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Controllable growth of ZnO nanowires grown on discrete islands of Au catalyst for realization of planar-type micro gas sensors

机译:在离散的Au催化剂岛上生长的ZnO纳米线的可控生长,以实现平面型微型气体传感器

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摘要

The proper engineering design of gas sensors and the controlled synthesis of sensing materials for the high-performance detection of toxic gas are very important in the fabrication of handheld devices. In this study, an effective design for gas sensor chips is developed to control the formation of grown ZnO nanowires (NWs).The design utilizes the dendrite islands of Au catalyst deposited on and between Pt electrodes of a planar-type micro gas sensor so that NWs can grow on instead of a continuous Au seed layer. This method results in an increase of NW-NW junctions on the device and also eliminates current leakage through the seed layer, which results in a higher sensitivity. The results show that the developed gas-sensing devices could be used to monitor NO2 at moderate temperature (~250 °C) and/or ethanol at a high temperature (~400 °C).
机译:在手持设备的制造中,气体传感器的正确工程设计以及对有毒气体进行高性能检测的传感材料的受控合成在制造过程中非常重要。在这项研究中,开发了一种有效的气体传感器芯片设计,以控制生长的ZnO纳米线(NWs)的形成。该设计利用了沉积在平面型微型气体传感器的Pt电极上和之间的Au催化剂的树枝状岛,从而NW可以生长,而不是连续的Au种子层。这种方法导致器件上NW-NW结的增加,并且消除了通过种子层的电流泄漏,从而提高了灵敏度。结果表明,开发的气体传感装置可用于监测中温(〜250°C)的NO2和/或高温(〜400°C)的乙醇。

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