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Towards batch fabrication of bundled carbon nanotube thermal sensors

机译:即将批量生产捆绑式碳纳米管热传感器

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A new approach for batch fabrication of carbon nanotubes (CNT) based MEMS thermal sensor was developed using AC electrophoretic manipulation of MWNT bundles on a silicon substrate. Based on this technique, CNT were successfully and repeatably manipulated by AC electrophoresis to form resistive elements between Au microelectrodes. We have preliminarily proved the feasibility to batch assembly of CNT devices with greater than 70% success rate. Besides, the devices were demonstrated to potentially serve as novel thermal sensors. We have measured the temperature coefficient of resistance (TCR) of these MWNT-based micro sensors and also integrated them into constant current configuration for dynamic characterization. The I-V measurements of the resulting devices revealed that their power consumption were in the /spl mu/W range. Based on these experimental evidences and our proposed new approach, a feasible batch manufacturable scheme for functional CNT based thermal sensors is suggested which will dramatically reduce production costs of nano sensing devices and potentially enable fully automated assembly of CNT-based devices.
机译:利用硅基板上MWNT束的AC电泳操作,开发了一种基于碳纳米管(CNT)的MEMS热传感器批量生产的新方法。基于此技术,通过AC电泳成功且可重复地操纵CNT,从而在Au微电极之间形成电阻元件。我们已经初步证明了批量组装CNT装置的可行性,成功率超过70%。此外,该设备还被证明可以用作新型热传感器。我们已经测量了这些基于MWNT的微型传感器的电阻温度系数(TCR),并将它们集成到恒定电流配置中以进行动态表征。所得器件的I-V测量表明,其功耗在/ spl mu / W范围内。基于这些实验证据和我们提出的新方法,提出了一种可行的可批量生产的功能性基于CNT的热传感器方案,该方案将大大降低纳米传感设备的生产成本,并有可能实现基于CNT的设备的全自动组装。

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