Wang Dakai, Ma Guoliang, Zhang Xiangxiang, Zheng Kejin, Zhang Junfeng, Ma Zhichao, Han Zhiwu, Ren Luquan
Key Laboratory of Bionic Engineering (Ministry of Education), Jilin University, Changchun 130022, China.
State Key Laboratory of Crane Technology, Yanshan University, Qinhuangdao 066000, China.
ACS Sens. 2025 Jan 24;10(1):350-359. doi: 10.1021/acssensors.4c02583. Epub 2025 Jan 2.
Flexible pressure sensors have shown significant application prospects in fields such as artificial intelligence and precision manufacturing. However, most flexible pressure sensors are often prepared using polymer materials and precise micronano processing techniques, which greatly limits the widespread application of sensors. Here, this work chooses textile material as the construction material for the sensor, and its latitude and longitude structure endows the sensor with a natural structure. The flexible pressure sensor was designed using a multilayer stacking strategy by combining multilayer textile materials with two-dimensional MXene materials. The experiment shows that its sensitivity is 52.08 kPa at 30 and 7.29 kPa within 30-120 kPa. As a demonstration, these sensors are applied to wireless human motion monitoring, as well as related applications involving auxiliary communication and robotic arm integration. Furthermore, relevant demonstrations of sensor array applications are presented. This work provides inspiration for the design and application of flexible pressure sensors.
柔性压力传感器在人工智能和精密制造等领域展现出了显著的应用前景。然而,大多数柔性压力传感器通常采用聚合物材料和精密的微纳加工技术制备,这极大地限制了传感器的广泛应用。在此,本工作选择纺织材料作为传感器的构建材料,其经纬结构赋予传感器一种天然的结构。通过将多层纺织材料与二维MXene材料相结合,采用多层堆叠策略设计了柔性压力传感器。实验表明,在30 - 120 kPa范围内,其灵敏度在30时为52.08 kPa,在30 - 120 kPa内为7.29 kPa。作为演示,这些传感器应用于无线人体运动监测以及涉及辅助通信和机器人手臂集成的相关应用。此外,还展示了传感器阵列应用的相关演示。这项工作为柔性压力传感器的设计和应用提供了灵感。