Tin sulphide nanoflowers anchored on three-dimensional porous graphene networks as high-performance anode for sodium-ion batteries

Tin sulphide nanoflowers anchored on three-dimensional porous graphene networks as... Three dimensional porous Ni foam/graphene/SnS2 composite was constructed by combining dip-coating method followed by one-step controllable hydrothermal growth and mild reduction. Benefiting from the continuously porous structure of SnS2 nanoflower as well the introduction of 3D graphene networks, the as-constructed anode exhibits dramatically enhanced sodium storage performances with superior reversible capacity, high rate capability, and excellent cycling performance. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Journal of Colloid and Interface Science Elsevier

Tin sulphide nanoflowers anchored on three-dimensional porous graphene networks as high-performance anode for sodium-ion batteries

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Publisher
Elsevier
Copyright
Copyright © 2018 Elsevier Inc.
ISSN
0021-9797
eISSN
1095-7103
D.O.I.
10.1016/j.jcis.2018.01.045
Publisher site
See Article on Publisher Site

Abstract

Three dimensional porous Ni foam/graphene/SnS2 composite was constructed by combining dip-coating method followed by one-step controllable hydrothermal growth and mild reduction. Benefiting from the continuously porous structure of SnS2 nanoflower as well the introduction of 3D graphene networks, the as-constructed anode exhibits dramatically enhanced sodium storage performances with superior reversible capacity, high rate capability, and excellent cycling performance.

Journal

Journal of Colloid and Interface ScienceElsevier

Published: Apr 15, 2018

References

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