材料科学
焦耳加热
气凝胶
复合数
双金属
光电子学
纳米复合材料
复合材料
电磁辐射
吸收(声学)
反射损耗
石墨烯
纳米技术
光学
物理
作者
Weiwei He,Jiajia Zheng,Weiping Dong,Shaohua Jiang,Gang Lou,Lin Zhang,Wenya Du,Zhaochun Li,Xiping Li,Yiming Chen
标识
DOI:10.1016/j.cej.2023.141677
摘要
Lightweight carbon-based aerogels with fast heat dissipation capability are promising electromagnetic wave absorber materials for developing integrated electronics, artificial intelligence, and human-interaction equipment under harsh thermal environments. Herein, the bimetallic (cobalt (Co) and nickel (Ni)) metal–organic frameworks (CoNi-MOFs), cellulose nanofibrils (CNFs), and aramid nanofibers (ANFs) were assembled into a conductive and magnetic [email protected]/ANF/CNF carbon composite aerogel ([email protected]/ACA) with an ultra-low density of 6.15 mg/cm3 using freeze-drying and subsequent carbonization treatment. Owing to the synergistic effects of multiple reflections inside the three-dimensional interconnected structures, abundant interfacial/dipolar polarizations, and coordinated dielectric and magnetic losses, the [email protected]/ACA achieved a fascinating minimum reflection loss value of −66.57 dB and broad effective absorption bandwidth up to 6.3 GHz, which were characterized with an ultra-low loading of 1.8 wt%. In addition, it displayed good thermal stability with a super-fast Joule heating (cooling) rate at low driving voltages. These unique characteristics of the ultra-light CoNi@C/ACA make it a promising material for demanding applications, e.g., electromagnetic pollution elimination and thermal management.
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