材料科学
纳米棒
电化学
阴极
离子
多孔性
化学工程
粒子(生态学)
电极
氧化物
纳米技术
分析化学(期刊)
复合材料
物理化学
冶金
物理
地质学
工程类
化学
海洋学
量子力学
色谱法
作者
Jang‐Yeon Hwang,Seung‐Taek Myung,Chong Seung Yoon,Sung‐Soo Kim,Doron Aurbach,Yang‐Kook Sun
标识
DOI:10.1002/adfm.201603439
摘要
The development of high‐energy and high‐power density sodium‐ion batteries is a great challenge for modern electrochemistry. The main hurdle to wide acceptance of sodium‐ion batteries lies in identifying and developing suitable new electrode materials. This study presents a composition‐graded cathode with average composition Na[Ni 0.61 Co 0.12 Mn 0.27 ]O 2 , which exhibits excellent performance and stability. In addition to the concentration gradients of the transition metal ions, the cathode is composed of spoke‐like nanorods assembled into a spherical superstructure. Individual nanorod particles also possess strong crystallographic texture with respect to the center of the spherical particle. Such morphology allows the spoke‐like nanorods to assemble into a compact structure that minimizes its porosity and maximizes its mechanical strength while facilitating Na + ‐ion transport into the particle interior. Microcompression tests have explicitly verified the mechanical robustness of the composition‐graded cathode and single particle electrochemical measurements have demonstrated the electrochemical stability during Na + ‐ion insertion and extraction at high rates. These structural and morphological features contribute to the delivery of high discharge capacities of 160 mAh (g oxide) −1 at 15 mA g −1 (0.1 C rate) and 130 mAh g −1 at 1500 mA g −1 (10 C rate). The work is a pronounced step forward in the development of new Na ion insertion cathodes with a concentration gradient.
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