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- W2967774511 abstract "Abstract Even though sodium ion batteries (SIBs) have been considered as the promising candidates for next-generation power sources owing to the natural abundant and environment benignity of sodium resources, the application is restricted by the reliable anode electrode because the larger ionic radius of Na+ always leads to the low ions diffusion kinetics and especially severe structural deformation upon sodiation/desodiation. Here, we perform high-performance anode for advanced SIBs by using pomegranate-inspired SnS/ZnS@C heterostructural nanocubes. The exceptional architectures using SnS/ZnS heterostructures offer extra charge transfer driving force and prevent the agglomeration of the active materials with the “pomegranate” like structure, and conductive elastic carbon shells guarantee the fast electron/ion transportation across the electrode and tolerate the inevitable volume change of SnS, and maintain the integrity of the electrode upon cycling. As consequence, the SnS/ZnS@C heterostructure exhibits a highly initial discharge capacity of 921 mAh g−1, outstanding rate performance (2000 mA g−1) and remarkable cycle stability as an anode for SIB. Our rational design of pomegranate-inspired heterostructures provides a new avenue to explore high performance SIB." @default.
- W2967774511 created "2019-08-22" @default.
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- W2967774511 date "2019-12-01" @default.
- W2967774511 modified "2023-10-17" @default.
- W2967774511 title "Pomegranate-inspired SnS/ZnS@C heterostructural nanocubes towards high-performance sodium ion battery" @default.
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- W2967774511 doi "https://doi.org/10.1016/j.apsusc.2019.143631" @default.
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