Carbon- and Binder-Free NiCo2O4 Nanoneedle Array Electrode for Sodium-Ion Batteries: Electrochemical Performance and Insight into Sodium Storage Reaction

被引:22
|
作者
Lee, Jong-Won [1 ,2 ]
Shin, Hyun-Sup [3 ,4 ]
Lee, Chan-Woo [3 ]
Jung, Kyu-Nam [3 ]
机构
[1] Korea Inst Energy Res, New & Renewable Energy Res Div, 152 Gajeong Ro, Daejeon 34129, South Korea
[2] Korea Univ Sci & Technol, Dept Adv Energy & Technol, 217 Gajeong Ro, Daejeon 34113, South Korea
[3] Korea Inst Energy Res, Energy Efficiency Res Div, 152 Gajeong Ro, Daejeon 34129, South Korea
[4] Yonsei Univ, Dept Chem & Biomol Engn, 50 Yonsei Ro, Seoul 03722, South Korea
来源
NANOSCALE RESEARCH LETTERS | 2016年 / 11卷
关键词
Sodium-ion battery; Nickel-cobalt oxide; Nanoneedle array; Sodium storage; Conversion reaction; LITHIUM-ION; NEGATIVE-ELECTRODE; ANODE MATERIAL; FACILE SYNTHESIS; NANOWIRE ARRAYS; HIGH-CAPACITY; LOW-COST; OXIDE; LI; MICROSPHERES;
D O I
10.1186/s11671-016-1271-6
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Sodium (Na)-ion batteries (NIBs) have attracted significant interest as an alternative chemistry to lithium (Li)-ion batteries for large-scale stationary energy storage systems. Discovering high-performance anode materials is a great challenge for the commercial success of NIB technology. Transition metal oxides with tailored nanoarchitectures have been considered as promising anodes for NIBs due to their high capacity. Here, we demonstrate the fabrication of a nanostructured oxide-only electrode, i.e., carbon-and binder-free NiCo2O4 nanoneedle array (NCO-NNA), and its feasibility as an anode for NIBs. Furthermore, we provide an in-depth experimental study of the Na storage reaction (sodiation and desodiation) in NCO-NNA. The NCO-NNA electrode is fabricated on a conducting substrate by a hydrothermal method with subsequent heat treatment. When tested in an electrochemical Na half-cell, the NCO-NNA electrode exhibits excellent Na storage capability: a charge capacity as high as 400 mAh g(-1) is achieved at a current density of 50 mA g(-1). It also shows a greatly improved cycle life (similar to 215 mAh g(-1) after 50 cycles) in comparison to a conventional powder-type electrode (similar to 30 mAh g(-1)). However, the Na storage performance is still inferior to that of Li, which is mainly due to sluggish kinetics of sodiation-desodiation accompanied by severe volume change.
引用
收藏
页码:1 / 9
页数:9
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