材料科学
电磁屏蔽
焦耳加热
MXenes公司
丝网印刷
光电子学
电磁干扰
电极
复合材料
电磁干扰
纳米技术
电气工程
工程类
物理化学
化学
作者
Han Wu,Yimei Xie,Yanan Ma,Binbin Zhang,Bin Xia,Pengxiang Zhang,Wei Qian,Daping He,Xin Zhang,Bao‐Wen Li,Ce‐Wen Nan
出处
期刊:Small
[Wiley]
日期:2022-03-10
卷期号:18 (16)
被引量:71
标识
DOI:10.1002/smll.202107087
摘要
MXenes have exhibited potential for application in flexible devices owing to their remarkable electronic, optical, and mechanical properties. Printing strategies have emerged as a facile route for additive manufacturing of MXene-based devices, which relies on the rational design of functional inks with appropriate rheological properties. Herein, aqueous MXene/xanthan gum hybrid inks with tunable viscosity, excellent printability, and long-term stability are designed. Screen-printed flexible MXene films using such hybrid inks exhibit a high conductivity up to 4.8 × 104 S m-1 , which is suitable to construct multifunctional devices mainly including electromagnetic shielding, Joule heaters, and piezoresistive sensors. The average electromagnetic interference (EMI) shielding value can reach to 40.1 dB. In the Joule heater, the heating rate of printed MXene film can reach 20 °C s-1 under a driving voltage of 4 V, with a highest steady-state temperature of 130.8 °C. An MXene-based piezoresistive sensor prepared by the printing interdigital electrode also presents good sensing performance with a short response time of 130 ms and wide pressure region up to 30 kPa. As a result, screen-printed MXene film exhibits reinforced multifunctional performance, which is promising for application in the next-generation of intelligent and wearable devices.
科研通智能强力驱动
Strongly Powered by AbleSci AI