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Piezoresistive effects in controllable defective HFTCVD graphene-based flexible pressure sensor

机译:可控的基于HFTCVD石墨烯的柔性压力传感器中的压阻效应

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摘要

In this work, the piezoresistive effects of defective graphene used on a flexible pressure sensor are demonstrated. The graphene used was deposited at substrate temperatures of 750, 850 and 1000 °C using the hot-filament thermal chemical vapor deposition method in which the resultant graphene had different defect densities. Incorporation of the graphene as the sensing materials in sensor device showed that a linear variation in the resistance change with the applied gas pressure was obtained in the range of 0 to 50 kPa. The deposition temperature of the graphene deposited on copper foil using this technique was shown to be capable of tuning the sensitivity of the flexible graphene-based pressure sensor. We found that the sensor performance is strongly dominated by the defect density in the graphene, where graphene with the highest defect density deposited at 750 °C exhibited an almost four-fold sensitivity as compared to that deposited at 1000 °C. This effect is believed to have been contributed by the scattering of charge carriers in the graphene networks through various forms such as from the defects in the graphene lattice itself, tunneling between graphene islands, and tunneling between defect-like structures.
机译:在这项工作中,展示了在柔性压力传感器上使用的有缺陷的石墨烯的压阻效应。使用热丝热化学气相沉积法在750、850和1000 C的衬底温度下沉积所用的石墨烯,其中所得石墨烯具有不同的缺陷密度。将石墨烯作为传感材料掺入传感器装置中表明,在0至50 kPa的范围内,电阻随施加的气压变化呈线性变化。使用该技术沉积在铜箔上的石墨烯的沉积温度显示出能够调节基于柔性石墨烯的压力传感器的灵敏度。我们发现,传感器性能在很大程度上受到石墨烯中缺陷密度的支配,其中与在1000 C时沉积的石墨烯相比,在750 C时沉积的缺陷密度最高的石墨烯表现出几乎四倍的灵敏度。据信,这种效应是由于石墨烯网络中的载流子通过各种形式的散射而产生的,例如来自石墨烯晶格本身的缺陷,石墨烯岛之间的隧穿以及缺陷状结构之间的隧穿。

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