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    • 3. 发明授权
    • Capacitor with a composite carbon foam electrode
    • 电容器用复合碳泡沫电极
    • US5898564A
    • 1999-04-27
    • US760852
    • 1996-12-02
    • Steven T. MayerRichard W. PekalaJames L. Kaschmitter
    • Steven T. MayerRichard W. PekalaJames L. Kaschmitter
    • H01B1/04H01G9/04
    • H01G11/24H01G11/30H01G11/34H01G11/42H01G11/46Y02E60/13
    • Carbon aerogels used as a binder for granularized materials, including other forms of carbon and metal additives, are cast onto carbon or metal fiber substrates to form composite carbon thin film sheets. The thin film sheets are utilized in electrochemical energy storage applications, such as electrochemical double layer capacitors (aerocapacitors), lithium based battery insertion electrodes, fuel cell electrodes, and electrocapacitive deionization electrodes. The composite carbon foam may be formed by prior known processes, but with the solid partides being added during the liquid phase of the process, i.e. prior to gelation. The other forms of carbon may include carbon microspheres, carbon powder, carbon aerogel powder or particles, graphite carbons. Metal and/or carbon fibers may be added for increased conductivity. The choice of materials and fibers will depend on the electrolyte used and the relative trade off of system resistivity and power to system energy.
    • 用作颗粒状材料(包括其他形式的碳和金属添加剂)的粘合剂的碳气凝胶被浇铸到碳或金属纤维基材上以形成复合碳薄膜片。 薄膜片用于电化学储能应用,例如电化学双层电容器(aerocapacitors),锂基电池插入电极,燃料电池电极和电容去离子电极。 复合碳泡沫可以通过先前已知的方法形成,但是在该方法的液相期间,即在凝胶化之前加入固体成分。 碳的其他形式可以包括碳微球,碳粉,碳气凝胶粉或石墨碳。 可以加入金属和/或碳纤维以增加导电性。 材料和纤维的选择将取决于所使用的电解质和系统电阻率和功率对系统能量的相对折衷。
    • 10. 发明授权
    • Method for fabricating composite carbon foam
    • 复合碳泡沫的制造方法
    • US06332990B1
    • 2001-12-25
    • US09246882
    • 1999-02-08
    • Steven T. MayerRichard W. PekalaJames L. Kaschmitter
    • Steven T. MayerRichard W. PekalaJames L. Kaschmitter
    • H01B104
    • H01G11/24H01G11/30H01G11/34H01G11/42H01G11/46Y02E60/13
    • Carbon aerogels used as a binder for granularized materials, including other forms of carbon and metal additives, are cast onto carbon or metal fiber substrates to form composite carbon thin film sheets. The thin film sheets are utilized in electrochemical energy storage applications, such as electrochemical double layer capacitors (aerocapacitors), lithium based battery insertion electrodes, fuel cell electrodes, and electrocapacitive deionization electrodes. The composite carbon foam may be formed by prior known processes, but with the solid particles being added during the liquid phase of the process, i.e. prior to gelation. The other forms of carbon may include carbon microspheres, carbon powder, carbon aerogel powder or particles, graphite carbons. Metal and/or carbon fibers may be added for increased conductivity. The choice of materials and fibers will depend on the electrolyte used and the relative trade off of system resistivity and power to system energy.
    • 用作颗粒状材料(包括其他形式的碳和金属添加剂)的粘合剂的碳气凝胶被浇铸到碳或金属纤维基材上以形成复合碳薄膜片。 薄膜片用于电化学储能应用,例如电化学双层电容器(aerocapacitors),锂基电池插入电极,燃料电池电极和电容去离子电极。 复合碳泡沫可以通过先前已知的方法形成,但是在该方法的液相期间,即在凝胶化之前,固体颗粒被加入。 碳的其他形式可以包括碳微球,碳粉,碳气凝胶粉或石墨碳。 可以加入金属和/或碳纤维以增加导电性。 材料和纤维的选择将取决于所使用的电解质和系统电阻率和功率对系统能量的相对折衷。