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Facile synthesis of hierarchical CNF/SnO2/Ni nanostructures via self-assembly process as anode materials for lithium ion batteries.


ABSTRACT: Hierarchical carbon nanofibre (CNF)/SnO2/Ni nanostructures of graphitized carbon nanofibres and SnO2 nanocrystallines and Ni nanocrystallines have been prepared via divalent tin-alginate assembly on polyacrylonitrile (PAN) fibres, controlled pyrolysis and ball milling. Fabrication is implemented in three steps: (1) formation of a tin-alginate layer on PAN fibres by coating sodium alginate on PAN in a water medium followed by polycondensation in SnCl2 solution; (2) heat treatment at 450°C in a nitrogen atmosphere; (3) ball milling the mixture of CNF/SnO2 fibres and Ni powder. The CNF/SnO2/Ni nanocomposite exhibits good lithium ion storage capacity and cyclability, providing a facile and low-cost approach for the large-scale preparation of anode materials for lithium ion batteries.

SUBMITTER: Tang H 

PROVIDER: S-EPMC6030287 | biostudies-literature | 2018 Jun

REPOSITORIES: biostudies-literature

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Facile synthesis of hierarchical CNF/SnO<sub>2</sub>/Ni nanostructures via self-assembly process as anode materials for lithium ion batteries.

Tang Haitong H   Yu Xinru X   Jin Shi S   Meng Fanling F   Yan Yan Y   Gao Zhongmin Z  

Royal Society open science 20180620 6


Hierarchical carbon nanofibre (CNF)/SnO<sub>2</sub>/Ni nanostructures of graphitized carbon nanofibres and SnO<sub>2</sub> nanocrystallines and Ni nanocrystallines have been prepared via divalent tin-alginate assembly on polyacrylonitrile (PAN) fibres, controlled pyrolysis and ball milling. Fabrication is implemented in three steps: (1) formation of a tin-alginate layer on PAN fibres by coating sodium alginate on PAN in a water medium followed by polycondensation in SnCl<sub>2</sub> solution; (2  ...[more]

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