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Aramid nanofiber-functionalized graphene nanosheets for polymer reinforcement

机译:芳纶nanofiber-functionalized石墨烯nanosheets为聚合物强化

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摘要

Aramid macroscale fibers, also called Kevlar fibers, exhibit extremely high mechanical performance. Previous studies have demonstrated that bulk aramid macroscale fibers can be effectively split into aramid nanofibers (ANFs) by dissolution in dimethylsulfoxide (DMSO) in the presence of potassium hydroxide (KOH). In this paper, we first introduced the ANFs into the structure of graphene nanosheets through non-covalent functionalization through π-π stacking interactions. Aramid nanofiber-functionalized graphene sheets (ANFGS) were successfully obtained by adding the graphene oxide (GO)/DMSO dispersion into the ANFs/DMSO solution followed by reduction with hydrazine hydrate. The ANFGS, with ANFs absorbed on the surface of the graphene nanosheets, can be easily exfoliated and dispersed in N-methyl-2-pyrrolidone (NMP). Through a combination of these two ultra-strong materials, ANFs and graphene nanosheets (GS), the resultant ANFGS can act as novel nanofillers for polymer reinforcement. We used the ANFGS as an additive for reinforcing the mechanical properties of poly(methyl methacrylate) (PMMA). With a loading of 0.7 wt% of the ANFGS, the tensile strength and Young's modulus of the ANFGS/PMMA composite film approached 63.2 MPa and 3.42 GPa, which are increases of ~84.5% and ~70.6%, respectively. The thermal stabilities of ANFGS/PMMA composite films were improved by the addition of ANFGS. Additionally, the transparencies of the ANFGS/PMMA composite films have a degree of UV-shielding due to the ultraviolet light absorption of the ANFs in the ANFGS.
机译:芳纶纤维宏观尺度,也叫凯夫拉尔纤维,表现出极高的机械的性能。,大部分芳纶纤维宏观尺度有效地分成芳纶纳米纤维(曾帮工)溶解在二甲亚砜(DMSO)氢氧化钾(KOH)的存在。纸,我们首先介绍了曾帮工的石墨烯结构nanosheets通过非共价功能化通过π-π堆积相互作用。nanofiber-functionalized石墨烯表(ANFGS)成功获得通过添加石墨烯吗氧化(去)/ DMSO溶液分散到曾帮工/ DMSO溶液解决方案与肼还原紧随其后水合物。石墨烯表面nanosheets,可以很容易地清新,和分散在N-methyl-2-pyrrolidone (NMP)。结合这两个超强的材质,曾帮工和石墨烯nanosheets (GS),合成ANFGS可以作为小说nanofillers聚合物强化。钢筋的力学性能聚甲基丙烯酸甲酯(PMMA)。0.7 wt %的ANFGS的抗拉强度杨氏模量的ANFGS / PMMA复合膜接近63.2 MPa和3.42的绩点,分别增加70.6% ~ 84.5%,~。ANFGS / PMMA复合膜的热稳定性被添加ANFGS改进。此外,的透明度ANFGS / PMMA复合膜有一定程度的UV-shielding由于紫外线吸收的ANFGS曾帮工。

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