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Transfer Printing Technology for Fabricating Chemical Sensors Based on Tin Dioxide Nanowires

机译:基于二氧化锡纳米线的化学传感器转移印刷技术

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Multi-nanowire based chemical gas sensors were produced employing a fast and simple transfer printing technology. SnO2 nanowires (NWs) were grown by a specific two-step technology including spray pyrolysis deposition and a thermal annealing process in presence of a Cu-catalyst. Subsequently the SnO2 NWs were print transferred by a polydimethylsiloxane (PDMS) stamp on Si-substrates with gold inter-digital electrode structures (IDES) creating a multi-NW chemical sensing device. The print-transfer technology enables a fast, easy and cheap fabrication of NW-based sensor devices with a good reproducibility. High sensitivity to H2S has been achieved, the performance results are presented in this work.
机译:基于多纳米线的化学气体传感器是采用快速简便的转移印刷技术生产的。 SnO2纳米线(NWs)通过特定的两步技术生长,包括喷雾热解沉积和在Cu催化剂存在下的热退火工艺。随后,通过聚二甲基硅氧烷(PDMS)印章将SnO2 NW印刷转移到具有金叉指电极结构(IDES)的Si基板上,从而创建了多NW化学传感装置。印刷传输技术可以快速,轻松且廉价地制造基于NW的传感器设备,并具有良好的可重复性。已经实现了对H2S的高灵敏度,在这项工作中给出了性能结果。

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