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    • 4. 发明申请
    • Method for manufacturing lithium ion secondary cell
    • 锂离子二次电池的制造方法
    • US20070226990A1
    • 2007-10-04
    • US11730169
    • 2007-03-29
    • Shozo Morimoto
    • Shozo Morimoto
    • H01M10/04
    • H01M10/0562H01M4/131H01M4/661H01M4/667H01M6/40H01M10/0436H01M2300/0068Y10T29/49108
    • The present invention provides a method for manufacturing a lithium ion secondary cell which has very good practical utility, is safe to use, is less expensive in comparison with conventional cells, and has high energy density. The present invention is a method for manufacturing a lithium ion secondary cell in which a positive electrode 1 and a negative electrode 2 are disposed via an interposed inorganic solid electrolyte 3, the method comprising forming into a three-dimensional shape the surface of an electrode selected from the positive electrode 1 and negative electrode 2 using a nanoimprint method; subsequently providing an inorganic solid electrolyte 3 on the electrode whose surface has been formed into a three-dimensional shape; and providing the other electrode on the inorganic solid electrolyte 3.
    • 本发明提供一种制造锂离子二次电池的方法,其具有非常好的实用性,使用安全性,与常规电池相比较便宜且能量密度高。 本发明是一种锂离子二次电池的制造方法,其中通过插入的无机固体电解质3配置正极1和负极2,该方法包括:将选择的电极的表面形成为三维形状 使用纳米压印法从正极1和负极2中取出; 随后在其表面已经形成三维形状的电极上提供无机固体电解质3; 并在无机固体电解质3上提供另一个电极。
    • 5. 发明申请
    • Polarizing glass
    • 偏光玻璃
    • US20070139770A1
    • 2007-06-21
    • US11417077
    • 2006-05-03
    • Shozo MorimotoMasahiro IchimuraYuich Aoki
    • Shozo MorimotoMasahiro IchimuraYuich Aoki
    • G02B5/30
    • C03C14/00G02B5/3083
    • In order to be able to obtain polarizing glass having favorable polarization characteristics in the visible light region, there is provided polarizing glass which is obtained by dispersing and orienting metal particles having anisotropy in shape within base glass and which exhibits dichroism, wherein the base glass is transparent glass whose absorption edge of incident light is 350 nm or less when wavelength is converted into a variable, a real number part of dielectric constant of the metal is minus or crosses over 0 with energy higher than 3.5 eV when the energy is converted into a variable and reflectivity of the metal is 80% or more in the visible light region.
    • 为了能够获得在可见光区域具有良好的极化特性的偏光玻璃,提供了通过在基底玻璃内分散和定向具有各向异性形状的金属颗粒并具有二色性的偏光玻璃,其中基底玻璃是 当波长转换为可变时,入射光的吸收边缘为350nm以下的透明玻璃,当能量转换成为能量时,金属的介电常数的实数部分为负,或超过0,能量高于3.5eV 金属的可变和反射率在可见光区域中为80%以上。