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首页> 外文期刊>Nanoscale >Nanoscale toughening of ultrathin graphene oxide-polymer composites: mechanochemical insights into hydrogen-bonding/van der Waals interactions, polymer chain alignment, and steric parameters
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Nanoscale toughening of ultrathin graphene oxide-polymer composites: mechanochemical insights into hydrogen-bonding/van der Waals interactions, polymer chain alignment, and steric parameters

机译:超薄石墨烯纳米增韧氧聚合物复合材料:机械化学的洞察氢键或范德华交互,聚合物链排列和空间参数

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摘要

This paper describes a systematic study on the nanoscale toughening of monolayer graphene oxide (GO) by an ultra-thin polymer adlayer, which impedes the propagation of cracks during intraplanar fracture. Using molecular dynamics simulations, the crack-bridging capabilities of a library of five hydrogen-bonding-capable polymers are explored against an epoxide-rich GO substrate. The best crack-bridging effect is found in polymers with functional groups that can both donate/accept hydrogen atoms and have better capability to form cooperative hydrogen bonds. Aligning the chains of poly(acrylic acid) orthogonally to the crack propagation direction significantly enhances the fracture toughness of monolayer GO (by 310%) in comparison to that for an adlayer with randomly arranged chains (180% enhancement). Notably, van der Waals interactions, which are seldom highlighted in the fabrication of strong GO-polymer interfaces, are found to also provide significant crack-bridging capabilities when the polymers possess large side groups. These results pave the way for a set of design criteria that can help in remediating the intrinsically brittle mechanical behavior of two-dimensional materials, a barrier that currently restricts their potential applications.
机译:本文描述了一个系统的研究单层石墨烯氧化物的纳米增韧(去)由一个超薄聚合物adlayer,阻碍裂纹的传播intraplanar骨折。模拟,裂纹桥的功能图书馆5 hydrogen-bonding-capable聚合物研究针对一个epoxide-rich去了衬底。在聚合物的官能团可以找到捐赠/接受氢原子和有更好的能力,形成合作氢键。调整链的聚(丙烯酸)垂直的裂纹扩展方向显著增强的断裂韧性单层(310%)相比,去一个随机排列的链(180%的adlayer增强)。交互,很少强调的制造的强劲GO-polymer接口,发现也提供了重要的裂纹桥功能,当聚合物具有大的一面组。设计标准可以帮助医治的本质上脆弱的力学行为二维材料,一个障碍目前限制了它们的应用前景。

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