复合材料
材料科学
热导率
石墨烯
热的
极限抗拉强度
导电体
石墨烯泡沫
聚合物
电子设备和系统的热管理
工作(物理)
碳纳米管
相(物质)
消散
先进复合材料
氧化石墨烯纸
分层(地质)
复合数
作者
Kaiwen Li,Bo Wang,Yanru Chen,Jiahao Lu,Yue Gao,Junsheng Wang,Lidan Wang,Bin Sun,Zhong‐Zhen Yu,Zhi Ping Xu,Kai Pang,Yingjun Liu,Zhen Xu,Chao Gao,Zhen Xu,Chao Gao
出处
期刊:
[Elsevier BV]
日期:2025-10-15
卷期号:2: 288-298
被引量:1
标识
DOI:10.1016/j.adna.2025.10.002
摘要
Polymer composites with high thermal conductivity ( κ ) are essential for advanced thermal management applications. Graphene has enabled thin films with κ values approaching 2000 W/m·K , yet bulk composites incorporating graphene fillers typically remain limited below 550 W/m·K. Here, we present an inverse phase enhancement (IPE) strategy that employs polymer resin as the reinforcing phase, yielding strong bulk composites with a record-high κ of 802 ± 10.9 W/m·K. A minimum polymer content of merely 5.9 % effectively improves the tensile strength of graphene laminated papers by 117 % while maintaining their promising κ. Mortise-tenon-like 2D joints of minimum polymers efficiently retard the sliding of graphene sheets and impede the catastrophic crack propagation. Our work opens a modular path to fully harness the exceptional κ of neat graphene assembled materials, enabling pivotal thermal applications of graphene bulk composites in heat dissipation for electronic devices and protective equipment. • Mortise-tenon-like 2D joints structure reinforces the graphene papers efficiently. • A minimum polymer content of only 5.9 % maintains the promising κ of graphene papers while improves strength. • Strong and superiorly thermal conductive bulk composites with a record κ of 802 W/m·K.
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