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Y^(3+)对LiMn_2O_4的结构和电化学性能的影响 被引量:6
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作者 徐茶清 田彦文 +1 位作者 刘丽英 翟玉春 《中国稀土学报》 CAS CSCD 北大核心 2005年第4期459-463,共5页
以Li2CO3、电解MnO2和Y2O3为原料,采用固相法合成了Li1.02YxMn2-xO4(x=0,0.005,0.01,0.02,0.04,0.1)。XRD测试表明,不同Y3+掺杂量的Li1.02YxMn2-xO4晶型发育良好。Y3+的加入使Li1.02YxMn2-xO4晶格常数和晶胞体积变小。循环伏安测试结果... 以Li2CO3、电解MnO2和Y2O3为原料,采用固相法合成了Li1.02YxMn2-xO4(x=0,0.005,0.01,0.02,0.04,0.1)。XRD测试表明,不同Y3+掺杂量的Li1.02YxMn2-xO4晶型发育良好。Y3+的加入使Li1.02YxMn2-xO4晶格常数和晶胞体积变小。循环伏安测试结果表明,少量Y3+的加入没有改变锂离子脱嵌过程,但随着掺杂量的增加,锂离子脱嵌过程趋于容易,能有效地避免能级分裂。电化学性能测试表明,当掺杂量x=0.02时,初始容量为117.2mAh.g-1,20次循环容量衰减至113.6mAh.g-1,容量保持率为96.90%;Y3+的加入很好地起到了稳定晶体结构,有效抑制Jahn-Teller效应的作用。交流阻抗测试结果表明,Y3+的加入能改善材料的导电性能。 展开更多
关键词 锂离子电池 正极材料 li1.02yxmn2-xo4 掺钇 电导率 循环伏安 稀土
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Influence of Y^(3+) on Structure and Electrochemical Property of LiMn_2O_4
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作者 Xu Chaqing Tian Yanwen Liu Liying Zhai Yuchun 《Journal of Rare Earths》 SCIE EI CAS CSCD 2005年第4期469-469,共1页
Li1.02YxMn2-xO4(x = 0, 0. 005, 0.01, 0.02, 0.04, 0. 1) were prepared by solid state reaction method with raw materials Li2CO3, electrolytic MnO2 and Y2O3. Li1.02YxMn2-x O4 with different Y^3+ contents have good cry... Li1.02YxMn2-xO4(x = 0, 0. 005, 0.01, 0.02, 0.04, 0. 1) were prepared by solid state reaction method with raw materials Li2CO3, electrolytic MnO2 and Y2O3. Li1.02YxMn2-x O4 with different Y^3+ contents have good crystal structure, Y^3+ doping makes the lattice parameter and crystal volume small. Cyclic vohammogram testing result shows that a small quantity of Y^3+ doping has no influence on the Li^+ deinsertion-insertion process, but Y^3+ doping decreases the interacting force among Li^+ , and then availably avoids the energy level splitting. The electrochemical property testing indicates that the initial discharge ca- pacity at x =0.02 is 117.2 mAh·g^-1 and remains 96.9% with 113.6 mAhg^-1 after 20 cycles, which explains that Y^3+ doping effectively restricts Jahn-Teller effect and stabilizes the crystal structure. AC analysis shows that conductivity of the samples is clearly improved due to Y^3+ doping. 展开更多
关键词 lithium-ion battery li1.02yxmn2-xo4 Y^3+ doping CONDUCTIVITY cyclic voltammogram rare earths
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