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首页> 外文期刊>ACS Omega >Interlock or Chemical Bond: Investigation on the Interface of Graphene Oxide and Styrenic Block Copolymers as Layer-by-Layer Films
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Interlock or Chemical Bond: Investigation on the Interface of Graphene Oxide and Styrenic Block Copolymers as Layer-by-Layer Films

机译:互锁或化学键:石墨烯和苯乙烯嵌段共聚物界面的研究作为逐层膜

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In the paper, graphene oxide (GO) and two kinds of styrenic resins, poly[styrene-b-(ethylene-co-butylene)-b-styrene] (SEBS) and maleic anhydride (MA) grafted SEBS (MA-g-SEBS), were utilized to explore the interfacial interaction of carbon-based materials and block copolymers as layer-by-layer (LBL) assembly films. The details of the interlayer interaction of the two kinds of composite films were investigated through the analysis of the mechanical properties and internal structure of the composites. For the SEBS/GO composite film, the “interlock” structure tended to form between the GO sheets and SEBS resin, and the physical “interlocking effect” could make full use of the excellent mechanical properties of GO nanosheets. As a result, both failure strength and elongation at break of the SEBS/GO composite film were enhanced by 50 and 25%, respectively. On the other hand, some different structures were found in the MA-g-SEBS/GO composite film, where the GO sheets stacked onto the resin closely because of the chemical interaction between them and no obvious “interlocks” was found within the interface, and the chemical interface interaction was strong enough to prevent the slide of GO nanosheets under tension after the graphene sheets were highly oxidized, so the mechanical properties of the MA-g-SEBS/GO composite film could be also enhanced. Based on an overall consideration of the research results of these LBL assembled composites, choosing more perfect materials and structures is needed, which should use physical and chemical interfacial interactions more efficiently, to obtain better mechanical properties of inorganic carbon–organic resin composites.
机译:在纸质中,石墨烯氧化物(GO)和两种苯乙烯树脂,聚[苯乙烯-B-(乙烯 - 丁烯)-B-苯乙烯](SEBB)和马来酸酐(MA)接枝SEBS(MA-G-用于探讨碳基材料的界面相互作用和嵌段共聚物作为逐层(LBL)组装膜的界面相互作用。通过分析复合材料的机械性能和内部结构,研究了两种复合膜的层间相互作用的细节。对于SEBS / GO复合薄膜,“互锁”结构倾向于在去板材和SEBS树脂之间形成,并且物理“互锁效应”可以充分利用Go NanosheS的优异机械性能。结果,分别增强了SEBS /去复合膜的破裂的故障强度和伸长率,分别增强了50%和25%。另一方面,在MA-G-SEBS /去复合膜中发现了一些不同的结构,因为在界面内发现了它们之间的化学相互作用而堆叠在树脂上的去纸张,并且化学界面相互作用足够强以防止在石墨烯片高度氧化之后在张力下防止纳米片的载玻片,因此也可以增强MA-G-SEBS /去复合膜的机械性能。基于整体考虑这些LBL组装复合材料的研究结果,需要更完美的材料和结构,这应该更有效地使用物理和化学界面相互作用,以获得无机碳 - 有机树脂复合材料的更好的机械性能。

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