材料科学
原子转移自由基聚合
聚合物
复合材料
石墨烯
接触角
表面改性
热重分析
甲基丙烯酸酯
氧化物
硅氧烷
聚合
化学工程
纳米技术
工程类
冶金
作者
Josef Osička,Markéta Ilčíková,Miroslav Mrlík,Antonín Minařík,Vladimı́r Pavlı́nek,Jaroslav Mosnáček
出处
期刊:Polymers
[Multidisciplinary Digital Publishing Institute]
日期:2017-07-03
卷期号:9 (7): 264-264
被引量:23
摘要
Poly(dimethyl siloxane) (PDMS)-based materials with improved photoactuation properties were prepared by the incorporation of polymer-grafted graphene oxide particles. The modification of the graphene oxide (GO) surface was achieved via a surface initiated atom transfer radical polymerization (SI ATRP) of methyl methacrylate and butyl methacrylate. The modification was confirmed by thermogravimetric analysis, infrared spectroscopy and electron microscopy. The GO surface reduction during the SI ATRP was investigated using Raman spectroscopy and conductivity measurements. Contact angle measurements, dielectric spectroscopy and dynamic mechanical analyses were used to investigate the compatibility of the GO filler with the PDMS matrix and the influence of the GO surface modification on its physical properties and the interactions with the matrix. Finally, the thermal conductivity and photoactuation properties of the PDMS matrix and composites were compared. The incorporation of GO with grafted polymer chains, especially poly(n-butyl methacrylate), into the PDMS matrix improved the compatibility of the GO filler with the matrix, increased the energy dissipation due to the improved flexibility of the PDMS chains, enhanced the damping behavior and increased the thermal conductivity. All the changes in the properties positively affected the photoactuation behavior of the PDMS composites containing polymer-grafted GO.
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