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Immobilization of rubber additive on graphene for high-performance rubber composites

文献类型: 外文期刊

作者: Zhong, Bangchao 1 ; Luo, Yongyue 3 ; Chen, Wanjuan 4 ; Luo, Yuanfang 2 ; Hu, Dechao 2 ; Dong, Huanhuan 2 ; Jia, Zhixin 2 ;

作者机构: 1.Chongqing Normal Univ, Coll Chem, Chongqing 401331, Peoples R China

2.South China Univ Technol, Dept Polymer Mat & Engn, Guangzhou 510640, Guangdong, Peoples R China

3.Chinese Acad Trop Agr Sci, Agr Prod Proc Res Inst, Zhanjiang 524001, Peoples R China

4.Foshan Univ, Coll Mat Sci & Energy Engn, Foshan 528000, Peoples R China

关键词: Graphene; Rubber nanocomposites; Interfacial enhancement; Thermal conductivity; Aging resistance

期刊名称:JOURNAL OF COLLOID AND INTERFACE SCIENCE ( 影响因子:8.128; 五年影响因子:7.211 )

ISSN: 0021-9797

年卷期: 2019 年 550 卷

页码:

收录情况: SCI

摘要: It is still a challenge to achieve simultaneous improvements in aging resistance, mechanical strength, thermal conductivity and dielectric constant of rubber composites via incorporation of graphene obtained by conventional methods. Herein, an effective and green method was proposed to simultaneously reduce and functionalize graphene oxide (GO) with 2-mercaptobenzimidazole (antioxidant MB) via a one-pot method. GO was successfully reduced by MB which was also chemically grafted on the reduced GO (G-MB). G-MB sheets were uniformly dispersed in rubber with strong interfacial interaction, and graphene-graphene conductive paths were formed through intermolecular H-bonding between the grafted antioxidant molecules. Consequently, rubber composites with G-MB showed higher thermal conductivity, mechanical strength and dielectric constant than rubber composites with hydrazine hydrate reduced GO (rGO). Moreover, the thermo-oxidative aging resistance of rubber composites with G-MB was also superior to that of rubber composites with rGO because of the elimination of blooming effect of the grafted MB molecules. Thus, this work may open a new way for the eco-friendly functionalization and reduction of GO and may boost the development of high-performance, functional graphene-elastomer composites. (C) 2019 Elsevier Inc. All rights reserved.

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