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Carbon nanotube-coated surface acoustic wave sensor for carbon dioxide sensing

机译:碳纳米管涂层表面声波传感器,用于二氧化碳传感

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Carbon dioxide gas sensors have been fabricated by self-assembling single-wall nanotube films on a surface acoustic wave delay line operating at 286 MHz. Polymer functionalization was used to enhance the sensitivity of the carbon nanotubes to carbon dioxide. A pulse radar-type interrogation system was used to monitor the conductivity of the nanotube film by measuring the attenuation of the surface acoustic wave due to film-conductivity changes. The conductivity of the film was found to decrease with carbon dioxide concentration. The effect of varying the sheet conductivity of the nanotube film was examined. Both analytical and experimental results show that controlling the conductivity of the CNT film within a specific range highly enhances the sensitivity to carbon dioxide. Experimental results show that the sensor tracks carbon dioxide concentration changes between 0% and 10%. The final sensor is sensitive, small and wirelessly interrogable, thus making it potentially useful for respiratory monitoring.
机译:二氧化碳气体传感器是通过在工作频率为286 MHz的声表面波延迟线上自组装单壁纳米管薄膜而制成的。使用聚合物功能化来增强碳纳米管对二氧化碳的敏感性。通过测量由于膜电导率变化引起的表面声波的衰减,使用脉冲雷达式询问系统监视纳米管膜的电导率。发现膜的电导率随二氧化碳浓度降低。研究了改变纳米管膜的薄层电导率的效果。分析和实验结果均表明,将CNT膜的电导率控制在特定范围内可大大提高对二氧化碳的敏感性。实验结果表明,该传感器跟踪二氧化碳浓度在0%至10%之间的变化。最终的传感器灵敏,体积小且可无线查询,因此可能对呼吸监测有用。

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