Du Dexi, Yang Xing, Yang Yonglan, Zhao Yuzhen, Wang Yuehui
School of Materials and Energy, University of Electronic Science and Technology of China, Chengdu 610054, China.
Department of Materials and Food, University of Electronic Science and Technology of China Zhongshan Institute, Zhongshan 528402, China.
Micromachines (Basel). 2019 Jan 9;10(1):42. doi: 10.3390/mi10010042.
Low cost electronics implemented in textiles could pave the way to a fully new generation of smart products in the fields of healthcare, sport, fashion, and safety. Although many methods have found their way into the market, many problems still need to be solved and much progress has to be made to enable the commercial exploitation of such products. In this paper, silver nanowires of 60⁻100 nm in diameter and 8⁻15 μm in length were achieved by the polyol solvothermal method, and aqueous silver nanowire conductive inks were prepared with the synthesized silver nanowires as the conductive phase, in the presence of polyaniline, guar, and hydrochloric acid. The conductive inks were printed on cotton fabric substrate by screen printing process. The effects of the amount of silver nanowires, layers of coating, and treatment temperature on the microstructure and electrical properties of samples were investigated by scanning electron microscopy and the four-point probe method. The results show that the conductivity and densification of the samples increased with increased amount of silver nanowires, layers of coating, and treatment temperature. The heat treatment helped to improve densification of the silver nanowires and conductivity of the sample. The resistance of the samples increased after bending due to loosening of the overlap between the silver nanowires.
应用于纺织品的低成本电子产品可为医疗、运动、时尚和安全领域带来全新一代的智能产品。尽管许多方法已进入市场,但仍有许多问题需要解决,要实现此类产品的商业开发还需取得很大进展。本文采用多元醇溶剂热法制备了直径为60⁻100 nm、长度为8⁻15 μm的银纳米线,并以合成的银纳米线为导电相,在聚苯胺、瓜尔胶和盐酸存在的情况下制备了水性银纳米线导电油墨。通过丝网印刷工艺将导电油墨印刷在棉织物基材上。采用扫描电子显微镜和四点探针法研究了银纳米线用量、涂层层数和处理温度对样品微观结构和电学性能的影响。结果表明,样品的电导率和致密化程度随着银纳米线用量、涂层层数和处理温度的增加而提高。热处理有助于提高银纳米线的致密化程度和样品的电导率。弯曲后,由于银纳米线之间的重叠松动,样品的电阻增加。