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The effect of interlayer adhesion on the mechanical behaviors of macroscopic graphene oxide papers

机译:层间附着力对宏观氧化石墨纸力学性能的影响

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摘要

High mechanical performances of macroscopic graphene oxide (GO) papers are attracting great interest owing to their merits of lightweight and multiple functionalities. However, the loading role of individual nanosheets and its effect on the mechanical properties of the macroscopic GO papers are not yet well understood. Herein, we effectively tailored the interlayer adhesions of the GO papers by introducing small molecules, that is, glutaraldehyde (GA) and water molecules, into the gallery regions. With the help of in situ Raman spectroscopy, we compared the varied load-reinforcing roles of nanosheets, and further predicted the Youngs moduli of the GO papers. Systematic mechanical tests have proven that the enhancement of the tensile modulus and strength of the GA-treated GO paper arose from the improved load-bearing capability of the nanosheets. On the basis of Raman and macroscopic mechanical tests, the influences of interlayer adhesions on the fracture mechanisms of the strained GO papers were inferred.
机译:宏观氧化石墨烯(GO)纸的高机械性能由于其轻巧和多功能的优点而引起了人们的极大兴趣。但是,单个纳米片的负载作用及其对宏观GO纸机械性能的影响尚不十分清楚。在这里,我们通过将小分子,即戊二醛(GA)和水分子引入通道区域,有效地调整了GO纸的层间附着力。在原位拉曼光谱的帮助下,我们比较了纳米片的各种负载增强作用,并进一步预测了GO纸的杨氏模量。系统的机械测试已证明,经GA处理的GO纸的拉伸模量和强度的提高是由于纳米片的承载能力提高所致。在拉曼试验和宏观力学试验的基础上,推论了层间附着力对GO滤纸断裂机理的影响。

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