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3D printed graphene/polydimethylsiloxane composite for stretchable strain sensor with tunable sensitivity

机译:3D印刷石墨烯/聚二甲基硅氧烷复合材料,可伸展应变传感器,可调感灵敏度

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摘要

Materials with tunable and high strain sensitivities have a great potential to be used in next generation flexible electronic devices. Conventional methods, which focus on tailoring the material composition to obtain controllable sensitivities, face the issues of complicated fabrication process and instability, restricting their use in real applications. In this work, we propose the idea of tuning the sensitivities through precisely controlled micro-structures. Based on 3D printing technique, we successfully fabricate graphene/polydimethylsiloxane composites with long range ordered porous structures. The resultant composites present tunable and high gauge factors, along with excellent durability. The tunable sensitivity comes from different strain distributions on the composites under stretching, arising from the different micro-structures constructed. Taking full advantage of the composites in terms of sensitivity and durability, we demonstrate the application of the 3D printed porous sensors as wearable human motion detectors.
机译:具有可调谐和高应变敏感性的材料具有很大的潜力可用于下一代柔性电子设备。常规方法,这些方法着重剪裁材料组合物,以获得可控制的灵敏度,面复杂的制造过程和不稳定的问题,限制在实际应用中的使用。在这项工作中,我们提出了通过精确控制的微结构调整敏感性的想法。基于3D印刷技术,我们成功地制造了具有长范围有序多孔结构的石墨烯/聚二甲基硅氧烷复合材料。所得复合材料目前可调和高压因子,以及优异的耐用性。可调谐灵敏度来自拉伸下的复合材料上的不同应变分布,由构造的不同微结构引起。在灵敏度和耐用性方面充分利用复合材料,我们证明了3D印刷多孔传感器作为可穿戴人类运动检测器的应用。

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