Liu Yanhua, Wang Jinlong, Liu Tao, Wei Zhiting, Luo Bin, Chi Mingchao, Zhang Song, Cai Chenchen, Gao Cong, Zhao Tong, Wang Shuangfei, Nie Shuangxi
Guangxi Key Laboratory of Clean Pulp & Papermaking and Pollution Control, School of Light Industry and Food Engineering, Guangxi University, Nanning, 530004, PR China.
Nat Commun. 2025 Jan 3;16(1):383. doi: 10.1038/s41467-024-55771-0.
Skin-like sensors capable of detecting multiple stimuli simultaneously have great potential in cutting-edge human-machine interaction. However, realizing multimodal tactile recognition beyond human tactile perception still faces significant challenges. Here, an extreme environments-adaptive multimodal triboelectric sensor was developed, capable of detecting pressure/temperatures beyond the range of human perception. Based on triboelectric nanogenerator technology, an asymmetric structure capable of independently outputting dual signals was designed to improve perception sensitivity. By converting the signals and the stimuli into feature matrices, parallel perception of complex objects (with a recognition rate of 94%) and temperature at high temperatures was achieved. The proposed multimodal triboelectric tactile sensor represents progress in maximum detection range and rapid response, realizing the upper limit of human skin's high-temperature sensing (60 °C) with a working temperature of 200 °C. The proposed self-powered multimodal sensing system offers a wider range of possibilities for human/robot/environment interaction applications.
能够同时检测多种刺激的类皮肤传感器在前沿人机交互领域具有巨大潜力。然而,实现超越人类触觉感知的多模态触觉识别仍面临重大挑战。在此,开发了一种极端环境自适应多模态摩擦电传感器,它能够检测超出人类感知范围的压力/温度。基于摩擦纳米发电机技术,设计了一种能够独立输出双信号的不对称结构,以提高感知灵敏度。通过将信号和刺激转换为特征矩阵,实现了对复杂物体的并行感知(识别率为94%)以及高温下的温度感知。所提出的多模态摩擦电触觉传感器在最大检测范围和快速响应方面取得了进展,在200 °C的工作温度下实现了人类皮肤高温传感的上限(60 °C)。所提出的自供电多模态传感系统为人类/机器人/环境交互应用提供了更广泛的可能性。