Achieving Ultra‐High Heat Flux Transfer in Graphene Films via Tunable Gas Escape Channels

石墨烯 材料科学 传热 焊剂(冶金) 热流密度 纳米技术 光电子学 机械 物理 冶金
作者
Haolong Zheng,Peng He,Shujing Yang,Yonghua Lü,Na Guo,Yanhong Li,Gang Wang,Guqiao Ding
出处
期刊:Advanced Science [Wiley]
被引量:10
标识
DOI:10.1002/advs.202410913
摘要

Graphene films have been applied in the thermal management of electronic devices due to their high thermal conductivity. However, the ever-increasing power and local heat flux density of electronic chips require graphene films with excellent heat flux carrying capacity. Enhancing the heat flux carrying capacity is highly challenging, and the key is to maintain high thermal conductivity while increasing film thickness. Gases released during film assembly and the resulting catastrophic structural destruction should be responsible for the trade-off between film thickness and thermal conductivity. Herein, the evolution of the pore structure is investigated during the assembly of graphene films and propose the construction of gas escape channels for the preparation of thick graphene films. The process involves using humidification treatment and freeze-drying GO films to pre-construct the ordered flat pore structure. The microstructure optimization of graphene films with more order, fewer wrinkles and defects, and larger grain size is achieved. After optimization, graphene films with ultra-high thermal conductivity (1781 W m
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