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A novel and fast method to prepare a Cu-supported α-Sb2S3@CuSbS2 binder-free electrode for sodium-ion batteries.


ABSTRACT: Antimony sulfide (Sb2S3) is a promising anode material for sodium-ion batteries due to its low cost and high theoretical specific capacity. However, poor stability and a complex preparation process limit its large-scale application. Herein, we prepare a binder-free composite electrode composed of amorphous (α-) Sb2S3 and copper antimony sulfide (CuSbS2) through a simple closed-space sublimation (CSS) method. When applied as the anode in sodium-ion batteries, the α-Sb2S3@CuSbS2 electrode exhibits excellent performance with a high discharge capacity of 506.7 mA h g-1 at a current density of 50 mA g-1 after 50 cycles. The satisfactory electrochemical performance could be ascribed to the α-Sb2S3-CuSbS2 composite structure and binder-free electrode architecture, which not only retain the structural stability of the electrode but also improve the electrical conductivity. Consequently, CSS, as a scalable and environmentally friendly method, can produce a binder-free electrode in just a few minutes, demonstrating its great potential in the industrial production of sodium-ion batteries. This study may open an avenue to preparing binder-free commercial electrodes.

SUBMITTER: Zhou J 

PROVIDER: S-EPMC9056002 | biostudies-literature | 2020 Aug

REPOSITORIES: biostudies-literature

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A novel and fast method to prepare a Cu-supported α-Sb<sub>2</sub>S<sub>3</sub>@CuSbS<sub>2</sub> binder-free electrode for sodium-ion batteries.

Zhou Jing J   Dou Qirui Q   Zhang Lijuan L   Wang Yingyu Y   Yuan Hao H   Chen Jiangchun J   Cao Yu Y  

RSC advances 20200811 49


Antimony sulfide (Sb<sub>2</sub>S<sub>3</sub>) is a promising anode material for sodium-ion batteries due to its low cost and high theoretical specific capacity. However, poor stability and a complex preparation process limit its large-scale application. Herein, we prepare a binder-free composite electrode composed of amorphous (α-) Sb<sub>2</sub>S<sub>3</sub> and copper antimony sulfide (CuSbS<sub>2</sub>) through a simple closed-space sublimation (CSS) method. When applied as the anode in sodi  ...[more]

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