首页> 外文期刊>Solid state ionics >SYNTHESIS AND ELECTROCHEMICAL STUDIES OF SPINEL LI1.03MN2O4 CATHODE MATERIALS PREPARED BY A SOL-GEL METHOD FOR LITHIUM SECONDARY BATTERIES
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SYNTHESIS AND ELECTROCHEMICAL STUDIES OF SPINEL LI1.03MN2O4 CATHODE MATERIALS PREPARED BY A SOL-GEL METHOD FOR LITHIUM SECONDARY BATTERIES

机译:溶胶-凝胶法制备锂二次电池尖晶石Li1.03MN2O4正极材料的合成与电化学研究

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The spinel Li1.03Mn2O4 powders having submicron, narrow particle-size distribution, and excellent phase-pure particles have been synthesized at low temperatures from aqueous solution of metal acetate containing glycolic acid as a chelating agent by a sol-gel method. The dependence of the physicochemical properties of the spinel Li1.03Mn2O4 powders on the various calcination temperatures and glycolic acid quantity have been extensively studied. It was found that the physicochemical properties of the Li1.03Mn2O4 powders could be controlled by simply varying the pyrolysis processing and chelating agent quantity. The glycolic acid-assisted Li1.03Mn2O4 powders have shown excellent rechargeability and delivered discharge capacity of 134 mAh/g for more than 90 cycles in Li/polymer electrolyte/Li1.03Mn2O4 cells cycled between 3.0 and 4.3 V. The Li1.03Mn2O4 powders in Li/1 M LiBF4-EC/DEC electrolyte/Li1.03Mn2O4 cells cycled between 3.6 and 4.3 V retained 94% of its initial capacity over the 100th cycle. [References: 25]
机译:已经通过溶胶-凝胶法从含有乙醇酸作为螯合剂的金属乙酸盐的水溶液在低温下合成了具有亚微米,窄粒度分布和优异的纯相颗粒的尖晶石Li1.03Mn2O4粉末。尖晶石Li1.03Mn2O4粉末的物理化学性质对各种煅烧温度和乙醇酸量的依赖性已得到广泛研究。发现通过简单地改变热解过程和螯合剂的量可以控制Li1.03Mn2O4粉末的理化性质。乙醇酸辅助的Li1.03Mn2O4粉末在锂/聚合物电解质/Li1.03Mn2O4电池在3.0至4.3 V之间循环的90多个循环中显示出优异的可充电性和134 mAh / g的放电容量。Li1.03Mn2O4粉末在在第100次循环中,在3.6至4.3 V之间循环的Li / 1 M LiBF4-EC / DEC电解质/Li1.03Mn2O4电池保留了其初始容量的94%。 [参考:25]

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