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以高富锂Li_2NiO_2/活性炭为正极的锂离子电容器电化学性能研究 被引量:1
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作者 杨斌 傅冠生 +3 位作者 丁升 王成扬 阮殿波 刘秋香 《储能科学与技术》 CAS CSCD 2018年第2期117-122,共6页
兼具锂离子电池高能量密度和双电层电容器高功率特性的锂离子电容器成为了现今超级电容器性能提升的重点发展方向。本工作以高富锂金属氧化物Li_2NiO_2为锂离子电容器用负极锂源,将其与活性物复合组成正极电极,并制备出"无金属锂片... 兼具锂离子电池高能量密度和双电层电容器高功率特性的锂离子电容器成为了现今超级电容器性能提升的重点发展方向。本工作以高富锂金属氧化物Li_2NiO_2为锂离子电容器用负极锂源,将其与活性物复合组成正极电极,并制备出"无金属锂片"预嵌锂过程的300 F锂离子电容器,考察了金属氧化物Li_2NiO_2的理化性能与电化学特性、不同Li_2NiO_2添加量对锂离子电容器样品的电化学性能影响。结果表明,Li_2NiO_2材料具有398m A·h/g的首次不可逆容量,首次放电不可逆率为94.8%。添加15%~20%Li_2NiO_2的样品在10 A电流下具有大于75%倍率特性以及91%的容量保持率。当Li_2NiO_2添加量为20%时,样品在1 A条件下具有400 F的容量,15.5W·h/kg的能量密度以及11.3 k W/kg的功率密度,是一种制备工艺简单、性能优异的新型锂离子电容器。 展开更多
关键词 离子电容器 高富金属氧化物 活性炭 嵌锂量
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The electrochemical performance of super P carbon black in reversible Li/Na ion uptake 被引量:1
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作者 Bo Peng Yaolin Xu +2 位作者 Xiaoqun Wang Xinghua Shi Fokko M. Mulder 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2017年第6期53-60,共8页
Super P carbon black (SPCB) has been widely used as a conducting additive in Li/Na ion batteries to improve the electronic conductivity. However, there has not yet been a comprehensive study on its structure and elect... Super P carbon black (SPCB) has been widely used as a conducting additive in Li/Na ion batteries to improve the electronic conductivity. However, there has not yet been a comprehensive study on its structure and electrochemical properties for Li/Na ion uptake, though it is important to characterize its contribution in any study of active materials that uses this additive in non-negligible amounts. In this article the structure of SPCB has been characterized and a comprehensive study on the electrochemical Li/Na ion uptake capability and reaction mechanisms are reported. SPCB exhibits a considerable lithiation capacity (up to 310 mAh g^(–1)) from the Li ion intercalation in the graphite structure. Sodiation in SPCB undergoes two stages: Na ion intercalation into the layers between the graphene sheets and the Na plating in the pores between the nano-graphitic domains, and a sodiation capacity up to 145 mAh g^(–1) has been achieved. Moreover, the influence of the type and content of binders on the lithiation and sodiation properties has been investigated. The cycling stability is much enhanced with sodium carboxymethyl cellulose (NaCMC) binder in the electrode and fluoroethylene carbonate (FEC) in the electrolyte; and a higher content of binder improves the Coulombic efficiency during dis-/charge. 展开更多
关键词 super P carbon black Li ion batteries Na ion batteries
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