn来避免对电极的损坏。进一步检查传感器阵列的感测特性,用于不同的气体,包括甲醇,异丙醇,乙醇,氨,硫化氢和氢。雷达图用于改善不同气体的选择性检测并实现有效分类。

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