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    • 2. 发明授权
    • Metal oxide electrochemical pseudocapacitor having conducting polymer coated electrodes
    • 具有导电聚合物涂覆电极的金属氧化物电化学假电容器
    • US06510042B1
    • 2003-01-21
    • US09963650
    • 2001-09-27
    • Hee-Young LeeHeui-Soo KimSun-Wook Kim
    • Hee-Young LeeHeui-Soo KimSun-Wook Kim
    • H01G900
    • H01G9/042
    • Disclosed are a conducting polymer coated electrode of a metal oxide electrochemical pseudocapacitor having an improved performance and a method of manufacturing the same. The electrode includes a current collector and an active material coated on the current collector. The active material includes metal oxide and is coated with a conducting polymer on a surface thereof. Metal oxide electrochemical pseudocapacitor includes a plurality of electrodes described above, an electrolyte and a separator positioned between the electrodes to prevent a contact between the electrodes. The metal oxide pseudocapacitor including the electrode coated with the conducting polymer having a high electric conductivity, has an increased storing amount of electric energy and a decreased ESR to improve a high power performance.
    • 公开了具有改进性能的金属氧化物电化学假电容器的导电聚合物涂覆电极及其制造方法。 电极包括集电器和涂覆在集电器上的活性材料。 活性材料包括金属氧化物,并在其表面上涂覆有导电聚合物。 金属氧化物电化学假电容器包括上述多个电极,位于电极之间的电解质和隔膜以防止电极之间的接触。 包括具有高导电性的导电聚合物的电极的金属氧化物假电容器具有增加的电能存储量和降低的ESR以改善高功率性能。
    • 5. 发明申请
    • Electric energy storage system
    • 电力储能系统
    • US20050105247A1
    • 2005-05-19
    • US10497955
    • 2002-02-28
    • Hee-Young LeeHa-Young LeeHeui-Soo Kim
    • Hee-Young LeeHa-Young LeeHeui-Soo Kim
    • H01G9/00H01M4/131H01M4/48H01M4/485H01M4/50H01M4/505H01M4/52H01M4/525H01M10/04H01M10/0568
    • H01M10/0568H01G9/155H01M4/131H01M4/485H01M4/505H01M4/525H01M12/005Y02E60/13
    • An electric energy storage system having a novel structure which exhibits a ling cycle life, rapid charging-discharging characteristics and a high energy density. The electric energy storage system comprises: an anode comprised of a first material that performs interalation-deintercalation of cation as an anode active material; a cathode comprised of a second material that may form an electric doublelayer with anion as a cathode active materials; and a electrolyte including lithium salt, the electrolyte including the cation and anion. Due to a high difference between anode and cathode in capacity to store the electric energy, most electrochemical impact that occurs in the process of intercalation-deintercalation of electric energy is absorbed into cathode and active material used for anode is activated carbon having a very high resistance to electrochemical and structural impact, so that its operation life is elongated and it has rapid charging-discharging characteristics. The electric energy storage system can complement the defects of a conventional technology.
    • 一种具有新型结构的电能存储系统,其具有循环寿命,快速充电 - 放电特性和高能量密度。 电能存储系统包括:由作为阳极活性材料进行阳离子的隔离 - 脱嵌的第一材料构成的阳极; 由阴极作为阴极活性材料形成双电层的第二材料构成的阴极; 和包含锂盐的电解质,所述电解质包括阳离子和阴离子。 由于存储电能的阳极和阴极之间存在高的差异,在电能的插入 - 脱嵌过程中发生的大多数电化学冲击被吸收到阴极中,用于阳极的活性材料是具有非常高电阻的活性炭 电化学和结构冲击,使其使用寿命延长,并具有快速的充放电特性。 电能存储系统可以弥补传统技术的缺陷。
    • 8. 发明授权
    • Electric double layer capacitor with non-woven fiber separator
    • 双层电容器,无纺布纤维分离器
    • US08351183B2
    • 2013-01-08
    • US12392266
    • 2009-02-25
    • Jin-A KangHeui-Soo KimHa-Young LeeJong-Suk ParkJun-Ho Kim
    • Jin-A KangHeui-Soo KimHa-Young LeeJong-Suk ParkJun-Ho Kim
    • H01G9/00
    • H01G9/02H01G9/155Y02E60/13Y02T10/7022
    • An energy storage device includes positive and negative electrodes; positive and negative lead wires connected to the positive and negative electrodes, respectively; a separator composed of unit fibers and positioned between the positive and negative electrodes to electrically insulate the positive and negative electrodes from each other; a housing accommodating the positive and negative electrodes and the separator; an electrolyte received in the housing; and positive and negative terminals connected to the positive and negative lead wires, respectively, wherein an electrolyte permeability index of the separator is larger than an electrolyte permeability index of the electrodes, and the unit fibers of the separator are arranged irregularly so that pores formed in the separator have cross sections of polygonal shapes. Using this energy storage device, the electrolyte of electrodes that gives a direct influence on electric capacity is not depleted. Also, stress failure of the separator may be prevented effectively.
