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Nacre-Mimetic Graphene Oxide/Cross-Linking Agent Composite Films with Superior Mechanical Properties

机译:凝聚石墨烯氧化物/交联剂复合膜,具有优异的机械性能

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摘要

We report a graphene oxide/cross-linking agent (GO/CA) composite inspired by the nacre structure. Based on the "brick-and-mortar" concept of nacre, graphene oxide and a cross-linking agent are covalently conjugated in the form of nacre. The mechanical characteristics of the nacre-mimetic GO/CA composite film can be controlled by adjusting the preparation method, degree of cross-linking, and cross-linking times. As a result, the cross linking strategy can drastically enhance the tensile strength [142.9 +/- 6.4 MPa (similar to 2.3-fold)], modulus [4.7 +/- 0.36 GPa (similar to 15.7-fold)], and hardness [917.4 +/- 85.7 MPa (similar to 9.0-fold)], which are superior to those of pristine materials. The cross-linking agent-based chemical bonding method for mechanically improved integration is mainly attributed to the formation of strong cross-linked networks between the GO-based 2D interfaces and CA. The facile fabrication process provides many opportunities to design advanced, robust, and integrated nacre-like GO/CA composites, which can be applied to future aerospace utilizations, electronic protectors, robotic elements, and permeable membranes.
机译:我们报告了由露珠结构启发的石墨烯/交联剂(GO / CA)复合材料。基于珍珠虫的“砂浆”概念,石墨烯和交联剂以珍珠虫的形式共价缀合。通过调节制备方法,交联和交联时间,可以控制露珠模拟Go / Ca复合膜的机械特性。结果,交叉连接策略可以急剧增强拉伸强度[142.9 +/- 6.4MPa(类似于2.3倍)],模量[4.7 +/- 0.36GPa(类似于15.7倍)]和硬度[ 917.4 +/- 85.7 MPa(类似于9.0倍)],优于原始材料。用于机械改善的整合的基于交联代理的化学键合方法主要归因于在基于Go的2D界面和CA之间形成强的交联网络。设施的制造过程提供了设计先进,鲁棒和集成的珍珠灰岩复合材料的许多机会,可以应用于未来的航空航天利用,电子保护器,机器人元素和可渗透的膜。

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