详细信息
锂离子电池负极材料用针状焦的石墨化机理及其储锂行为 ( SCI-EXPANDED收录 EI收录)
Graphitization Mechanisms and Electrochemical Performance of Needle Coke Anode for Li-ion Battery
文献类型:期刊文献
中文题名:锂离子电池负极材料用针状焦的石墨化机理及其储锂行为
英文题名:Graphitization Mechanisms and Electrochemical Performance of Needle Coke Anode for Li-ion Battery
作者:王邓军[1];王艳莉[1];詹亮[1];张秀云[2];刘春法[2];乔文明[1];凌立成[1]
机构:[1]华东理工大学化学工程联合国家重点实验室,上海200237;[2]上海宝钢化工有限公司,上海201900
年份:2011
卷号:26
期号:6
起止页码:619
中文期刊名:无机材料学报
外文期刊名:Journal of Inorganic Materials
收录:CSTPCD;;EI(收录号:20112814137717);Scopus;WOS:【SCI-EXPANDED(收录号:WOS:000292534400010)】;北大核心:【北大核心2008】;CSCD:【CSCD2011_2012】;
基金:National Natural Science Foundation of China (50730003, 50672025, 20806024, 51002051); China 863 Program (2008AA062302); Fundamental Research Funds for the Central Universities (WA1014016)
语种:中文
中文关键词:针状焦;负极材料;锂离子电池;石墨化
外文关键词:needle coke; anode material; lithium ion battery; graphitization
摘要:通过考察煤系针状焦在700~2800℃热处理过程中石墨微晶结构的变化规律及其电化学性能,并结合TG-DTG、XRD、SEM、XPS表征方法以及充放电、循环伏安曲线特征,分析了针状焦的石墨化机理及其储锂机制.研究结果表明,随热处理温度的升高,针状焦的类石墨微晶在不断长大的同时,还存在微晶在径/轴向的排列、石墨层间位错线的消失、晶界间C-C六圆环的形成、晶界的消失以及石墨层"褶皱"的平面化等复杂过程,且每个过程的驱动力不同.针状焦经过2800℃石墨化后,可获得较低的Li+充放电电位和稳定的充放电平台,且反复充放电40次后的有效嵌锂容量为305mAh/g.
Effects of heat-treatment temperature on the microstructure and electrochemical properties of coal based nee-dle coke were investigated by TG-DTG,XRD,SEM,XPS analysis and the charge/discharge,cyclic voltammetry curves.The graphitization mechanism of needle coke is suggested as well as the Li+ extraction-insertion behaviors.With the heat-treatment temperature increasing,the graphite-like crystal grows continuously attended with a complicated process,including the arrangement of crystal along radial/axial direction,dislocation dispersion among graphite layers,hexagonal carbon formation,crystal edge dispersion and folded graphite layer turning to plane.Meanwhile,the driving-forces are far different for different process.When needle coke is graphitized at 2800℃,it exhibits a lower charge/discharge potential and stable charge/discharge platform,and the insertion capacitance of Li+ can maintain at 305mAh/g even after charge/discharged for 40 cycles.
参考文献:
正在载入数据...
