首页> 外文期刊>Particle & Particle Systems Characterization: Measurement and Description of Particle Properties and Behavior in Powders and Other Disperse Systems >Encapsulating Tin Dioxide@Porous Carbon in Carbon Tubes: A Fiber-in-Tube Hierarchical Nanostructure for Superior Capacity and Long-Life Lithium Storage
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Encapsulating Tin Dioxide@Porous Carbon in Carbon Tubes: A Fiber-in-Tube Hierarchical Nanostructure for Superior Capacity and Long-Life Lithium Storage

机译:将二氧化锡@多孔碳包封在碳管中:管内纤维分层纳米结构,具有出色的容量和长寿命的锂存储

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摘要

A novel fiber-in-tube hierarchical nanostructure of SnO2@porous carbon in carbon tubes (SnO2@PC/CTs) is creatively designed and synthesized though a carbon coating on scalable electrospun hybrid nanofibers template and a post-etching technique. This 1D nanoarchitecture consists of double carbon-buffering matrixes, i.e., the external carbon tubular shell and the internal porous carbon skeleton, which can work synergistically to address the various issues of SnO2 nanoanode operation, such as pulverization, particle aggregation, and vulnerable electrical contacts between the SnO2 nanoparticles and the carbon conductors. Thus, the as-obtained SnO2@PC/CTs nanohybrids used as a lithium-ion-battery anode exhibits a higher reversible capacity of 1045 mA h g(-1) at 0.5 A g(-1) after 300 cycles as well as a high-rate cycling stability after 1000 cycles. The enhanced performance can be attributed to the wonderful merits of the external carbon protective shell for preserving the integrity of the overall electrode, and the internal porous carbon skeleton for inhibiting the aggregation and electrical isolation of the active particles during cycling.
机译:通过可伸缩电纺杂化纳米纤维模板上的碳涂层和后蚀刻技术,创造性地设计和合成了碳管中SnO2 @多孔碳的新型管内纤维分层纳米结构(SnO2 @ PC / CTs)。这种一维纳米结构由双重碳缓冲基质(即外部碳管壳和内部多孔碳骨架)组成,可以协同工作以解决SnO2纳米阳极操作的各种问题,例如粉碎,颗粒聚集和易电接触在SnO2纳米颗粒和碳导体之间。因此,用作锂离子电池阳极的SnO2 @ PC / CTs纳米杂化物在300次循环后在0.5 A g(-1)下表现出较高的可逆容量1045 mA hg(-1),并且具有较高的可逆容量。循环后的高速率循环稳定性。增强的性能可以归因于外部碳保护壳用于保持整个电极的完整性的奇妙优点,以及内部多孔碳骨架用于在循环过程中抑制活性颗粒的聚集和电隔离。

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