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Anode for sodium-ion and potassium-ion batteries

机译:钠离子和钾离子电池的阳极

摘要

A first method for fabricating an anode for use in sodium-ion and potassium-ion batteries includes mixing a conductive carbon material having a low surface area, a hard carbon material, and a binder material. A carbon-composite material is thus formed and coated on a conductive substrate. A second method for fabricating an anode for use in sodium-ion and potassium-ion batteries mixes a metal-containing material, a hard carbon material, and binder material. A carbon-composite material is thus formed and coated on a conductive substrate. A third method for fabricating an anode for use in sodium-ion and potassium-ion batteries provides a hard carbon material having a pyrolyzed polymer coating that is mixed with a binder material to form a carbon-composite material, which is coated on a conductive substrate. Descriptions of the anodes and batteries formed by the above-described methods are also provided.
机译:制造用于钠离子和钾离子电池的阳极的第一种方法包括混合具有低表面积的导电碳材料,硬碳材料和粘合剂材料。由此形成碳复合材料,并将其涂覆在导电基板上。制造用于钠离子和钾离子电池的阳极的第二种方法是将含金属的材料,硬碳材料和粘合剂材料混合在一起。由此形成碳复合材料,并将其涂覆在导电基板上。制造用于钠离子和钾离子电池的阳极的第三种方法是提供一种具有热解聚合物涂层的硬碳材料,该涂层与粘合剂材料混合形成碳复合材料,并涂覆在导电基材上。还提供了通过上述方法形成的阳极和电池的描述。

著录项

  • 公开/公告号US9742027B2

    专利类型

  • 公开/公告日2017-08-22

    原文格式PDF

  • 申请/专利权人 SHARP LABORATORIES OF AMERICA INC.;

    申请/专利号US201514656808

  • 申请日2015-03-13

  • 分类号H01M4/58;H01M10/054;H01M4/04;H01M4/1393;H01M4/62;H01M4/131;H01M4/133;H01M4/1391;H01M4/36;H01M4/38;H01M4/48;H01M4/587;C01C3/11;H01M4/02;

  • 国家 US

  • 入库时间 2022-08-21 13:45:06

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