Huang Jiani, Li Yanru, Xu Zijie, Li Weifeng, Xu Binbin, Meng Haiqiang, Liu Xiangyang, Guo Wenxi
College of Materials, Research Institute for Biomimetics and Soft Matter, Fujian Provincial Key Laboratory for Soft Functional Materials Research, Xiamen University, Xiamen 361005, People's Republic of China.
Nanotechnology. 2019 Aug 9;30(32):325203. doi: 10.1088/1361-6528/ab15e8. Epub 2019 Apr 4.
Integrated fabrics with a smart heating control system (HCS) are attractive in warming and thermotherapy for human healthcare management. Metal nanofibers (NFs) networks with high flexibility, conductivity and gas permeability are ideal functional materials for wearable electronics. Herein, a novel sandwich-structural (Ag NFs/fabrics/Pt NFs) textile for a HCS is constructed, where a Ag NF network film was functioned as a wearable heater and Pt NF network arrays were functioned as wearable temperature sensors. Conductivity and mechanical stability of the metal NFs were enhanced by crosslinking the free-standing fiber networks, resulting in high thermo-stability, thermal resistance (163.5 °C W cm) and temperature sensitivity (0.135% °C) of the HCS. The HCS can simultaneously realize heating and temperature distribution detection, demonstrating only 0.57% average error between the simulated resistance-to-temperature diagram of Pt NF arrays and actual temperature mapping. In addition, the HCS can be stuck on the skin for thermochromic fabrics, real-time heating and temperature detection/control through a Bluetooth device in a smartphone wirelessly.
集成有智能加热控制系统(HCS)的织物在用于人类医疗保健管理的保暖和热疗方面具有吸引力。具有高柔韧性、导电性和透气性的金属纳米纤维(NFs)网络是可穿戴电子产品的理想功能材料。在此,构建了一种用于HCS的新型三明治结构(Ag NFs/织物/Pt NFs)纺织品,其中Ag NF网络膜用作可穿戴加热器,Pt NF网络阵列用作可穿戴温度传感器。通过交联独立的纤维网络提高了金属NFs的导电性和机械稳定性,从而使HCS具有高的热稳定性、热阻(163.5°C W cm)和温度灵敏度(0.135%/°C)。该HCS能够同时实现加热和温度分布检测,在Pt NF阵列的模拟电阻-温度图与实际温度映射之间显示出仅0.57%的平均误差。此外,该HCS可以粘贴在皮肤上用于热致变色织物,通过智能手机中的蓝牙设备进行无线实时加热和温度检测/控制。