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首页> 外文期刊>ACS nano >Use of Synergistic Interactions to Fabricate Strong, Tough, and Conductive Artificial Nacre Based on Graphene Oxide and Chitosan
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Use of Synergistic Interactions to Fabricate Strong, Tough, and Conductive Artificial Nacre Based on Graphene Oxide and Chitosan

机译:利用协同作用制造基于氧化石墨烯和壳聚糖的强韧且导电的人造珍珠母

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摘要

Graphene is the strongest and stiffest material, leading to the development of promising applications in many fields. However, the assembly of graphene nanosheets into macro-sized nanocomposites for practical applications remains a challenge. Nacre in its natural form sets the "gold standard" for toughness and strength, which serves as a guide to the assembly of graphene nanosheets into high-performance nanocomposites. Here we show the strong, tough, conductive artificial nacre based on graphene oxide through synergistic interactions of hydrogen and covalent bonding. Tensile strength and toughness was 4 and 10 times higher, respectively, than that of natural nacre. The exceptional integrated strong and tough artificial nacre has promising applications in aerospace, artificial muscle, and tissue engineering, especially for flexible supercapacitor electrodes due to its high electrical conductivity. The use of synergistic interactions is a strategy for the development of high-performance nanocomposites.
机译:石墨烯是最坚固和最硬的材料,从而导致在许多领域中都有希望的应用程序的开发。然而,将石墨烯纳米片组装成用于实际应用的大尺寸纳米复合材料仍然是一个挑战。天然珍珠母质为韧性和强度设定了“金标准”,可作为将石墨烯纳米片组装为高性能纳米复合材料的指南。在这里,我们通过氢与共价键的协同相互作用,展示了基于氧化石墨烯的坚韧,导电的人造珍珠母。拉伸强度和韧性分别比天然珍珠母高4倍和10倍。出色的集成强韧人造人造珍珠因其高电导率而在航空航天,人造肌肉和组织工程中具有广阔的应用前景,尤其是用于柔性超级电容器电极。协同相互作用的使用是开发高性能纳米复合材料的策略。

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