Liu Yangchengyi, Sheng Zhong, Huang Jielong, Liu Weiyi, Ding Hongyan, Peng Jinfeng, Zhong Bowen, Sun Yuhui, Ouyang Xiaoping, Cheng Huanyu, Wang Xiufeng
School of Materials Science and Engineering, Xiangtan University, Xiangtan, Hunan 411105, China.
School of Mechanical Engineering, Xiangtan University, Xiangtan, Hunan 411105, China.
Chem Eng J. 2022 Mar 15;432. doi: 10.1016/j.cej.2021.134370. Epub 2022 Jan 6.
Wearable mechanical sensors are easily influenced by moisture resulting in inaccuracy for monitoring human health and body motions. Though the superhydrophobic barrier has been extensively explored as passive water repel strategy on the sensor surface, the dense superhydrophobic surface not only limits the sensor working under large deformations but also inevitable degradation in high humidity or saturation water vapor environments. This work reports a superhydrophobic MXene-sodium alginate sponge (SMSS) pressure sensor with a low voltage Joule heating effect to provide sustain moisture-insensitive property for both sensing performance and superhydrophobicity by heating-driven water molecules away. Because of the positive temperature coefficient under pressure applied, the Joule heating can provides a stable temperature to the moisture-insensitivity property during the whole dynamic pressure cycled. Therefore, the pressure sensor with a simple spray-coating superhydrophobic coating on the outer layer demonstrates key capabilities even in extreme use scenarios with high humidity or water vapor and also provides stable and reliable bio-signal monitoring.
可穿戴式机械传感器很容易受到湿气的影响,从而导致在监测人体健康和身体运动时出现不准确的情况。尽管超疏水屏障作为传感器表面的被动防水策略已得到广泛研究,但致密的超疏水表面不仅限制了传感器在大变形情况下的工作,而且在高湿度或饱和水蒸气环境中不可避免地会退化。这项工作报道了一种具有低电压焦耳热效应的超疏水MXene-海藻酸钠海绵(SMSS)压力传感器,通过加热驱离水分子,为传感性能和超疏水性提供持续的防潮性能。由于在施加压力下具有正温度系数,焦耳热可以在整个动态压力循环过程中为防潮性能提供稳定的温度。因此,在外层具有简单喷涂超疏水涂层的压力传感器即使在高湿度或水蒸气的极端使用场景中也能展现出关键性能,并且还能提供稳定可靠的生物信号监测。