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Ultrasonic processing of SbSI nanowires for their application to gas sensors

机译:SbSI纳米线的超声波处理及其在气体传感器中的应用

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Ultrasonic processing has been applied to create durable electrical contacts between antimony sulfoiodide (SbSI) nanowires and Au microelectrodes on glass substrate. After DC electric field alignment of SbSI nanowires between the microelectrodes, the sample was irradiated with ultrasound using chromium copper alloy sonotrode ended with silicon carbide (SiC) single crystal. The SEM and AFM investigations have showed that the ends of SbSI nanowires have been well compacted and bonded with microelectrodes. Ultrasonic processing has caused 420% increase of DC electric conductance of the junctions between Au microelectrodes and SbSI nanowires. The fabricated structures of SbSI nanowires bonded to Au microelectrodes are useful e.g. as nitrous oxide (N2O) gas sensors. These low power devices can operate at room temperature and do not require heating system for recovery. (C) 2016 Elsevier B.V. All rights reserved.
机译:超声波处理已应用于在玻璃基底上的锑化硫(SbSI)纳米线和Au微电极之间建立持久的电接触。在微电极之间的SbSI纳米线的直流电场对准后,使用铬铜合金超声焊极(以碳化硅(SiC)单晶结束)对样品进行超声辐照。 SEM和AFM研究表明,SbSI纳米线的末端已很好地压实并与微电极结合。超声波处理已使金微电极和SbSI纳米线之间的结的直流电导率增加了420%。结合到Au微电极上的SbSI纳米线的制造结构是有用的,例如。作为一氧化二氮(N2O)气体传感器。这些低功率设备可以在室温下运行,不需要加热系统即可恢复。 (C)2016 Elsevier B.V.保留所有权利。

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