Multifunctional flexible carbon fiber felt@nickel composite films with core-shell heterostructure: Exceptional Joule heating capability, thermal management, and electromagnetic interference shielding

被引:57
作者
Liu, Shuai [1 ]
Yang, Jiaxin [1 ]
Yu, Ying [2 ]
Liang, Dongming [1 ]
Li, Yun [1 ]
Si, Xingyu [1 ]
Song, Shasha [1 ]
Meng, Mengmeng [1 ]
Zhang, Jiahang [1 ]
Zhang, Yang [1 ]
机构
[1] Beijing Technol & Business Univ, Dept Mat Sci & Engn, Beijing 100048, Peoples R China
[2] Beijing Normal Univ, Sch Environm, Beijing 100875, Peoples R China
基金
北京市自然科学基金;
关键词
Electrothermal composites; Core-shell heterostructure; Thermal management modulation; Rapid heating and cooling response; Electromagnetic interference shielding; HIGH-PERFORMANCE; NANOSHEETS; HEATER;
D O I
10.1016/j.cej.2024.153221
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Flexible electrothermal materials with multifunctionality have gained paramount importance in both industrial and everyday settings. Nevertheless, achieving exceptional electrothermal performance at ultra-low actuation voltages remains an imposing challenge. This research addresses this challenge by introducing a novel core-shell heterostructure. The unique design incorporates carbon fiber felt (CFF) as the core and envelops it with nickel (Ni) particles through electroplating. The giant core-shell heterostructure endows CFF@Ni to achieve impressive heating temperatures of up to 146.7 C-degrees at only 1.5 V. A proposed linear model offers precise thermal control by correlating saturation temperature with the square of applied voltages. CFF@Ni exhibits rapid heating rates up to 35.8 C-degrees/s, surpassing previous reports, and also possesses robust bending durability and reliable electrothermal characteristics. The electrothermal mechanism analysis manifests that the synergy of enhanced electrical conductivity and the unique heterostructure enables efficient electricity-to-heat conversion. Versatility is demonstrated in diverse applications, from rapid liquid heating to de-icing and thermal therapy. Notably, CFF@Ni excels in microwave shielding and flame retardancy, marking it as an excellent multifunctional material. This research significantly advances the landscape of electrothermal materials, offering a promising avenue for practical, efficient, and durable electric heating solutions that can be applied across various fields.
引用
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页数:11
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