聚二甲基硅氧烷
材料科学
热导率
表面能
复合材料
热的
散热膏
填料(材料)
铝
数码产品
工作(物理)
聚合物
机械工程
热力学
化学
物理
物理化学
工程类
作者
Qiang‐Qiang Ma,Zhenyu Wang,Ting Liang,Yunpeng Su,Junhong Li,Yimin Yao,Xiangliang Zeng,Yunsong Pang,Meng Han,Xiaoliang Zeng,Jianbin Xu,Linlin Ren,Rong Sun
标识
DOI:10.1016/j.compositesa.2022.106904
摘要
With heat-flux density of electronics drastically increase polymer-based thermal interface materials play a critical role in the performance of electronics. Although surface energy of fillers has been recognized as a crucial parameter, the exploitation of the filler surface energy-dependent properties is still unclear. Herein, we report on unveiling the effect of the surface energy of aluminum on thermal and mechanical properties in thermal interface materials consisted of polydimethylsiloxane and modified aluminum with silane-coupling agents containing varied chain lengths. The results show that reducing the surface energy of aluminum is beneficial to improve the aluminum fillers dispersibility in polydimethylsiloxane, leading to improved macroscopic properties, including rheology, mechanical properties, and thermal properties. Furthermore, based on the thermodynamic prediction, a winding hypothesis was proposed to explain the interaction between the modified aluminum and polydimethylsiloxane. This work provides valuable guidance for rationally designing the surface energy of fillers in thermal interface materials.
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