Secondary battery using nonaqueous electrolytes
    5.
    发明授权
    Secondary battery using nonaqueous electrolytes 失效
    二次电池使用非水电解质

    公开(公告)号:US4835075A

    公开(公告)日:1989-05-30

    申请号:US119134

    申请日:1987-11-10

    CPC分类号: H01M10/05 H01M4/587 H01M4/96

    摘要: A secondary battery using nonaqueous electrolytes that contain a light metal as an active material, and comprising an anode, a cathode and a separator that electrically separates the anode from the cathode, wherein said anode comprises a heat-resistant porous support and a carbon material deposited on said porous support, said carbon material having the following physico-chemical properties: The mean interlayer separation of said carbon active material is in the range of 0.337 to 0.355 nm; the ratio of the Raman intensity of 1360 cm.sup.-1 to that of 1580 cm.sup.-1 with regard to the argon laser Raman spectra of said carbon material is in the range of 0.4 to 1.0; and said carbon material is mainly composed of a carbon having a six-membered ring structure with flat networks and having a selective orientation.

    摘要翻译: 一种二次电池,其使用含有轻金属作为活性材料的非水电解质,并且包括将阳极与阴极电分离的阳极,阴极和隔板,其中所述阳极包括耐热多孔载体和沉积的碳材料 在所述多孔载体上,所述碳材料具有以下物理化学性质:所述碳活性材料的平均层间分离在0.337至0.355nm的范围内; 相对于所述碳材料的氩激光拉曼光谱,1360cm -1的拉曼强度与1580cm -1的拉曼强度的比在0.4〜1.0的范围内; 并且所述碳材料主要由具有平坦网络并具有选择性取向的六元环结构的碳组成。

    Hydrogen-stored electrode for use in battery and manufacturing method
    7.
    发明授权
    Hydrogen-stored electrode for use in battery and manufacturing method 失效
    用于电池和制造方法的氢存储电极

    公开(公告)号:US4621417A

    公开(公告)日:1986-11-11

    申请号:US702608

    申请日:1985-02-19

    CPC分类号: H01M4/242 Y10T29/49108

    摘要: The preferred embodiment provides such a hydrogen-stored electrode extremely useful for application to the cathode of alkaline battery. It makes it possible to manufacture such a useful hydrogen-stored electrode molded into electrode form after activation of hydrogen-stored alloy by means of hydrogen generated by immersion of blends into solution, in which the blends is composed of hydrogen-stored alloy and additives that generate hydrogen through their reaction with the above solution.

    摘要翻译: 优选的实施方案提供了这样一种非常适用于碱性电池阴极的氢储存电极。 通过将共混物浸入溶液中产生的氢活化氢储存合金后,可以制造这样一种有用的储氢电极成型为电极形式,其中共混物由储氢合金和添加剂组成, 通过与上述溶液的反应产生氢气。

    Solid-state electrolytic battery
    8.
    发明授权
    Solid-state electrolytic battery 失效
    固态电解电池

    公开(公告)号:US4977045A

    公开(公告)日:1990-12-11

    申请号:US467998

    申请日:1990-01-22

    申请人: Motoo Mohri

    发明人: Motoo Mohri

    CPC分类号: H01M4/383 H01M10/347 H01M6/18

    摘要: The preferred embodiment provides a unique solid-state electrolytic battery featuring high reliability and an extremely durably service life. The battery is capable of generating a large amount of dischargeble current and can be satisfactorily charged and discharged using the activated hydrogen-stored alloy/materials. This unique solid-state electrolytic battery incorporates a cathode comprised of activated hydrogen-stored alloy storing metallic-hydrogenated hydrogen; a solid-state electrolyte comprised of hydrogen-ion conductive elements; and an anode containing an activated guest material, primarily hydrogen-ions.

    摘要翻译: 该优选实施例提供了一种独特的固态电解电池,具有高可靠性和极其耐用的使用寿命。 电池能够产生大量的放电电流,并且可以使用活化的储氢合金/材料令人满意地充电和放电。 这种独特的固态电解质电池结合了由存储金属氢化氢的活化储氢合金构成的阴极; 由氢离子导电元件构成的固体电解质; 和含有活化的客体材料的阳极,主要是氢离子。

    Alkaline cell manufacturing method
    9.
    发明授权
    Alkaline cell manufacturing method 失效
    碱性电池制造方法

    公开(公告)号:US4782584A

    公开(公告)日:1988-11-08

    申请号:US33687

    申请日:1987-04-03

    摘要: A powdered positive mixture, a powdered separator mixture, and a powdered negative mixture are filled sequentially into a mold in layers, then the layers of the positive mixture, the separator mixture and the negative mixture are compacted in the mold to form a laminated tablet. The laminated tablet is placed in a container, and is impregnated with an alkaline electrolyte queous solution. Then the container is sealed to produce an alkaline cell.

    摘要翻译: 将粉末状的正极混合物(4),粉末状分离剂混合物(5)和粉末状负极混合物(6)依次填充到模具(1)中,然后将正极混合物(4),隔板混合物 (5)和负极混合物(6)在模具(1)中压实以形成层压片剂,然后将层压片剂放入容器(7)中,然后用碱性电解质浆液( 10),然后将容器(7)密封以完成碱性电池。