Three-dimensional carbon framework as a promising anode material for high performance sodium ion storage devices
Chen JT(陈江涛); Yan XB(阎兴斌); Wang PY(王培煜); Yang BJ(杨兵军); Zhang GH(张国恒); Zhang L(张莉); Jiao HY(焦海燕)
刊名Chemical Engineering Journal
2018-05
卷号353期号:0页码:453
关键词Carbon Framework Sodium Ion Battery Hybrid Capacitor Anode Material
英文摘要

This paper presents a way to prepare three-dimensional carbon framework (3DCF) anode material for sodium ion
batteries (SIBs) and hybrid capacitors (SIHCs). Based on ethanol/sodium hydroxide electrolyte, 3DCFs are
synthesized by electrolysis combined with subsequent calcination process. The obtained 3DCFs have the unique
structure with interconnected, porous structure and defective features, which facilitates the sodium ion storage.
When used as anode material for SIBs, 3DCFs display high specific capacity and rate capability, and excellent long-term cyclability. We have also assembled the SIHC devices by employing the 3DCFs as anode and sodium alginate derived activated carbon (SDAC) as cathode, the optimal 3DCFs//SDAC devices display high energy density of 133.2 Wh kg−1 and high power output of 20.0 kW kg−1 within the voltage window of 0–4.0 V, as well as long-term cycling life for 4000 cycles. This work provides opens up opportunities for fabricating novel nanostructured electrode material and constructing high performance sodium ion storage devices.

内容类型期刊论文
源URL[http://210.77.64.217/handle/362003/24902]  
专题兰州化学物理研究所_清洁能源化学与材料实验室
通讯作者Chen JT(陈江涛)
作者单位清洁能源化学与材料实验室
推荐引用方式
GB/T 7714
Chen JT,Yan XB,Wang PY,et al. Three-dimensional carbon framework as a promising anode material for high performance sodium ion storage devices[J]. Chemical Engineering Journal,2018,353(0):453.
APA Chen JT.,Yan XB.,Wang PY.,Yang BJ.,Zhang GH.,...&Jiao HY.(2018).Three-dimensional carbon framework as a promising anode material for high performance sodium ion storage devices.Chemical Engineering Journal,353(0),453.
MLA Chen JT,et al."Three-dimensional carbon framework as a promising anode material for high performance sodium ion storage devices".Chemical Engineering Journal 353.0(2018):453.
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