Ultrasmall MnO Nanoparticles Supported on Nitrogen-Doped Carbon Nanotubes as Efficient Anode Materials for Sodium Ion Batteries

被引:68
作者
He, Yanzhen [1 ]
Xu, Ping [1 ]
Zhang, Bin [1 ]
Du, Yunchen [1 ]
Song, Bo [2 ]
Han, Xijiang [1 ]
Peng, Huisheng [3 ,4 ]
机构
[1] Harbin Inst Technol, Sch Chem & Chem Engn, MIIT Key Lab Crit Mat Technol New Energy Convers, Harbin 150001, Heilongjiang, Peoples R China
[2] Harbin Inst Technol, Dept Phys, Acad Fundamental & Interdisciplinary Sci, Harbin 150001, Heilongjiang, Peoples R China
[3] Fudan Univ, Dept Macromol Sci, State Key Lab Mol Engn Polymers, Shanghai 200438, Peoples R China
[4] Fudan Univ, Lab Adv Mat, Shanghai 200438, Peoples R China
基金
中国国家自然科学基金; 中国博士后科学基金;
关键词
Sodium ion battery; anode; electrode reactions; MnO nanoparticle; nitrogen-doped carbon nanotube; HIGH-PERFORMANCE ANODE; OXYGEN REDUCTION; POROUS CARBON; HIGH-CAPACITY; FACILE FABRICATION; LITHIUM; GRAPHENE; COMPOSITE; ELECTROCATALYSTS; NANOFIBERS;
D O I
10.1021/acsami.7b09559
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Sodium ion batteries (SIBs) have attracted increasing attentions as promising alternatives to lithium ion batteries (LIBs). Herein, we design and synthesize ultrasmall MnO nanoparticles (similar to 4 nm) supported on nitrogen doped carbon nanotubes (NDCT@MnO) as promising anode materials of SIBs. It is revealed that the carbonization temperature can greatly influence the structural features and thus the Na-storage behavior of the NDCT@MnO nanocomposites. The synergetic interaction between MnO and NDCT in the NDCT@MnO nanocomposites provides high rate capability and long-term to cycling life due to high surface area, electrical conductivity, enhanced diffusion rate of Na+ ions, and prevented agglomeration and high stability of MnO nanoparticles. The resulting SIBs provide a high reversible specific capacity of 709 mAh g(-1) at a current density of 0.1 A g(-1) and a high capacity of 536 mAh almost without loss after 250 cycles at 0.2 A g(-1). Even at a high current density of 5 A g(-1), a capacity of 273 mAh g(-1) can be maintained after 3000 cycles.
引用
收藏
页码:38401 / 38408
页数:8
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