Department of Mechanical Engineering, Johns Hopkins University, Baltimore, MD 21218, USA.
Nanoscale. 2019 Feb 7;11(6):2779-2786. doi: 10.1039/c8nr09959f.
Highly sensitive flexible tactile sensors are of continuing interest for various applications including wearable devices, human-machine interface systems, and internet of things. Current technologies for high sensitivity piezoresistive sensors rely on costly materials and/or fabrication methods such as graphene-based and micro-structured composites limiting accessibility and scalability. Here, we report a facile sacrificial casting-etching method to synthesize nanoporous carbon nanotube/polymer composites for ultra-sensitive and low-cost piezoresistive pressure sensors. Our synthesis method overcomes the limitations of the traditional solution-dip-coating method for adhering nanoscale conductive materials to the nanoscale porous surface. Importantly, we show ultra-high sensitivity with a strain gauge factor over 300, which is ∼50 times higher than that of traditional CNT-based piezoresistive sensors and ∼10 times higher than that of most of the graphene-based ones. For practical tactile sensing applications, we demonstrate that the sensors can detect both gentle pressures (1 Pa-1 kPa) and low pressures (1 kPa-25 kPa) with a fraction of the cost. Our nanoporous polymer composite could contribute to expanding the scope of using nanocomposites for applications including subtle locomotion sensing, interactive human-machine interface systems, and internet of things from its easy tunability for sensing diverse range of tactile signals.
高度灵敏的柔性触觉传感器对于各种应用(包括可穿戴设备、人机接口系统和物联网)都具有持续的兴趣。目前,用于高灵敏度压阻传感器的技术依赖于昂贵的材料和/或制造方法,例如基于石墨烯的和微结构复合材料,限制了其可及性和可扩展性。在这里,我们报告了一种简便的牺牲铸造-蚀刻方法,用于合成用于超灵敏和低成本压阻压力传感器的纳米多孔碳纳米管/聚合物复合材料。我们的合成方法克服了传统的溶液浸渍涂层方法将纳米级导电材料附着到纳米级多孔表面的局限性。重要的是,我们展示了超过 300 的超高灵敏度,应变计因子比传统的基于 CNT 的压阻传感器高约 50 倍,比大多数基于石墨烯的传感器高约 10 倍。对于实际的触觉传感应用,我们证明传感器可以以更低的成本检测从 1 Pa 到 1 kPa 的轻柔压力和从 1 kPa 到 25 kPa 的低压力。我们的纳米多孔聚合物复合材料可以通过其对不同类型触觉信号的敏感性的轻松可调性,为包括微妙运动感应、交互式人机接口系统和物联网在内的应用扩展使用纳米复合材料的范围做出贡献。