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SnO 2 Nanosheets Anchored on a 3D, Bicontinuous Electron and Ion Transport Carbon Network for High-Performance Sodium-Ion Batteries.

ACS applied materials & interfaces(2018)

Cited 51|Views6
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Abstract
Here, we demonstrate in situ growth of SnO nanosheets on a free-standing carbonized eggshell membrane (CEM), which provides 3D, bicontinuous electron and ion transport pathways through a massively interconnected carbon fiber skeleton and interpenetrated pore network, respectively. This CEM has other advantages such as the ability to alleviate mechanical stress during cycling as a buffer matrix. When used as a additive-free anode in a SIB, SnO nanosheets can realize a complete electrochemical reaction and maintain a good cycling stability with the help of CEM. For instance, SnO nanosheets delivered a high reversible capacity of 656 mA h g in the 5 cycle at 0.1 A g, approaching 98% of its theoretical specific capacity, and maintained a high reversible specific capacity of 420 mA h g after 200 cycles at 0.2 A g.
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Key words
anode,carbon network,freestanding,SnO2 nanosheets,sodium-ion,batteries
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