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A Highly Sensitive Piezoresistive Pressure Sensor Based on Graphene Oxide/Polypyrrole@Polyurethane Sponge

机译:基于氧化石墨烯/聚吡咯@聚氨酯海绵的高灵敏度压阻式压力传感器

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摘要

In this work, polyurethane sponge is employed as the structural substrate of the sensor. Graphene oxide (GO) and polypyrrole (PPy) are alternately coated on the sponge fiber skeleton by charge layer-by-layer assembly (LBL) to form a multilayer composite conductive layer to prepare the piezoresistive sensors. The 2D GO sheet is helpful for the formation of the GO layers, and separating the PPy layer. The prepared GO/PPy@PU (polyurethane) conductive sponges still had high compressibility. The unique fragmental microstructure and synergistic effect made the sensor reach a high sensitivity of 0.79 kPa . The sensor could detect as low as 75 Pa, exhibited response time less than 70 ms and reproducibility over 10,000 cycles, and could be used for different types of motion detection. This work opens up new opportunities for high-performance piezoresistive sensors and other electronic devices for GO/PPy composites.
机译:在这项工作中,聚氨酯海绵被用作传感器的结构基板。通过电荷逐层组件(LBL)将氧化石墨烯(GO)和聚吡咯(PPy)交替涂覆在海绵纤维骨架上,以形成多层复合导电层,以制备压阻传感器。 2D GO薄板有助于GO层的形成和PPy层的分离。制备的GO / PPy @ PU(聚氨酯)导电海绵仍具有较高的可压缩性。独特的碎片微结构和协同效应使传感器达到0.79 kPa的高灵敏度。该传感器可检测到低至75 Pa,响应时间小于70 ms,重现性超过10,000个循环,可用于不同类型的运动检测。这项工作为高性能压阻传感器和其他用于GO / PPy复合材料的电子设备打开了新的机会。

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