石墨烯
材料科学
聚乙烯
热的
复合材料
业务
纳米技术
物理
热力学
作者
Hongli Cheng,Jie Yu,Gaojie Han,Chengen He,Yuezhan Feng,Chuntai Liu
标识
DOI:10.1021/acsanm.4c05935
摘要
According to the heat conduction theory, the construction of ordered structures is the key to reduce phonon scattering and improve the thermal conductivity (TC) of materials. By using a confined flow-induced orientation effect during stacking hot-pressing, we simultaneously achieve the oriented alignment of ultrahigh-molecular-weight polyethylene (UHPE) chains and graphene nanoplatelets (GNP) in laminated films. The flow-induced orientation can be greatly enhanced by increasing the stacking layers with the maximum Herman’s orientation factors of 0.77 for GNP and 0.68 for UHPE. As a result, the compact oriented structures form three kinds of heat conduction paths (filler-to-filler, matrix-to-matrix, and filler-to matrix) in UHPE/GNP lamellar films with low-interface thermal resistance, thus greatly increasing the in-plane TC from 5.48 to 10.25 W/mK. At the same time, the dual-oriented UHPE/GNP film shows an effective solar–thermal conversion ability that can obtain 57.1 °C surface temperature under 100 mW/cm2 radiation. Therefore, this simple stacking hot-pressing that can realize the synchronous ordering of matrix and filler has good prospects in the large-scale preparation of thermal management materials.
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