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首页> 外文期刊>Scientific reports. >Strengthening of Ceramic-based Artificial Nacre via Synergistic Interactions of 1D Vanadium Pentoxide and 2D Graphene Oxide Building Blocks
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Strengthening of Ceramic-based Artificial Nacre via Synergistic Interactions of 1D Vanadium Pentoxide and 2D Graphene Oxide Building Blocks

机译:通过1D钒五氧化钒和2D石墨烯氧化物构建块的协同相互作用加强陶瓷的人工珍珠菌

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Nature has evolved hierarchical structures of hybrid materials with excellent mechanical properties. Inspired by nacre’s architecture, a ternary nanostructured composite has been developed, wherein stacked lamellas of 1D vanadium pentoxide nanofibres, intercalated with water molecules, are complemented by 2D graphene oxide (GO) nanosheets. The components self-assemble at low temperature into hierarchically arranged, highly flexible ceramic-based papers. The papers’ mechanical properties are found to be strongly influenced by the amount of the integrated GO phase. Nanoindentation tests reveal an out-of-plane decrease in Young’s modulus with increasing GO content. Furthermore, nanotensile tests reveal that the ceramic-based papers with 0.5?wt% GO show superior in-plane mechanical performance, compared to papers with higher GO contents as well as to pristine V2O5 and GO papers. Remarkably, the performance is preserved even after stretching the composite material for 100 nanotensile test cycles. The good mechanical stability and unique combination of stiffness and flexibility enable this material to memorize its micro- and macroscopic shape after repeated mechanical deformations. These findings provide useful guidelines for the development of bioinspired, multifunctional systems whose hierarchical structure imparts tailored mechanical properties and cycling stability, which is essential for applications such as actuators or flexible electrodes for advanced energy storage.
机译:大自然具有出色的机械性能的混合材料的分层结构。由纳卡鲁的架构启发,已经开发了一种三元纳米结构复合材料,其中1D钒五氧化钒纳米纤维的堆叠薄片,与水分子相插,用2D石墨烯氧化物(GO)纳米片互补。该部件在低温下自组装成分级布置,高度灵活的基于陶瓷的纸。发现纸张的机械性能受到综合GO阶段的影响受到强烈影响。纳米茚定值测试揭示了杨氏模量的平面外减少随着GO含量的增加。此外,纳米腺度测试表明,与具有较高GO含量的纸张以及原始V2O5和PAPERS的纸相比,陶瓷基纸具有0.5μm≤WT%的纸张,呈现出卓越的面内机械性能。值得注意的是,即使在拉伸100个纳米腺度试验循环后,即使在拉伸复合材料之后也可以保持性能。良好的机械稳定性和刚度和柔韧性的独特组合使得该材料使其在重复的机械变形之后记住其微观和宏观形状。这些调查结果为开发BioInspired的多功能系统提供了有用的准则,其等级结构赋予定制的机械性能和循环稳定性,这对于诸如先进储能器的致动器或柔性电极等应用至关重要。

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