Sun Jiatai, Zhang Ding, Zhang Renkun, Zhang Jingxiang, Zhao Qiuying, He Haiyan, Huang Huajie, Yang Lu, Xu Yuanping
College of Mechanics and Materials, Hohai University, Nanjing 210098, China.
College of Mechanical and Electrical Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China.
ACS Appl Mater Interfaces. 2024 May 15;16(19):25422-25431. doi: 10.1021/acsami.4c05097. Epub 2024 May 2.
Flexible piezoresistive pressure sensors are garnering substantial attention, in line with advancements in biointegrated and wearable electronics. However, a significant portion of piezoresistive pressure sensors suffer from the trade-off between sensitivity and pressure range. Moreover, the current piezoresistive sensors generally rely on a rigid metallic electrode, severely deteriorating their long-term durability. Herein, a fully flexible piezoresistive sensor coupling polyurethane (PU) based electrode and active sensing element is proposed to circumvent the aforementioned problems. By rationally regulating the double-permeable conductive networks within the PU matrix, an elastomeric electrode and sensing element are implemented, respectively. The assembled heterostructured configurations enable impressive sensitivity up to 7.023 kPa, broad pressure detection (up to 420 kPa), an ultralow pressure sensing limit (0.1 Pa), and extraordinary operation stability over 80000 cyclic pressings along with fast response/relaxation times (60 ms/80 ms). Additionally, the fully flexible sensor is capable of both real-time detection of physiological signals and mimicking keyboards, implying its viability as a high-performance pressure sensor.
随着生物集成和可穿戴电子设备的发展,柔性压阻式压力传感器正受到广泛关注。然而,很大一部分压阻式压力传感器在灵敏度和压力范围之间存在权衡。此外,目前的压阻式传感器通常依赖刚性金属电极,这严重降低了它们的长期耐用性。在此,提出了一种基于聚氨酯(PU)电极和有源传感元件的全柔性压阻式传感器,以解决上述问题。通过合理调节PU基质内的双渗透导电网络,分别实现了弹性电极和传感元件。组装好的异质结构配置具有高达7.023 kPa的灵敏度、宽压力检测范围(高达420 kPa)、超低压力传感极限(0.1 Pa),以及在80000次循环按压下的出色操作稳定性,同时具有快速响应/松弛时间(60 ms/80 ms)。此外,这种全柔性传感器能够实时检测生理信号并模拟键盘,这意味着它作为高性能压力传感器的可行性。