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A Graphene-Based Resistive Pressure Sensor with Record-High Sensitivity in a Wide Pressure Range

机译:基于石墨烯的电阻压力传感器在宽压力范围内具有创纪录的高灵敏度

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摘要

Pressure sensors are a key component in electronic skin (e-skin) sensing systems. Most reported resistive pressure sensors have a high sensitivity at low pressures (<5 kPa) to enable ultra-sensitive detection. However, the sensitivity drops significantly at high pressures (>5 kPa), which is inadequate for practical applications. For example, actions like a gentle touch and object manipulation have pressures below 10 kPa, and 10–100 kPa, respectively. Maintaining a high sensitivity in a wide pressure range is in great demand. Here, a flexible, wide range and ultra-sensitive resistive pressure sensor with a foam-like structure based on laser-scribed graphene (LSG) is demonstrated. Benefitting from the large spacing between graphene layers and the unique v-shaped microstructure of the LSG, the sensitivity of the pressure sensor is as high as 0.96 kPa−1 in a wide pressure range (0 ~ 50 kPa). Considering both sensitivity and pressure sensing range, the pressure sensor developed in this work is the best among all reported pressure sensors to date. A model of the LSG pressure sensor is also established, which agrees well with the experimental results. This work indicates that laser scribed flexible graphene pressure sensors could be widely used for artificial e-skin, medical-sensing, bio-sensing and many other areas.
机译:压力传感器是电子皮肤(e-skin)传感系统中的关键组件。大多数报道的电阻式压力传感器在低压(<5 kPa)时具有很高的灵敏度,可以进行超灵敏的检测。但是,在高压(> 5 kPa)时,灵敏度会显着下降,这对于实际应用来说是不够的。例如,诸如柔和触摸和物体操纵之类的动作的压力分别低于10 kPa和10–100 kPa。迫切需要在宽压力范围内保持高灵敏度。在此,对基于激光划刻石墨烯(LSG)的具有泡沫状结构的柔性,大范围,超灵敏的电阻式压力传感器进行了说明。得益于石墨烯层之间的大间距和LSG独特的V形微观结构,压力传感器在宽压力范围(0〜50 kPa)下的灵敏度高达0.96 kPa -1 )。考虑到灵敏度和压力感应范围,这项工作开发的压力传感器是迄今为止所有已报道的压力传感器中最好的。建立了LSG压力传感器的模型,与实验结果吻合良好。这项工作表明,激光划刻的柔性石墨烯压力传感器可以广泛用于人造电子皮肤,医学传感,生物传感和许多其他领域。

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