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氧气中嵌氧生成LiMn2O4的动力学

Formation Kinetics of LiMn2O4 through Oxygen Inserting in O2

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【作者】 文衍宣周开文薛敏华刘自力

【Author】 WEN Yan-xuan~1, ZHOU Kai-wen~2, Xue Ming-fa~1, Liu Zhi-li~1 (1.School of Chemistry and Chemical Engineer, Guangxi University, Nanning 530004, China;2.Institute of Materials Science, Guangxi University, Nanning 530004, China)

【机构】 广西大学化学化工学院广西大学材料科学研究所广西大学化学化工学院 广西南宁 530004广西南宁 530004广西南宁 530004广西南宁 530004

【摘要】 为了得到氧气中嵌氧生成LiMn2O4的动力学方程,用TG、XRD和H-E积分方程研究氧在其分解产物中的嵌入过程。1373~1243K的嵌氧反应为3LiMnO2+Mn3O4+(1-3δ/2)O2(g)3LiMn2O4-δ(Tetragonal)和LiMn2O4-δ(Tetragonal)+δ/2O2(g)LiMn2O4(Cubic),属生成核生长控制,活化能为-166 330kJ mol。1243~1146K的嵌氧反应为LiMn2O4-δ(Tetragonal)+δ/2O2(g)LiMn2O4(Cubic),属于成核生长控制,活化能为-140 357kJ mol。由H-E积分方程得到的动力学参数与、之间存在明显的动力学补偿效应。

【Abstract】 In order to gain the formation kinetics of LiMn2O4 in O2, a program is taken to study Oxygen inserting into the decomposition of LiMn2O4 during the cooling processes, where TG, XRD and H-E integrated equation is used. The oxygen intercalation reaction occurs in following steps: (1)3LiMnO2+Mn3O4+(1-3δ/2)O2(g)3LiMn2O4-δ(Tetragonal) and LiMn2O4-δ(Tetragonal)+δ/2O2(g)LiMn2O4(Cubic) (1373K~1243K),and LiMn2O4-δ(Tetragonal)+O2(g)LiMn2O4(Cubic) (1243K~1146K). The insertion process from 1373K to 1243K is controlled by nucleating and growing,and its activated energy is -166.330kJ·mol-1. Nucleating and growing is the key step for the reaction from 1243K to 1146K, its activated energy is -140.357kJ·mol-1. The kinetic compensative effects not only exist in Arrhenius equation, but also in Harcourt-Esson equation.

【关键词】 锂离子电池正极材料锰酸锂动力学
【Key words】 Lithium-ion batteriesCathode materialLiMn2O4kinetis
【基金】 广西区教育厅课题 (桂教科研 [2 0 0 3 ]2 2号 )
  • 【文献出处】 中国锰业 ,China’s Manganese Industry , 编辑部邮箱 ,2004年03期
  • 【分类号】O646
  • 【下载频次】151
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