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Ultratough Artificial Nacre Based on Conjugated Cross-linked Graphene Oxide

机译:基于共轭交联氧化石墨烯的超韧人造珍珠粉

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Inspired by the natural nacre, we developed a novel strategy for fabricating the integration of supertough and high strength artificial nacre based on GO sheets via conjugated cross-linking. Highly π-conjugated long chain molecules of 10,12-pentacosadiyn-l-ol (PCDO) are cross-linked with GO sheets only with content of 6.5 wt%, resulting in huge displacement when loading and adsorption of much more fracture energy. The toughness is two times higher than that of natural nacre. Furthermore, the n-conjugated polymers could add additional benefit to the high electrical conductivity of the chemically reduced GO (rGO). This study opens the door toward biomimetic production of GO- or rGO-based composites with supertough and highly conductive properties, which will have great promising applications in many fields like aerospace, flexible supercapacitor electrodes, artificial muscle, and tissue engineering.
机译:受到天然珍珠质的启发,我们开发了一种新颖的策略,可通过共轭交联将基于GO片的超韧和高强度人造珍珠质整合在一起。 10,12-pentacosadiyn-1-ol(PCDO)的高度π共轭长链分子仅以6.5 wt%的含量与GO片交联,当负载和吸附更多的断裂能时会产生巨大的位移。韧性是天然珍珠母的两倍。此外,n-共轭聚合物可以为化学还原GO(rGO)的高电导率增加额外的好处。这项研究为仿生生产具有超韧性和高导电性能的GO或rGO基复合材料打开了大门,这将在航空航天,柔性超级电容器电极,人造肌肉和组织工程等许多领域具有广阔的应用前景。

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