α-Fe2O3/SnO2 heterostructure composites: A high stability anode for lithium-ion battery

2018 
Abstract α-Fe 2 O 3 microoval structure decorated with SnO 2 nanocrystals are fabricated by hydro-thermal process. The composite heterostructure has a uniform size of 310 nm in length and 110 nm in width, and SnO 2 shell thickness is ∼10 nm. The SnO 2 shell acts as a conductive layer to offer fast pathways for transport of electrons and ions. What is more, the SnO 2 layer serves as an inactive matrix for α-Fe 2 O 3 particles, avoiding agglomeration and keeping structural integrity. Benefiting from the smart design, the hierarchical α-Fe 2 O 3 /SnO 2 composite as anode exhibits a higher specific capacity and a better rate performance than those of pristine α-Fe 2 O 3 structures. The stability electrochemical performance of the hierarchical composite can be put down to the core-shell architecture, which improves the conductivity and stability of the electrodes. The heterostructure design in our work provides a possible approach to synthesis high stability materials for electrochemical energy storage.
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