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    • 2. 发明申请
    • ELECTROCHROMIC MIRROR
    • 电致发光镜
    • US20090002800A1
    • 2009-01-01
    • US12144104
    • 2008-06-23
    • Junichi NAKAHOMasaharu HattoriAtsushi YamaguchiNagahiro SaitoTakahiro IshizakiOsamu Takai
    • Junichi NAKAHOMasaharu HattoriAtsushi YamaguchiNagahiro SaitoTakahiro IshizakiOsamu Takai
    • G02F1/155
    • G02F1/1523G02F1/153G02F1/155G02F2001/1536
    • An electrochromic mirror includes an electrochromic film, an electrically conductive reflective film formed at one thickness direction side of the electrochromic film, an electrically conductive film provided at one thickness direction side of the electrochromic film and at a side of the electrically conductive reflective film that is opposite from the electrochromic film, an electrolytic solution containing lithium ions and enclosed between the electrically conductive reflective film and the electrically conductive film, and a reduction reaction compensation unit. In the electrolytic solution, due to applying a voltage such that the electrically conductive film is made positive and electrically conductive reflective film is made negative, the lithium ions move toward the side of the electrochromic film and are provided to a reduction reaction of the electrochromic film. The reduction reaction compensation unit compensates the reduction reaction.
    • 电致变色镜包括电致变色膜,在电致变色膜的一个厚度方向侧形成的导电反射膜,设置在电致变色膜的一个厚度方向侧的导电膜和位于导电性反射膜侧的导电性反射膜 与电致变色膜相反,含有锂离子并包封在导电性反射膜和导电膜之间的电解液和还原反应补偿单元。 在电解液中,由于施加使导电性膜成为正性而导电性反射膜为负的电压,锂离子向电致变色膜的侧面移动,并且被提供给电致变色膜的还原反应 。 还原反应补偿单元补偿还原反应。
    • 4. 发明申请
    • ELECTROCHROMIC MIRROR
    • 电致发光镜
    • US20090185256A1
    • 2009-07-23
    • US12355701
    • 2009-01-16
    • Junichi NAKAHOMasaharu HATTORIAtsushi YAMAGUCHI
    • Junichi NAKAHOMasaharu HATTORIAtsushi YAMAGUCHI
    • G02F1/153
    • G02F1/1523G02F2001/1536
    • In an electrochromic mirror, an insulating film is disposed between a conductive reflective film and an electrolytic solution and the conductive reflective film and the electrolytic solution are electrically insulated from each other except inside of insulating film side small holes. Accordingly, in a portion where the insulating film side small holes are not formed, the conductive reflective film does not come into contact with the electrolytic solution, as the result, a ferrocene ion is not reduction-reacted. Thereby, a current is very effectively suppressed from steadily flowing between the conductive film and the conductive reflective film due to repetition of a redox reaction of ferrocene, resulting in very effectively suppressing a voltage from dropping due to the current.
    • 在电致变色镜中,在导电性反射膜和电解液之间设置绝缘膜,导电性反射膜和电解液除了绝缘膜侧小孔的外侧彼此电绝缘。 因此,在没有形成绝缘膜侧小孔的部分,导电性反射膜不会与电解液接触,结果是二茂铁离子没有还原反应。 由此,由于二茂铁的氧化还原反应的重复,导电膜和导电性反射膜之间的电流被非常有效地抑制,从而非常有效地抑制由电流引起的电压下降。