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Nano Pt-decorated transparent solution-processed oxide semiconductor sensor with?ppm detection capability

机译:纳米铂修饰的透明溶液处理氧化物半导体传感器,具有?ppm的检测能力

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In this study, we fabricated a transparent Pt-decorated indium gallium zinc oxide (IGZO) thin film based on a solution process to demonstrate a portable, low-cost volatile organic compound (VOC) based real-time monitoring system with the detection capability at as low as 1 ppm. The Pt/IGZO sensor shows remarkable response characteristics upon exposure of isobutylene (2-methylpropene) gas down to 1 ppm while also maintaining the reliability and reproducibility of the sensing capability, which is almost comparable to a commercial VOC sensor based on a photoionization detector (PID) method. For 1 ppm of isobutylene gas, the response and recovery time of the sensor estimated were as low as 25 s ( S _(90) ) and 80 s ( R _(90) ), respectively. The catalytic activity of Pt nanoparticles on an IGZO nano-thin film plays a key role in drastically enhancing the sensitivity and dynamic response behaviour of the VOC sensor. Furthermore, the solution-processed IGZO thin film decorated with Pt nanoparticles also represents a highly transparent (in visible region, ~90%) and low-cost fabrication platform, thereby, facilitating the optical visibility and disposability for future applications in the field of electronics. Therefore, we believe that the nano-Pt/IGZO hybrid material for VOC sensor developed by us will pave a way to detect any harmful chemical gases and VOCs in various environments.
机译:在这项研究中,我们基于溶液工艺制造了透明的装饰有Pt的铟镓锌锌(IGZO)薄膜,以演示一种便携式,低成本挥发性有机化合物(VOC)实时监测系统,其检测能力为低至1 ppm。 Pt / IGZO传感器在异丁烯(2-甲基丙烯)气体暴露低至1 ppm时显示出显着的响应特性,同时还保持了传感能力的可靠性和可重复性,这几乎可以与基于光电离检测器的商用VOC传感器相媲美( PID)方法。对于1 ppm的异丁烯气体,估计的传感器响应和恢复时间分别低至25 s(S _(90))和80 s(R _(90))。 IGZO纳米薄膜上的Pt纳米颗粒的催化活性在大大增强VOC传感器的灵敏度和动态响应性能方面起着关键作用。此外,以Pt纳米粒子修饰的固溶IGZO薄膜也代表了高度透明(在可见区域内,约90%)和低成本的制造平台,从而促进了光学可见性和可处置性,可用于电子领域的未来应用。因此,我们相信我们开发的用于VOC传感器的纳米Pt / IGZO混合材料将为检测各种环境中的任何有害化学气体和VOC铺平道路。

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