Self-assembled graphene-constructed hollow Fe 2 O 3 spheres with controllable size for high lithium storage

Graphene-constructed hollow Fe 2 O 3 spheres (GHFs) were prepared by a one-pot hydrothermal process. The Fe 2 O 3 particles were perfectly constructed using graphene sheets. This strategy was an easy method for the large-scale synthesis of GHFs. The size of Fe 2 O 3 spheres ranged from 2000 nm to 50...

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Veröffentlicht in:RSC advances 2015, Vol.5 (28), p.21740-21744
Hauptverfasser: Chen, Yanwei, Wang, Jinzuan, Jiang, Jianzhong, Zhou, Ming'an, Zhu, Jun, Han, Sheng
Format: Artikel
Sprache:eng
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Zusammenfassung:Graphene-constructed hollow Fe 2 O 3 spheres (GHFs) were prepared by a one-pot hydrothermal process. The Fe 2 O 3 particles were perfectly constructed using graphene sheets. This strategy was an easy method for the large-scale synthesis of GHFs. The size of Fe 2 O 3 spheres ranged from 2000 nm to 50 nm and can be easily controlled by changing the weight ratio of GO to FeCl 2 , and the size greater than 250 nm shows a hollow structure obviously. As the anode material for lithium-ion batteries, the GHFs (300 nm) showed an excellent reversible capacity of 950 mA h g −1 after 50 cycles at a charge–discharge rate of 100 mA g −1 , and delivered a reversible capacity as high as 640 mA h g −1 at a high rate of 1000 mA g −1 . The outstanding electrochemical performance of GHFs can be attributed to the graphene-constructed hollow Fe 2 O 3 spheres and the synergistic interaction between uniformly dispersed Fe 2 O 3 particles and graphene. Moreover, the favorable performance of GHFs can be attributed to the reduced diffusion length of lithium, in which the hollow structure of Fe 2 O 3 spheres played an important role.
ISSN:2046-2069
2046-2069
DOI:10.1039/C4RA13270J