Preparation and improved properties (electrical, mechanical and microwave absorption) of graphene/ZnO/XNBR nanocomposites

被引:0
|
作者
Che-Kuan Lin
Tse-Ming Huang
Jia-Hao Liu
Jing-Wen Tu
Yun-Ting Liu
Wen-Yen Hsieh
Jia-Huang Chang
Ren-Jang Wu
Murthy Chavali
机构
[1] Providence University,Department of Applied Chemistry
[2] Feng Chia University,Department of Materials Science and Engineering
[3] Chung-Shan Institute of Science and Technology,Aeronautical Systems Research Division, Department of Aeronautical Materials
[4] Alliance University,Office of the Dean (Research) & Division of Chemistry, Department of Science, Faculty of Science and Technology
来源
Polymer Bulletin | 2023年 / 80卷
关键词
Graphene; Nanocomposites; Electrical properties; Microwave adsorption;
D O I
暂无
中图分类号
学科分类号
摘要
A preparation route to fabricate high-performance graphene/rubber elastic nanocomposites was developed by combining the plasma-assisted electrical chemical exfoliation of graphite (PEG) in liquid phase with carboxylated butadiene acrylonitrile latex (XNBR). The dispersion and adhesion of PEG in the XNBR rubber matrix were considerably improved after interfacial modification due to forming the segregated 3D structure via the covalent bonding interactions between modified PGE nanosheets and XNBR particles. The stable and segregated 3D structure endowed the graphene reinforced XNBR nanocomposites with obviously enhanced electrical conductivity to the maximum of 4.67*10−2 S/m and strengthened the multiple mechanical performances at the same time. In addition, the microwave adsorption characteristics were also better than the pure XNBR matrix when the modified PEG nanosheets were added. Finally, the morphology of the reinforced XNBR nanocomposites was analyzed by Fourier transform infrared spectra, Raman spectra, X-ray diffraction, scanning electron microscopy and transmission electron microscopy. This simple and effective strategy provides another inspiration for the preparation of high-performance graphene-filled rubber nanocomposites.
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页码:685 / 701
页数:16
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