Research Center for Intelligent and Wearable Technology, College of Textiles and Clothing, State Key Laboratory of Bio-Fibers and Eco-Textiles, Intelligent Wearable Engineering Research Center of Qingdao, Qingdao University, Qingdao, 266071, P. R. China.
Jiangsu College of Engineering and Technology, Nantong, Jiangsu, 226007, P. R. China.
Soft Matter. 2021 Oct 20;17(40):9014-9018. doi: 10.1039/d1sm01096d.
Flexible touch-sensing devices have attracted extensive attention in wearable electronics and human-machine interaction. The ionic touch-sensing hydrogels are ideal candidates for these scenarios, but the absorbed water evaporates easily from the hydrogel, reducing their working time and stability. Herein, we propose a touch-sensing fabric system composed of non-woven cellulose fabrics as a sheath shell layer encapsulated with a hydrogel filling layer. The resultant touch-sensing fabric has a super-thin structure (1 mm) and exhibits a low detecting threshold (50 Pa), high durability (100k times), strain/pressure insensitivity and extremely high touch positioning accuracy. In the proof of concept, a smart touch-sensing glove is equipped with our fabric, which can execute human-computer interaction as a flexible touch-sensing device.
柔性触摸感应设备在可穿戴电子设备和人机交互领域引起了广泛关注。离子型触摸感应水凝胶是这些场景的理想候选材料,但水凝胶中的吸收水容易蒸发,从而降低了它们的工作时间和稳定性。在此,我们提出了一种由非织造纤维素织物作为鞘壳层包裹水凝胶填充层组成的触摸感应织物系统。所得到的触摸感应织物具有超薄结构(1 毫米),并表现出低检测阈值(50 帕)、高耐久性(100k 次)、应变/压力不敏感性和极高的触摸定位精度。在概念验证中,配备我们的织物的智能触摸感应手套可以作为柔性触摸感应设备执行人机交互。