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Carbon/SnO2/carbon core/shell/shell hybrid nanofibers: tailored nanostructure for the anode of lithium ion batteries with high reversibility and rate capacity

机译:碳/ SnO2 /碳核/壳/壳混合纳米纤维:定制的奈米结构的阳极锂离子电池的高可逆性和速度能力

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摘要

A carbon/SnO2/carbon core/shell/shell hybrid nanofibrous mat was successfully prepared via single-spinneret electrospinning followed by carbonization and hydrothermal treatment. The morphology and structure of carbon/SnO2/carbon hybrid nanofibers were characterized by field-emission scanning electron microscopy, transmission electron microscopy, thermogravimetric analysis, wide-angle X-ray diffraction and X-ray photoelectron spectroscopy, and their electrochemical properties were studied as an anode in lithium ion batteries (LIBs). It is shown that the designed hybrid nanofibrous mat exhibits excellent electrochemical properties, including high reversible capacity with high columbic efficiency and impressive rate capacity. The greatly enhanced electrochemical performance is mainly due to the morphological stability and reduced diffusion resistance, which are induced by both the carbon core and deposited carbon skin. Furthermore, the embedded and de-aggregated SnO2 nanoparticles in the carbon phase, which are less than 10 nm in size, provide large numbers of reaction sites for lithium ions and ensure complete alloying with them.
机译:碳/ SnO2 /碳核/壳/壳混合nanofibrous垫通过成功的准备single-spinneret电纺的紧随其后碳化和热液治疗。碳/ SnO2 /碳的形态和结构混合纳米纤维的特点场发射扫描电子显微镜透射电子显微镜,热重分析、广角x射线衍射、x射线光电子能谱学和他们的电化学性能进行了研究作为锂离子电池阳极(LIBs)。表明所设计的混合nanofibrous垫吗表现出良好的电化学性能,包括高可逆容量高铌的效率和令人印象深刻的速度能力。极大地增强了电化学性能主要是由于形态稳定性和扩散阻力降低,诱导碳芯和沉积碳的皮肤。SnO2纳米粒子在碳阶段,规模小于10纳米,提供大量的反应为锂离子和保证完整的合金。

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