Rational Design of Graphene Surface Chemistry for High-Performance Rubber/Graphene Composites

被引:161
作者
Tang, Zhenghai [1 ]
Zhang, Liqun [2 ]
Feng, Wenjiang [1 ]
Guo, Baochun [1 ]
Liu, Fang [1 ]
Jia, Demin [1 ]
机构
[1] S China Univ Technol, Dept Polymer Mat & Engn, Guangzhou 510640, Guangdong, Peoples R China
[2] Beijing Univ Chem Technol, State Key Lab Organ Inorgan Composites, Beijing 100029, Peoples R China
基金
中国国家自然科学基金;
关键词
GLASS-TRANSITION; SILICATE NANOCOMPOSITES; OXIDE HYBRIDS; CARBON-BLACK; RUBBER; DYNAMICS; REINFORCEMENT; GRAPHITE; ELASTOMERS; INTERFACES;
D O I
10.1021/ma502201e
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
In a rubber/filler composite, the surface chemistry of the filler is a critical factor in determining the properties of the composite because it affects the dispersion of the filler and the interfacial adhesion between the filler and rubber. In this study, we primarily focus on how graphene surface chemistry affects the dispersion of graphene and interfacial adhesion in butadienestyrene rubber (SBR)/graphene composites and on the resultant properties of the composites. Composites that contain graphene with tailored surface chemistry are prepared via the chemical reduction of graphene oxide (GO) in situ. Subsequently, the dispersion of the graphene and interfacial adhesion are fully investigated in relation to the graphene surface chemistry. As revealed by dielectric relaxation spectroscopy, the bulk segmental relaxation is independent of the graphene surface chemistry, whereas the interfacial relaxation mode is retarded in the composite with stronger graphenerubber affinity. The contribution of the graphene surface chemistry to the dispersion of the graphene and interfacial adhesion is quantified by calculating the surface energies. The results indicate that, when the COx fraction in the graphene is greater than 0.2, it exerts an increasingly strong effect on the dispersion of the graphene; in contrast, when the COx fraction is less than 0.2, it exerts a significant and positive effect on the interfacial interaction. In particular, on the basis of the surface energy analysis, quantitative predictors for the dispersion of graphene and interfacial adhesion are presented; these predictors can be used for the virtual design of graphene surface chemistry to optimize the properties of composites.
引用
收藏
页码:8663 / 8673
页数:11
相关论文
共 53 条
  • [1] Reinforcement of model filled elastomers: experimental and theoretical approach of swelling properties
    Berriot, J
    Lequeux, F
    Montes, H
    Pernot, H
    [J]. POLYMER, 2002, 43 (23) : 6131 - 6138
  • [2] A theoretical and experimental study of filler effect on stress-deformation-segmental orientation relations for poly(dimethylsiloxane) networks
    Bokobza, L
    Erman, B
    [J]. MACROMOLECULES, 2000, 33 (23) : 8858 - 8864
  • [3] Stalking the Materials Genome: A Data-Driven Approach to the Virtual Design of Nanostructured Polymers
    Breneman, Curt M.
    Brinson, L. Catherine
    Schadler, Linda S.
    Natarajan, Bharath
    Krein, Michael
    Wu, Ke
    Morkowchuk, Lisa
    Li, Yang
    Deng, Hua
    Xu, Hongyi
    [J]. ADVANCED FUNCTIONAL MATERIALS, 2013, 23 (46) : 5746 - 5752
  • [4] Activation behavior and dielectric relaxation in polyvinyl alcohol and multiwall carbon nanotube composite films
    Chakraborty, G.
    Meikap, A. K.
    Babu, R.
    Blau, W. J.
    [J]. SOLID STATE COMMUNICATIONS, 2011, 151 (10) : 754 - 758
  • [5] da Costa HM, 2001, KAUT GUMMI KUNSTST, V54, P242
  • [7] Reinforcement of rubber
    Hamed, GR
    [J]. RUBBER CHEMISTRY AND TECHNOLOGY, 2000, 73 (03): : 524 - 533
  • [8] Investigation on interfacial adhesion of short sisal/coir hybrid fibre reinforced natural rubber composites by restricted equilibrium swelling technique
    Haseena, AP
    Dasan, KP
    Namitha, R
    Unnikrishnan, G
    Thomas, S
    [J]. COMPOSITE INTERFACES, 2004, 11 (07) : 489 - 513
  • [9] The effect of bis(3-triethoxysilylpropyl)tetrasulfide on silica reinforcement of styrene-butadiene rubber
    Hashim, AS
    Azahari, B
    Ikeda, Y
    Kohjiya, S
    [J]. RUBBER CHEMISTRY AND TECHNOLOGY, 1998, 71 (02): : 289 - 299
  • [10] Overall performance of natural rubber/graphene nanocomposites
    Hernandez, Marianella
    del Mar Bernal, Maria
    Verdejo, Raquel
    Ezquerra, Tiberio A.
    Lopez-Manchado, Miguel A.
    [J]. COMPOSITES SCIENCE AND TECHNOLOGY, 2012, 73 : 40 - 46