globalchange  > 气候变化与战略
DOI: 10.1016/j.scib.2020.02.009
论文题名:
Ultra-light MXene aerogel/wood-derived porous carbon composites with wall-like “mortar/brick” structures for electromagnetic interference shielding
作者: Liang C.; Qiu H.; Song P.; Shi X.; Kong J.; Gu J.
刊名: Science Bulletin
ISSN: 20959273
出版年: 2020
卷: 65, 期:8
起始页码: 616
结束页码: 622
语种: 英语
中文关键词: 2D MXene ; Electromagnetic interference (EMI) shielding ; Wall-like “mortar-brick” structures ; Wood-derived porous carbon
英文关键词: Aerogels ; Brick ; Carbon carbon composites ; Carbonization ; Circular waveguides ; Compressive strength ; Electromagnetic pulse ; Electromagnetic wave interference ; Honeycomb structures ; Mortar ; Musculoskeletal system ; Porous carbon ; Porous materials ; Shielding ; Signal interference ; Thermal insulation ; Wood ; 2D MXene ; Carbon based composites ; Carbonization temperatures ; Electrical conductivity ; Electromagnetic interference shielding ; Flame retardant properties ; Graphitization degree ; Unstable structures ; Electromagnetic shielding
英文摘要: Renewable porous biochar and 2D MXene have attracted significant attention in high-end electromagnetic interference (EMI) shielding fields, due to unique orderly structures and excellent electrical conductivity (σ) value. In this work, the wood-derived porous carbon (WPC) skeleton from natural wood was performed as a template. And excellent conductive and ultra-light 3D MXene aerogel was then constructed to prepare the MXene aerogel/WPC composites, based on highly ordered honeycomb cells inner WPC as a microreactor. Higher carbonization temperature is more conducive to the graphitization degree of natural wood. MXene aerogel/WPC composites achieve the optimal EMI SE value of up to 71.3 dB at density as low as 0.197 g/cm3. Such wall-like “mortar-brick” structures (WPC skeleton as “mortar” and MXene aerogel as “brick”) not only effectively solve the unstable structure problem of MXene aerogel networks, but also greatly prolong the transmission paths of the electromagnetic waves and dissipate the incident electromagnetic waves in the form of heat and electric energy, thereby exhibiting the superior EMI shielding performance. In addition, MXene aerogel/WPC composites also exhibit good anisotropic compressive strength, excellent thermal insulation and flame retardant properties. Such ultra-light, green and efficient multi-functional bio-carbon-based composites have great application potential in the high-end EMI shielding fields of aerospace and national defence industry, etc. © 2020 Science China Press
Citation statistics:
资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/169970
Appears in Collections:气候变化与战略

Files in This Item:

There are no files associated with this item.


作者单位: Shaanxi Key Laboratory of Macromolecular Science and Technology, School of Chemistry and Chemical Engineering, Northwestern Polytechnical University, Xi'an, 710072, China

Recommended Citation:
Liang C.,Qiu H.,Song P.,et al. Ultra-light MXene aerogel/wood-derived porous carbon composites with wall-like “mortar/brick” structures for electromagnetic interference shielding[J]. Science Bulletin,2020-01-01,65(8)
Service
Recommend this item
Sava as my favorate item
Show this item's statistics
Export Endnote File
Google Scholar
Similar articles in Google Scholar
[Liang C.]'s Articles
[Qiu H.]'s Articles
[Song P.]'s Articles
百度学术
Similar articles in Baidu Scholar
[Liang C.]'s Articles
[Qiu H.]'s Articles
[Song P.]'s Articles
CSDL cross search
Similar articles in CSDL Cross Search
[Liang C.]‘s Articles
[Qiu H.]‘s Articles
[Song P.]‘s Articles
Related Copyright Policies
Null
收藏/分享
所有评论 (0)
暂无评论
 

Items in IR are protected by copyright, with all rights reserved, unless otherwise indicated.