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Research Article

Simultaneously enhanced interfacial shear strength and tensile strength of heterocyclic aramid fiber by graphene oxide

Ziyi Zhang1,2,3Xiangzheng Jia4Chun Li3Lanying Li5Yeye Wen2Zhenfei Gao3Jiangwei Zhang6Enlai Gao4( )Kun Jiao2,3( )Jin Zhang2,3( )
College of Science, China University of Petroleum (Beijing), Beijing 102249, China
Beijing National Laboratory for Molecular Sciences, School of Materials Science and Engineering, College of Chemistry and Molecular Engineering, Beijing Science and Engineering Center for Nanocarbons, Peking University, Beijing 100871, China
Beijing Graphene Institute (BGI), Beijing 100095, China
Department of Engineering Mechanics, School of Civil Engineering, Wuhan University, Wuhan 430072, China
China Bluestar Chengrand Chemical Co., Ltd., Chengdu 610041, China
Science Center of Energy Material and Chemistry, College of Chemistry and Chemical Engineering, Inner Mongolia University, Hohhot 010021, China
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Abstract

Heterocyclic aramid fibers, a typical kind of high-performance fibers, have been widely used in aerospace and protection fields because of their excellent mechanical properties. However, the application of heterocyclic aramid fibers as a reinforcement is hindered by the weak interfacial combination with matrix materials, especially epoxy. Traditional strategies enhancing the interfacial shear strength (IFSS) usually decrease the tensile strength. Therefore, simultaneous enhancement of both mechanical properties remains a challenge. Herein, we report a novel heterocyclic aramid fiber with high interfacial shear strength (49.3 MPa) and tensile strength (6.27 GPa), in which 4,4′-diamino-2′-chlorobenzanilide (DABA-Cl) and a small amount of graphene oxide (GO) are introduced through in-situ polymerization. Hydrogen bonds and π–π interaction between GO and polymer chains trigger the enhancement in crystallinity, orientation, and lateral interaction of the fibers, thus improving the tensile strength and interfacial shear strength of the fibers. Moreover, the interfacial interaction between fiber and epoxy is enhanced due to the improvement of the surface polarity of the fibers caused by DABA-Cl. Therefore, a method to improve both tensile strength and interfacial shear strength of heterocyclic aramid fibers was found by introducing GO and DABA-Cl, which may provide guidance for the design and preparation of other high-performance fibers.

Graphical Abstract

A novel heterocyclic aramid fiber containing graphene oxide (GO) and 4,4′-diamino-2′-chlorobenzanilide (DABA-Cl) was prepared by in-situ polymerization and wet spinning. F3-Cl-GO shows excellent tensile strength (6.27 GPa) and interfacial shear strength (49.3 MPa).

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Nano Research
Pages 12286-12293

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Cite this article:
Zhang Z, Jia X, Li C, et al. Simultaneously enhanced interfacial shear strength and tensile strength of heterocyclic aramid fiber by graphene oxide. Nano Research, 2023, 16(10): 12286-12293. https://doi.org/10.1007/s12274-023-5904-7
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Received: 31 March 2023
Revised: 05 June 2023
Accepted: 06 June 2023
Published: 24 July 2023
© Tsinghua University Press 2023