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首页> 外文期刊>Materials Chemistry Frontiers >Phase-separation induced hollow/porous carbon nanofibers containing in situ generated ultrafine SnOx as anode materials for lithium-ion batteries
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Phase-separation induced hollow/porous carbon nanofibers containing in situ generated ultrafine SnOx as anode materials for lithium-ion batteries

机译:相分离导致空心/多孔碳包含原位生成的超细纳米纤维SnOx作为锂离子电池的负极材料

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摘要

Hollow-structured carbon nanofibers embedded with ultrafine SnO_x nanoparticles (SnO_x/H-CNFs) have been prepared by a simple single-spinneret electrospinning technique assisted by phase separation between polyvinylpyrrolidone and tetraethyl orthosilicate. The nitrogen adsorption-desorption isothermal analysis shows that the SnO_x/H-CNFs possess a large specific surface area of 739 m~2 g~(-1) and large amounts of mesopores. The high specific surface area provides a large electrode/electrolyte contact interface for Li~+ transport and storage, while the hollow structure shortens the Li~+-diffusion pathway and thus favors the rate capability. Moreover, the hollow and porous carbon matrix can act as a buffer zone to accommodate the volume change of the highly active SnOx during the lithiation/delithiation processes. Consequently, the SnOx/H-CNF electrode delivers a high reversible capacity of 732 mA h g~(-1) at the rate of 500 mA g1 upon the 100th cycle, good rate performance (254 mA h g1 at 4 A g~(-1)), and long-term cycling stability (513 mA h g~(-1) at 1 A g~(-1) after 500 cycles).
机译:Hollow-structured嵌入纳米碳纤维超细SnO_x纳米颗粒(SnO_x / H-CNFs)被一个简单的single-spinneret准备电纺的技术协助下阶段分离聚乙烯吡咯烷酮和原硅酸四乙酯。adsorption-desorption等温分析显示SnO_x / H-CNFs拥有大量具体表面面积739 m ~ 2 g ~(1)和大量中孔。提供了一个大型电极/电解液的接触李~ +运输和存储接口,而空心结构缩短了李~ +扩散通路,从而支持能力。此外,空心和多孔碳矩阵作为一个缓冲区来容纳体积改变的高活性SnOxlithiation / delithiation流程。SnOx / H-CNF电极提供了一个高可逆容量732毫安h g ~ (1)500 mA g1在100周期,良好率性能(254毫安h g1在4 g ~(1)),和马长期循环稳定性(513 h g ~ (1) 1g ~(1)后500周期)。

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