电磁屏蔽
材料科学
电磁干扰
储能
MXenes公司
电磁干扰
导电体
复合材料
多孔性
电容
干扰(通信)
光电子学
纳米技术
计算机科学
功率(物理)
电极
电信
量子力学
物理
频道(广播)
物理化学
化学
作者
Liang Yin,Hang Won Kang,Haoxiang Ma,Jingfeng Wang,Yuyan Liu,Zhimin Xie,Youshan Wang,Zhimin Fan
出处
期刊:Carbon
[Elsevier]
日期:2021-09-01
卷期号:182: 124-133
被引量:26
标识
DOI:10.1016/j.carbon.2021.05.048
摘要
The controllable construction of lightweight, highly conductive, porous and flexible Ti3C2Tx MXene film is crucial in achieving high-performance electromagnetic interference (EMI) shielding and the next generation of high-rate energy storage materials, but it is difficult to produce. Herein, the focused sunlight was used to stimulate the photothermal effect of MXene, which makes the free water between the layers of the conventional compact MXene film vaporized instantaneously, and then a macroporous MXene film with 3D architectures was obtained in just a few seconds. Such macroporous MXene film is lightweight and flexible, with high conductivity (≈1000 S cm−1), good hydrophobicity and environmental stability. Therefore, the absolute shielding effectiveness of the macroporous MXene film can be as high as 88333 dB cm2 g−1, indicating its potential applications in EMI shielding materials for aerospace. Furthermore, based on the highly open pore structure and more exposed surface area, this MXene film possesses a higher capacitance (380 F g−1) and good rate capability, enabling it to demonstrate attractive prospects in high-rate energy storage. This work provides an ingenious way to create macroporous MXene film and can guide future work on exploring the wider use of MXene-based materials.
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