摘要
Nanostructured δ-MnO2 incorporated with alkali cations (A-δ-MnO2, A = K+, Na+) has been synthesized and evaluated as a cathode material for aqueous sodium-ion batteries. It is observed that Na+ ions are easier than K+ ions to intercalate into the layered δ-MnO2 due to their smaller ion radius. The incorporation of K+ and Na+ into δ-MnO2 shows a great influence on the electrochemical performance of the layered δ-MnO2. The full cell with (K, Na)-co-incorporated δ-MnO2 (K : Na : Mn = 0.15 : 0.26 : 1) hierarchical nanospheres as the cathode and NaTi2(PO4)3 as the anode exhibits a specific capacity of 74.6 mA h g-1 at 150 mA g-1, and the capacity remains at ∼62% at a high current density of 600 mA g-1. The electrochemical cycling does not induce observable structural degradation even after 200 cycles. K-incorporated and (K, Na)-co-incorporated δ-MnO2 electrodes have superior capacity and rate capability, which can be ascribed to their hierarchical structure and adequate crystallinity.
源语言 | 英语 |
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页(从-至) | 7780-7785 |
页数 | 6 |
期刊 | Journal of Materials Chemistry A |
卷 | 3 |
期 | 15 |
DOI | |
出版状态 | 已出版 - 21 4月 2015 |
已对外发布 | 是 |