印刷电子产品
墨水池
数码产品
材料科学
柔性电子器件
3D打印
纳米技术
无线
可穿戴技术
超级电容器
导电油墨
计算机科学
可穿戴计算机
电气工程
图层(电子)
电信
嵌入式系统
工程类
复合材料
电极
物理化学
化学
薄板电阻
电化学
作者
Yuzhou Shao,Lusong Wei,Xinyue Wu,Chengmei Jiang,Yao Yao,Bo Peng,Han Chen,Jiangtao Huangfu,Yibin Ying,Chuanfang Zhang,Jianfeng Ping
标识
DOI:10.1038/s41467-022-30648-2
摘要
Abstract Wireless technologies-supported printed flexible electronics are crucial for the Internet of Things (IoTs), human-machine interaction, wearable and biomedical applications. However, the challenges to existing printing approaches remain, such as low printing precision, difficulty in conformal printing, complex ink formulations and processes. Here we present a room-temperature direct printing strategy for flexible wireless electronics, where distinct high-performance functional modules (e.g., antennas, micro-supercapacitors, and sensors) can be fabricated with high resolution and further integrated on various flat/curved substrates. The additive-free titanium carbide (Ti 3 C 2 T x ) MXene aqueous inks are regulated with large single-layer ratio (>90%) and narrow flake size distribution, offering metallic conductivity (~6, 900 S cm −1 ) in the ultrafine-printed tracks (3 μm line gap and 0.43% spatial uniformity) without annealing. In particular, we build an all-MXene-printed integrated system capable of wireless communication, energy harvesting, and smart sensing. This work opens a door for high-precision additive manufacturing of printed wireless electronics at room temperature.
科研通智能强力驱动
Strongly Powered by AbleSci AI