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Polymeric foams for flexible and highly sensitive low-pressure capacitive sensors

机译:用于柔性且高敏感的低压电容传感器的聚合物泡沫

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Flexible low-pressure sensors (<10kPa) are required in areas as diverse as blood-pressure monitoring, humancomputer interactions, robotics, and object detection. For applications, it is essential that these sensors combine flexibility, high sensitivity, robustness, and low production costs. Previous works involve surface micro-patterning, electronic amplification (OFET), and hydrogels. However, these solutions are limited as they involve complex processes, large bias voltages, large energy consumption, or are sensitive to evaporation. Here, we report a major advance to solve the challenge of scalable, efficient and robust e-skin. We present an unconventional capacitive sensor based on composite foam materials filled with conductive carbon black particles. Owing to the elastic buckling of the foam pores, the sensitivity exceeds 35kPa1 for pressure <0.2kPa. These performances are one order of magnitude higher than the ones previously reported. These materials are low-cost, easy to prepare, and display high capacitance values, which are easy to measure using low-cost electronics. These materials pave the road for the implementation of e-skin in commercialized applications.
机译:在各种血压监测,湿度机相互作用,机器人和物体检测等区域需要灵活的低压传感器(<10kPa)。对于应用,这些传感器必须结合灵活性,高灵敏度,鲁棒性和低生产成本。以前的作品涉及表面微图案化,电子放大(OFET)和水凝胶。然而,这些解决方案受到限制,因为它们涉及复杂的过程,大偏置电压,大能耗,或对蒸发敏感。在这里,我们报告了一个重大进展,以解决可扩展,高效且强大的电子皮肤的挑战。我们介绍了一种基于填充有导电炭黑颗粒的复合泡沫材料的非常规电容传感器。由于泡沫毛孔弹性屈曲,灵敏度超过35kpa1,用于压力<0.2kpa。这些性能比先前报告的表现高一阶数。这些材料是低成本,易于准备,并显示高电容值,易于使用低成本电子设备测量。这些材料铺设了在商业化应用中实施E-Skin的道路。

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