Beijing Key Laboratory of Micro-nano Energy and Sensor, Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences, Beijing 101400, China.
School of Microelectronics, Tianjin University, Tianjin 300072, China.
ACS Appl Mater Interfaces. 2022 May 4;14(17):20122-20131. doi: 10.1021/acsami.2c03812. Epub 2022 Apr 22.
A tactile sensor is the centerpiece in human-machine interfaces, enabling robotics or prosthetics to manipulate objects dexterously. Specifically, it is crucial to endow the sensor with the ability to detect and distinguish normal and shear forces in real time, so that slip detection and more complex control could be achieved during the interaction with objects. Here, a self-powered multidirectional force sensor (SMFS) based on triboelectric nanogenerators with a three-dimensional structure is proposed for sensing and analysis of normal and shear forces in real time. Four polydimethylsiloxane (PDMS) cylinders act as the force sensing structure of the SMFS. A flexible tip array made of carbon black/MXene/PDMS composites is used to generate triboelectric signals when the SMFS is driven by an external force. The SMFS can sense multidimensional force due to the adaptability of the PDMS cylinders and detect tiny force due to the sensitivity of the flexible tips. A small shear force as low as 50 mN could be recognized using the SMFS. The direction of the externally applied force could be recognized by analyzing the location and output voltage amplitude of the SMFS. Moreover, the tactile sensing applications, including reagent weighing and force direction perception, are also achieved by using the SMFS, which demonstrates the potential in promoting developments of self-powered wearable sensors, human-machine interactions, electronic skin, and soft robotic applications.
触觉传感器是人机接口的核心,使机器人或假肢能够灵巧地操作物体。具体来说,为了使传感器能够实时检测和区分正常力和剪切力,从而在与物体交互时实现防滑检测和更复杂的控制,这一点至关重要。在这里,提出了一种基于具有三维结构的摩擦电纳米发电机的自供电多维力传感器 (SMFS),用于实时感知和分析正常力和剪切力。四个聚二甲基硅氧烷 (PDMS) 圆柱体用作 SMFS 的力传感结构。当 SMFS 受到外力驱动时,由炭黑/MXene/PDMS 复合材料制成的柔性尖端阵列用于产生摩擦电信号。由于 PDMS 圆柱体的适应性,SMFS 可以感知多维力,并且由于柔性尖端的灵敏度,SMFS 可以检测微小的力。使用 SMFS 可以识别低至 50 mN 的小剪切力。通过分析 SMFS 的位置和输出电压幅度,可以识别外部施加力的方向。此外,还通过使用 SMFS 实现了触觉传感应用,包括试剂称重和力方向感知,这表明其在促进自供电可穿戴传感器、人机交互、电子皮肤和软机器人应用的发展方面具有潜力。