材料科学
复合材料
热导率
电介质
复合数
极限抗拉强度
丁腈橡胶
天然橡胶
聚合物
表面改性
环氧树脂
丙烯腈
电导率
纳米复合材料
化学工程
工程类
物理化学
光电子学
化学
共聚物
作者
Mengnan Ruan,Dan Yang,Weihong Guo,Liqun Zhang,Shuxin Li,Yuwei Shang,Yibo Wu,Min Zhang,Hao Wang
标识
DOI:10.1016/j.apsusc.2017.12.250
摘要
Surface functionalization of Al2O3 nano-particles by mussel-inspired poly(dopamine) (PDA) was developed to improve the dielectric properties, mechanical properties, and thermal conductivity properties of nitrile rubber (NBR) matrix. As strong adhesion of PDA to Al2O3 nano-particles and hydrogen bonds formed by the catechol groups of PDA and the polar acrylonitrile groups of NBR, the dispersion of Al2O3-PDA/NBR composites was improved and the interfacial force between Al2O3-PDA and NBR matrix was enhanced. Thus, the Al2O3-PDA/NBR composites exhibited higher dielectric constant, better mechanical properties, and larger thermal conductivity comparing with Al2O3/NBR composites at the same filler content. The largest thermal conductivity of Al2O3-PDA/NBR composite filled with 30 phr Al2O3-PDA was 0.21 W/m K, which was 122% times of pure NBR. In addition, the Al2O3-PDA/NBR composite filled with 30 phr Al2O3-PDA displayed a high tensile strength about 2.61 MPa, which was about 255% of pure NBR. This procedure is eco-friendly and easy handling, which provides a promising route to polymer composites in application of thermal conductivity field.
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