材料科学
导电体
可伸缩电子设备
微图形化
导电油墨
纳米技术
墨水池
制作
纳米颗粒
弹性体
聚二甲基硅氧烷
银纳米粒子
纳米线
导电聚合物
电导率
复合材料
数码产品
聚合物
薄板电阻
物理化学
病理
化学
替代医学
图层(电子)
医学
作者
Yu Kang,Guoqi Wang,Sanchuan Zhao,Jiaye Li,Lu Di,Feng Yang,Jun Yin,Jian Zhu
出处
期刊:Small
[Wiley]
日期:2020-11-23
卷期号:16 (50): e2004793-e2004793
被引量:21
标识
DOI:10.1002/smll.202004793
摘要
Abstract Stretchable conductors capable of precise micropatterning are imperative for applications in various wearable technologies. Metallic nanoparticles with low aspect ratios and miniscule sizes are preferred over metallic nanowires or nanoflakes for such applications. However, nanoparticles tend to lose mutual contact during stretching. Therefore, they are rarely used alone in stretchable conductors. In this study, electronic inks comprising silver nanoparticles (AgNPs) for the high‐resolution printing of stretchable conductors are reported. AgNPs are synthesized using aqueous polyurethane micelles, which are subsequently disentangled into polymeric chains in isopropanol to stabilize the inks. The ink rheology can be arbitrarily tuned to allow direct‐write printing with a minimum feature width of 3 µm. Owing to the absence of extra surfactants, direct drying of such inks at room temperature provides the stretchable conductors with an initial conductivity of 8846 S cm −1 and conductivity of 1305 S cm −1 at 100% strain. This enhanced performance is attributed to the conductive percolations through assemblies of AgNPs adapting to the strain and is equivalent to those of stretchable conductors filled with Ag nanowires or flakes. These inks are promising for the scalable fabrication of highly integrated stretchable electronics.
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