英语翻译4.ConclusionA sol–gel,spray-drying method was used to prepareLiMn2O4 powder.Via DTA,TGA,IR,XRD and SEManalysis,it was shown that the structure and morphologyof LiMn2O4 powder were strongly affected by thespray speed and the heat treatme

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英语翻译4.ConclusionA sol–gel,spray-drying method was used to prepareLiMn2O4 powder.Via DTA,TGA,IR,XRD and SEManalysis,it was shown that the structure and morphologyof LiMn2O4 powder were strongly affected by thespray speed and the heat treatme
英语翻译
4.Conclusion
A sol–gel,spray-drying method was used to prepare
LiMn2O4 powder.Via DTA,TGA,IR,XRD and SEM
analysis,it was shown that the structure and morphology
of LiMn2O4 powder were strongly affected by the
spray speed and the heat treatment temperature.A
submicro-sized LiMn2O4 powder can be produced using
a rotating spray speed of 15000 rpm and temperature of
700 \1C.The material has an initial capacity of
128 mAh g)1 and good cycling ability in 1 M LiPF6,EC:DMC ¼ 1:1 solution for the Li+ intercalation
reaction.The method may be used on an industrialscale
to produce submicro-sized LiMn2O4 powder for
lithium ion batteries.

英语翻译4.ConclusionA sol–gel,spray-drying method was used to prepareLiMn2O4 powder.Via DTA,TGA,IR,XRD and SEManalysis,it was shown that the structure and morphologyof LiMn2O4 powder were strongly affected by thespray speed and the heat treatme
4 .结论
溶胶凝胶法,喷雾干燥法是用来准备
锂锰氧化物粉末.通过差热分析,热重分析,红外光谱, X射线衍射和扫描电镜
分析,结果表明,结构和形貌
对LiMn2O4粉末的强烈影响,
喷雾速度和热处理温度.字母a
亚微米大小的锰酸锂粉末能利用
旋转喷雾15000转的速度和温度
700角该材料的初始能力
128 545克) 1和良好的循环能力的1海里LiPF6 ,欧共体:松下6.3 1:1解决锂离子插
反应.该方法可用于对industrialscale
生产亚微米大小的锂锰氧化物粉末
锂离子电池.