材料科学
热导率
气凝胶
复合材料
保温
热阻
热的
电子设备和系统的热管理
散热膏
热传导
抗压强度
各向异性
应变工程
大气温度范围
石墨烯
导电体
热发射率
热接触电导
光电子学
纳米技术
机械工程
热力学
光学
工程类
物理
硅
图层(电子)
作者
Xiaoxiao Guo,Shujian Cheng,Ke Xu,Bo Yan,Yile Li,Weiwei Cai,Jiafa Cai,Binbin Xu,Yinghui Zhou,Yufeng Zhang,Xueao Zhang
标识
DOI:10.1016/j.jcis.2022.03.130
摘要
Materials with adjustable wide-ranging thermal conductivity are desired to tackle the problem of thermal management for electronic devices operating in an extended range of temperature. In this study, graphene aerogels (GAs) are fabricated and transformed from thermal insulators to thermal conductors by high-temperature annealing. The highest through-plane and in-plane thermal conductivity of annealed GA reaches 3.3 and 96 W/m·K, respectively, under 95% compressive strain. Using the annealed GA as thermal interface material leads to superior performance than commercially available products that have higher through-plane thermal conductivity in dissipating heat for high-power electronic devices (e.g., LED lamp). Furthermore, due to excellent elasticity, the thermal resistance of annealed GAs can be reversibly tuned about six-fold by compressive strain. This paves a novel venue in designing thermal management system for devices, which not only need excellent heat dissipation but also good thermal insulation at various operating environments.
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