材料科学
石墨烯
发射率
共发射极
辐射能
光电子学
辐射采暖
红外线的
热辐射
红外线加热器
复合材料
化学气相沉积
热的
辐射
光学
纳米技术
物理
气象学
热力学
作者
Hao Yuan,Hui Zhang,Kewen Huang,Yi Cheng,Kun Wang,Songbai Cheng,Wenjuan Li,Jun Jiang,Junliang Li,Ce Tu,Xiao-Bai Wang,Yue Qi,Zhongfan Liu
出处
期刊:ACS Nano
[American Chemical Society]
日期:2022-02-02
卷期号:16 (2): 2577-2584
被引量:34
标识
DOI:10.1021/acsnano.1c09269
摘要
Radiant heating, as a significant thermal management technique, is best known for its high thermal effect, media-free operation, good penetration, and compatibility for different heated shapes. To promote sustainable development in this area, developing advanced infrared radiation material is in high demand. In this work, a lightweight, flexible dual-emitter infrared electrothermal material, graphene glass fiber (GGF), is developed by chemical vapor deposition (CVD) method, with both graphene and glass fiber as the radiation elements. Large-area GGF fabric (GGFF) exhibits wavelength-independent high infrared emissivity (0.92) and thermal radiation efficiency (79.4%), as well as ultrafast electrothermal response (190.7 °C s-1 at 9.30 W cm-2) and uniform heating temperature. The superior radiant heating capability of GGFF to traditional alloy heating wires can achieve 33.3% energy saving. GGF can promote the development of efficient and energy-saving heat management technology.
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