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首页> 外文期刊>Advanced Science >Nanoengineering to Achieve High Sodium Storage: A Case Study of Carbon Coated Hierarchical Nanoporous TiO 2 Microfibers
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Nanoengineering to Achieve High Sodium Storage: A Case Study of Carbon Coated Hierarchical Nanoporous TiO 2 Microfibers

机译:纳米工程技术实现高钠存储:碳涂层多层纳米多孔TiO 2超细纤维的案例研究

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Abstract Nanoengineering of electrode materials can directly facilitate sodium ion accessibility and transport, thus enhancing electrochemical performance in sodium ion batteries. Here, highly sodium-accessible carbon coated nanoporous TiO 2 microfibers have been synthesised via the facile electrospinning technique which can deliver an enhanced capacity of ?¢????167 mAh g ?¢????1 after 450 cycles at current density of 50 mA g ?¢????1 and retain a capacity of ?¢????71 mAh g ?¢????1 at the high current rate of 1 A g ?¢????1 . With the benefits of their porous structure, thin TiO 2 inner walls, and the introduction of conductive carbon, the nanoporous TiO 2 /C microfibers exhibit high ion accessibility, fast Na ion transport, and fast electron transport, thereby leading to the excellent Na-storage properties presented here. Nanostructuring is proven to be a fruitful strategy that can alleviate the reliance on materials' intrinsic nature; and the electrospinning technique is versatile and cost-effective for the fabrication of such an effective nanoporous microfiber structure.
机译:摘要电极材料的纳米工程可以直接促进钠离子的可及性和运输,从而增强钠离子电池的电化学性能。在这里,已经通过简便的静电纺丝技术合成了钠可及性高的碳包覆的纳米多孔TiO 2超细纤维,该纤维在电流密度为450倍的循环后可提供≥167 mAh g≥1的容量。 50 mA g -1,并在1 A g -1的高电流速率下保持71 mAh g的容量。凭借其多孔结构,薄的TiO 2内壁和导电碳的引入,纳米多孔TiO 2 / C超细纤维具有较高的离子可及性,快速的Na离子传输和快速的电子传输,从而获得了优异的Na-此处显示的存储属性。事实证明,纳米结构是一种富有成效的策略,可以减轻对材料内在本质的依赖。并且静电纺丝技术对于这种有效的纳米多孔微纤维结构的制造是通用的且具有成本效益。

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