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    • 7. 发明申请
    • ELECTRIC STORAGE DEVICE AND FABRICATING METHOD THEREFOR
    • 电力储存装置及其制造方法
    • US20080299455A1
    • 2008-12-04
    • US12127989
    • 2008-05-28
    • Ryuji ShiozakiNobuo AndoSatoko KanekoMasahiko Taniguchi
    • Ryuji ShiozakiNobuo AndoSatoko KanekoMasahiko Taniguchi
    • H01M10/36H01M10/38H01M4/00
    • H01M4/131H01G11/46H01G11/50H01G11/86H01M4/133H01M4/1391H01M4/1393H01M10/0525Y02E60/13Y02T10/7011Y02T10/7022Y10T29/49108
    • An electrode laminate unit 12 of an electric storage device 10 is composed of positive electrodes 14 and negative electrodes 15, which are alternately laminated, and a lithium electrode 16 is arranged at the outermost part of the electrode laminate unit 12 so as to oppose to the negative electrode 15. A charging/discharging unit 21 having first and second energization control units 21a and 21b is connected to a positive-electrode terminal 18, negative-electrode terminal 19, and a lithium-electrode terminal 20. Electrons are moved from the lithium electrode 16 to the positive electrode 14 through the first energization control unit 21a, and lithium ions are doped into the positive electrode 14 from the lithium electrode 16. Electrons are moved from the lithium electrode 16 to the negative electrode 15 through the second energization control unit 21b, and lithium ions are doped into the negative electrode 15 from the lithium electrode 16. The lithium ions are doped into both of the positive electrode 14 and the negative electrode 15 as described above, whereby the doping time can dramatically be shortened.
    • 蓄电装置10的电极层叠单元12由交替层叠的正极14和负极15构成,锂电极16配置在电极层叠单元12的最外侧,以与电极层叠单元12相对。 负极15.具有第一和第二通电控制单元21a和21b的充电/放电单元21连接到正极端子18,负极端子19和锂电极端子20.电子从锂 电极16通过第一通电控制单元21a连接到正极14,并且锂离子从锂电极16掺杂到正极14中。电子通过第二通电控制单元从锂电极16移动到负极15 21b,并且锂离子从锂电极16掺杂到负极15中。锂离子掺杂到两者中 如上所述,由此可以显着地缩短掺杂时间。
    • 8. 发明申请
    • MANUFACTURING METHOD OF ELECTRODE MATERIAL, AND ELECTRIC STORAGE DEVICE
    • 电极材料的制造方法和电储存装置
    • US20090246633A1
    • 2009-10-01
    • US12410631
    • 2009-03-25
    • Ryuji ShiozakiSatoko KanekoNobuo Ando
    • Ryuji ShiozakiSatoko KanekoNobuo Ando
    • H01M4/58H01M4/88
    • H01M4/131H01M4/485H01M10/0525
    • When a layered crystal material of vanadium pentoxide that can be used as a positive electrode active material is manufactured, a sulfur-containing organic material is not used as a raw material in the present invention. Therefore, uncertain adhesion of the sulfur-containing organic material to the layered crystal material is eliminated. The property of the suspension containing a vanadium compound and plural lithium compounds such as lithium sulfide and lithium hydroxide is adjusted by using these lithium compounds. By this adjustment, the pentavalence of the vanadium ions is controlled to be a desired ratio. Consequently, an active material having reproducibility can be manufactured. First discharge energy of a lithium ion secondary battery using the active material can be enhanced.
    • 当制造可用作正极活性物质的五氧化二钒的层状结晶材料时,在本发明中不使用含硫有机材料作为原料。 因此,消除了含硫有机材料对层状结晶材料的粘附性的不确定性。 通过使用这些锂化合物调节含有钒化合物的悬浮液的性质和多种锂化合物如硫化锂和氢氧化锂。 通过这种调整,钒离子的五价态被控制为期望的比例。 因此,可以制造具有再现性的活性材料。 可以提高使用活性物质的锂离子二次电池的第一放电能量。