阴极
煅烧
材料科学
共沉淀
电化学
过渡金属
电池(电)
钠离子电池
无机化学
锂(药物)
微观结构
化学工程
钠
电极
冶金
催化作用
法拉第效率
物理化学
化学
有机化学
功率(物理)
内分泌学
工程类
物理
医学
量子力学
作者
Man Xie,Rui Luo,Jun Lü,Renjie Chen,Feng Wu,Xiaoming Wang,Chun Zhan,Huiming Wu,Hassan M. Albishri,Abdullah S. Al‐Bogami,Deia Abd El‐Hady,Khalil Amine
摘要
Research on sodium batteries has made a comeback because of concern regarding the limited resources and cost of lithium for Li-ion batteries. From the standpoint of electrochemistry and economics, Mn- or Fe-based layered transition metal oxides should be the most suitable cathode candidates for affordable sodium batteries. Herein, this paper reports a novel cathode material, layered Na1+x(Fey/2Niy/2Mn1-y)1-xO2 (x = 0.1-0.5), synthesized through a facile coprecipitation process combined with subsequent calcination. For such cathode material calcined at 800 °C for 20 h, the Na/Na1+x(Fey/2Niy/2Mn1-y)1-xO2 (x = 0.4) electrode exhibited a good capacity of 99.1 mAh g(-1) (cycled at 1.5-4.0 V) and capacity retention over 87% after 50 cycles. Optimization of this material would make layered transition metal oxides a strong candidate for the Na-ion battery cathode.
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