材料科学
复合材料
聚乙二醇
热导率
PEG比率
铜
多孔性
镀铜
韧性
热的
化学工程
冶金
电镀
物理
财务
图层(电子)
气象学
工程类
经济
作者
Yuan-yuan Xiao,Dongyu Bai,Zhi-ping Xie,Zhenyu Yang,Jing‐hui Yang,Xiao‐dong Qi,Yong Wang
标识
DOI:10.1016/j.compositesa.2021.106420
摘要
Flexible phase change composites (PCMs) show great potential for the thermal management in confined spaces. However, some defects such as low mechanical strength, low thermal/electrical conductivity have limited their advanced applications. In this work, flexible PCMs based on copper-coated melamine foam ([email protected]) and polyethylene glycol (PEG) were prepared. The [email protected] foams obtained by electroless copper plating on porous MF were used to encapsulate PEG. Due to the continuous copper network, [email protected] foams not only enhanced the mechanical loading and encapsulation capacities of PCMs, but also imparted PCMs with electro-to-thermal conversion capability. Moreover, the [email protected]/PEG PCMs exhibited excellent thermal-induced shape memory property by combining the elasticity of foams and the phase change of PEG. This multifunctional [email protected]/PEG PCMs were further applied for the thermal management of electronic devices. Therefore, this study provides a strategy to prepare flexible PCMs with excellent integrated performances, which is beneficial to broaden the applications of PCMs.
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