    • 储能装置包括正极和负极; 分别连接正极和负极的正极和负极引线; 由单位纤维构成的隔离层,位于正极和负极之间,使正极和负极彼此电绝缘; 容纳正极和负极和隔板的壳体; 容纳在壳体中的电解质; 以及分别与正极和负极引线相连接的正极和负极,其中隔膜的电解液渗透率指数大于电极的电解液渗透指数,并且隔板的单位纤维不规则地排列, 分离器具有多边形形状的横截面。 使用这种能量存储装置,直接影响电容的电极的电解质不会耗尽。 此外,可以有效地防止隔板的应力破坏。
    • 9. 发明申请
    • ENERGY STORAGE DEVICE
    • 能源储存装置
    • US20090225495A1
    • 2009-09-10
    • US12392266
    • 2009-02-25
    • Jin-A KangHeui-Soo KimHa-Young LeeJong-Suk ParkJun-Ho Kim
    • Jin-A KangHeui-Soo KimHa-Young LeeJong-Suk ParkJun-Ho Kim
    • H01G9/155
    • H01G9/02H01G9/155Y02E60/13Y02T10/7022
    • An energy storage device includes positive and negative electrodes; positive and negative lead wires connected to the positive and negative electrodes, respectively; a separator composed of unit fibers and positioned between the positive and negative electrodes to electrically insulate the positive and negative electrodes from each other; a housing accommodating the positive and negative electrodes and the separator; an electrolyte received in the housing; and positive and negative terminals connected to the positive and negative lead wires, respectively, wherein an electrolyte permeability index of the separator is larger than an electrolyte permeability index of the electrodes, and the unit fibers of the separator are arranged irregularly so that pores formed in the separator have cross sections of polygonal shapes. Using this energy storage device, the electrolyte of electrodes that gives a direct influence on electric capacity is not depleted. Also, stress failure of the separator may be prevented effectively.
    • 储能装置包括正极和负极; 分别连接正极和负极的正极和负极引线; 由单位纤维构成的隔离层,位于正极和负极之间,使正极和负极彼此电绝缘; 容纳正极和负极和隔板的壳体; 容纳在壳体中的电解质; 以及分别与正极和负极引线相连接的正极和负极,其中隔膜的电解液渗透率指数大于电极的电解液渗透指数,并且隔板的单位纤维不规则地排列, 分离器具有多边形形状的横截面。 使用这种能量存储装置,直接影响电容的电极的电解质不会耗尽。 此外,可以有效地防止隔板的应力破坏。
    • 10. 发明授权
    • Manufacturing method for a metal oxide electrode for supercapacitor
    • 超级电容器用金属氧化物电极的制造方法
    • US06616875B2
    • 2003-09-09
    • US09971652
    • 2001-10-09
    • Hee-young LeeHeui-soo KimWoo-kyeong SeongSun-wook Kim
    • Hee-young LeeHeui-soo KimWoo-kyeong SeongSun-wook Kim
    • B29C7088
    • H01G9/155H01G11/04Y02E60/13
    • A metal oxide electrode for a supercapacitor and a manufacturing method thereof are disclosed. Potassium permanganate is absorbed on a conductive material, such as carbon or activated carbon, and mixed with a solution including manganese acetate so as to form amorphous manganese oxide. Amorphous manganese oxide powder is grounded to a powder which is mixed with binder to form an electrode having a predetermined shape. The electrode reduces equivalent serial resistance and enhances high frequency characteristics since the contact area and the adhesion strength between the manganese oxide and the conductive carbon are improved. Also, the electrode has high capacitance suitable for a supercapacitor, which is manufactured therefrom at a greatly reduced cost.
    • 公开了一种用于超级电容器的金属氧化物电极及其制造方法。 高锰酸钾被吸收在诸如碳或活性炭的导电材料上,并与包含乙酸锰的溶液混合以形成无定形氧化锰。 将无定形氧化锰粉末接地至与粘合剂混合形成具有预定形状的电极的粉末。 由于氧化锰和导电性碳之间的接触面积和粘合强度提高,所以电极降低了等效的串联电阻并提高了高频特性。 此外,电极具有适合于超级电容器的高电容,其由此以大大降低的成本由其制造。