首页> 外国专利> METHOD FOR MANUFACTURING AN AMORPHOUS CARBON COMPOSITE NEGATIVE ELECTRODE MATERIAL FOR A LITHIUM-ION SECONDARY BATTERY, AND AMORPHOUS CARBON COMPOSITED NEGATIVE ELECTRODE MATERIAL MANUFACTURED THEREBY

METHOD FOR MANUFACTURING AN AMORPHOUS CARBON COMPOSITE NEGATIVE ELECTRODE MATERIAL FOR A LITHIUM-ION SECONDARY BATTERY, AND AMORPHOUS CARBON COMPOSITED NEGATIVE ELECTRODE MATERIAL MANUFACTURED THEREBY

机译:用于锂离子二次电池的非晶碳复合负电极材料的制造方法及由此制造的非晶碳复合负电极材料

摘要

The present invention relates to a method for manufacturing an amorphous carbon composite negative electrode material for a lithium-ion secondary battery, and to an amorphous carbon composite negative electrode material manufactured thereby. According to the method for manufacturing the amorphous carbon composite negative electrode material for the lithium-ion secondary battery, an intermetallic compound and a transition metal oxide active material are composited with an amorphous carbon without affecting structural and physical properties by means of low-temperature pyrolysis and heat-treatment processes. The amorphous carbon composite negative electrode material manufactured by the method according to the present invention expands in volume only minimally when coupled to lithium and has superior lithium ion conductivity and electron conductivity. Further, even when the secondary battery is charged and discharged several tens of times, the amorphous carbon composite negative electrode material may have a superior discharge capacity retention rate when compared to that of a conventional amorphous carbon composite negative electrode material for a lithium-ion secondary battery. Further, the method for manufacturing the amorphous carbon composite negative electrode material for the lithium-ion secondary battery may be widely utilized for electrode materials for secondary batteries and for improving physical properties of other nanomaterials.
机译:本发明涉及一种用于锂离子二次电池的非晶碳复合负极材料的制造方法,并涉及由此制造的非晶碳复合负极材料。根据用于锂离子二次电池的非晶碳复合负极材料的制造方法,金属间化合物和过渡金属氧化物活性材料与非晶碳复合,而不会通过低温热解影响结构和物理性能。和热处理工艺。通过根据本发明的方法制造的非晶碳复合负极材料,当与锂偶联时其体积仅最小地膨胀,并且具有优异的锂离子传导性和电子传导性。此外,即使当二次电池充电和放电数十次时,与用于锂离子二次电池的常规非晶碳复合负极材料相比,非晶碳复合负极材料也可以具有优异的放电容量保持率。电池。此外,用于锂离子二次电池的无定形碳复合负极材料的制造方法可广泛用于二次电池的电极材料和用于改善其他纳米材料的物理性质。

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