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公开(公告)号:KR101261989B1
公开(公告)日:2013-05-08
申请号:KR1020110081921
申请日:2011-08-17
Applicant: 현대자동차주식회사 , 서울대학교산학협력단
IPC: H01M4/583 , H01M10/052 , C01B31/02 , H01M4/139
Abstract: 본발명은리튬전지용음극재료의제조방법에관한것으로, 보다구체적으로는아크릴로니트릴계공중합체, 금속또는금속산화물또는금속황화물, 용매를 혼합한용액또는용융상태의혼합물을일정한유속으로공급하여전압을가하여코어/쉘복합체가형성되고, 열처리하여탄화시키는과정을포함한다. 이에본 발명의제조과정은종래발명에비하여공정이간소하여나노음극재의대량생산에적합하며, 동일한모노머인아크릴로니트릴계공중합체를함유하는코어와쉘을채택하여이질감을최소화하여균일한방사성의극대화가가능하다. 또한, 열적안정성이뛰어나금속/금속산화물/금속황화물물질의부피변화에의한분쇄에도안정적인거동이유지가능하며, 전기방사변수(유량, 코어와쉘의농도)를조절하여튜브구명의크기와벽 두께의조절이가능하다.
Abstract translation: 目的:提供一种负极材料的制造方法,其适于大量生产纳米负极材料,并且通过具有包含丙烯腈基共聚物的芯和壳来最大化均匀辐射。 构成:二次电池用负极材料的制造方法包括以下步骤:将20〜45重量%的丙烯腈系共聚物作为芯材,10〜40重量%的丙烯腈共聚物,不同于 核心材料,1-35重量%的金属或金属氧化物或金属硫化物,和30-65重量%的熔融状态的溶液混合物; 通过向混合物施加电压形成核/壳复合材料的步骤; 以及通过在700-3000℃下热处理来对核/壳复合材料进行碳化和石墨化的步骤。
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公开(公告)号:KR1020130019761A
公开(公告)日:2013-02-27
申请号:KR1020110081921
申请日:2011-08-17
Applicant: 현대자동차주식회사 , 서울대학교산학협력단
IPC: H01M4/583 , H01M10/052 , C01B31/02 , H01M4/139
CPC classification number: H01M4/583 , H01M4/139 , H01M10/052 , H01M2004/027
Abstract: PURPOSE: A manufacturing method of a negative electrode material for is provided to be suitable for a mass production of a nano negative electrode material and to maximize uniform radiation by having a core and shell which contain an acrylonitrile-based copolymer. CONSTITUTION: A manufacturing method of a negative electrode material for secondary batteries comprises: a step of feeding 20-45 weight% of an acrylonitrile-based copolymer as a core material, 10-40 weight% of an acrylonitrile copolymer which is not the same as the core material, 1-35 weight% of a metal or metal oxide or metal sulfide, and 30-65 weight% of a solution mixture in a melt state; a step of forming a core/shell composite by applying voltage to the mixture; and a step of carbonizing and graphitizing the core/shell composite by heat-treating at 700-3000 °C.
Abstract translation: 目的:提供一种负极材料的制造方法,其适于大量生产纳米负极材料,并且通过具有包含丙烯腈基共聚物的芯和壳来最大化均匀辐射。 构成:二次电池用负极材料的制造方法包括以下步骤:将20〜45重量%的丙烯腈系共聚物作为芯材,10〜40重量%的丙烯腈共聚物,不同于 核心材料,1-35重量%的金属或金属氧化物或金属硫化物,和30-65重量%的熔融状态的溶液混合物; 通过向混合物施加电压形成核/壳复合材料的步骤; 以及通过在700-3000℃下热处理来对核/壳复合材料进行碳化和石墨化的步骤。
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