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    • 6. 发明专利
    • Energy storage device
    • 能源储存装置
    • JP2007018890A
    • 2007-01-25
    • JP2005199538
    • 2005-07-08
    • Hitachi Ltd株式会社日立製作所
    • KUMASHIRO YOSHIAKIKOBAYASHI MITSURUOKUMURA SOUBUNARAI JUICHI
    • H01G11/40H01G11/06H01G11/10H01G11/24H01G11/26H01G11/30H01G11/38H01G11/42H01G11/46H01G11/56H01G11/62H01G11/86H01M2/16H01M2/20H01M4/02H01M4/36H01M10/05H01M10/052H01M10/0525H01M10/0565H01M10/0568
    • Y02T10/7011
    • PROBLEM TO BE SOLVED: To provide an energy storage device which ensures a long lifetime and excellent output characteristics in the range from low temperature to normal temperature.
      SOLUTION: The energy storage device has two regions different in the reactive mechanism. The regions comprise a positive electrode Faraday layer exhibiting the faradaic reaction wherein the oxidation state of an active material is mainly changed and the electrical charge is moved into inside of the active material, and a positive electrode non-Faraday layer exhibiting the non-faradaic reaction wherein the electrical charge is mainly stored/released by physically absorbing/desorbing ions to/from the surface of the active material. These regions provide the positive electrode wherein the positive electrode non-Faraday layer is attached on a positive electrode collector, while the positive electrode Faraday layer is attached on this positive electrode non-Faraday layer, and a negative electrode with a region having the faradaic reaction mechanism on a negative electrode collector. Fabrication of such an energy storage device ensures a long lifetime and excellent output characteristics in the range from low temperature to normal temperature.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种在低温到常温的范围内确保长寿命和优异的输出特性的储能装置。 解决方案:储能装置具有反应机理不同的两个区域。 这些区域包括呈现法拉第反应的正电极法拉第层,其中活性材料的氧化态主要改变并且电荷移动到活性材料的内部,以及表现出非法拉第反应的正极非法拉第层 其中电荷主要通过物理地吸收/释放离开活性材料表面的离子来储存/释放。 这些区域提供正电极,其中正极非法拉第层附着在正电极集电体上,而正电极法拉第层附接在该正极非法拉第层上,并且具有具有法拉第反应的区域的负电极 机构在负极集电器上。 这种储能装置的制造确保了从低温到常温的范围内的长寿命和良好的输出特性。 版权所有(C)2007,JPO&INPIT
    • 8. 发明专利
    • Energy storage device
    • 能源储存装置
    • JP2007018889A
    • 2007-01-25
    • JP2005199537
    • 2005-07-08
    • Hitachi Ltd株式会社日立製作所
    • KUMASHIRO YOSHIAKIKOBAYASHI MITSURUOKUMURA SOUBUNARAI JUICHI
    • H01M4/02B60L11/14H01M4/36H01M10/05H01M10/052H01M10/0525H01M10/0565H01M10/0568
    • Y02E60/122Y02T10/7011Y02T10/7077Y02T90/16
    • PROBLEM TO BE SOLVED: To provide an energy storage device which ensures a long lifetime and excellent output characteristics in the range from low temperature to normal temperature.
      SOLUTION: The energy storage device has a positive electrode having two regions different in the reactive mechanism. The regions comprise a positive electrode Faraday layer exhibiting the faradaic reaction wherein the oxidation state of an active material is mainly changed and the electrical charge is moved into inside of the active material, a positive electrode non-Faraday layer exhibiting the non-faradaic reaction wherein the electrical charge is mainly stored/released by physically absorbing/desorbing ions to/from the surface of the active material, and a negative electrode with a region having the faradaic reaction mechanism on a negative electrode collector. As an additional characteristic, this device provides an active material to enable insertion/removal of lithium ions on the region having the faradaic reaction mechanism, and both of the positive electrode Faraday layer and the positive electrode non-Faraday layer are completely exposed on the side in opposition to the negative electrode. Fabrication of such an energy storage device ensures a long lifetime and excellent output characteristics in the range from low temperature to normal temperature.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种在低温到常温的范围内确保长寿命和优异的输出特性的储能装置。 解决方案:储能装置具有在反应机构中具有两个区域不同的正电极。 这些区域包括呈现法拉第反应的正电极法拉第层,其中活性材料的氧化态主要改变并且电荷移动到活性材料的内部,表现出非法拉第反应的正极非法拉第层,其中 电荷主要通过物理吸收/解吸离子到活性物质的表面而存储/释放,以及在负极集电体上具有具有法拉第反应机理的区域的负极。 作为附加特性,该装置提供活性材料,以使得能够在具有法拉第反应机理的区域上插入/除去锂离子,并且正极法拉第层和正极非法拉第层均完全暴露在侧面 与负电极相反。 这种储能装置的制造确保了从低温到常温的范围内的长寿命和良好的输出特性。 版权所有(C)2007,JPO&INPIT