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High-performance thermal interface materials enabled by vertical alignment of lightweight and soft graphene foams

作者:Huaqiang Fu, Renqiang Fang, Chao Tian, Wei Qian, Shiya Cao, Ziran Zhang, Xiaoxi Xu, Chuang Yao, Zhe Wang, Daping He · 发表于:Nano Research · 年份:2024 · DOI:10.1007/s12274-024-6985-7 · 被引用次数:25 · 研究领域:Thermal properties of materials、Graphene research and applications、Heat Transfer and Optimization

High-performance thermal interface materials (TIMs) are highly sought after for modern electronics. Two-dimensional (2D) materials as vertical aligned fillers can optimize the out-plane thermal conductivity ( k ⊥ ), but their excessively high content or intrinsic rigidness deteriorate TIMs softness, leading to worsening for thermal contact resistance ( R contact ). In this study, 2D graphene materials are fabricated into lightweight and soft graphene foams (GFs) with high-orientation, acting as vertical filler frameworks to optimize the k ⊥ and R contact for vertical GF (VGF) TIMs. The VGF-TIM has a high k ⊥ of 47.9 W·m −1 ·K −1 at a low graphene content of 15.5 wt.%. Due to the softness and low filler contents of GFs, the VGF-TIM exhibits a low compressive module (4.2 MPa), demonstrating excellent compressibility. The resulting TIM exhibit a low contact resistance of 24.4 K·mm 2 ·W −1 , demonstrating 185.1% higher cooling efficiency in practical heat dissipating scenario compared to commercial advanced TIMs. This work provides guidelines for the design of advanced TIMs and their applications in thermal management.