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    • 7. 发明申请
    • GLASS ARTICLE PROVIDED WITH PHOTOCATALYST FILM
    • 玻璃条提供光电膜
    • US20150004398A1
    • 2015-01-01
    • US14375638
    • 2013-02-01
    • Nippon Sheet Glass Company, Limited
    • Takeshi YabutaFumiyoshi KondoMitsuhiro Kawazu
    • B01J21/08G02B27/00C03C17/00
    • B01J21/08B01J21/063B01J35/0013B01J35/002B01J35/004B01J35/023B01J37/0219B01J37/0236C03C17/007C03C17/23C03C17/256C03C2217/42C03C2217/445C03C2217/45C03C2217/477C03C2217/478C03C2217/48C03C2217/71G02B1/18G02B27/0006Y10T428/256
    • The present invention provides a glass article including a photocatalyst film 1 containing silicon oxide particles 6 and titanium oxide particles 5, the glass article having an increased transmittance provided by enhancing the reflection-reducing function of the photocatalyst film 1 while maintaining the film strength and photocatalytic function of the photocatalyst film 1. In the photocatalyst film 1, the silicon oxide particles 6 are contained in an amount of 72 to 79 mass %, the titanium oxide particles 5 are contained in an amount of 13 to 18 mass %, and a binder material whose main component is silicon oxide is contained in an amount of 8 to 14 mass %, with respect to the total amount of the silicon oxide particles, the titanium oxide particles, and the binder material. The silicon oxide particles have an average particle diameter of 30 to 200 nm, the titanium oxide particles have an average particle diameter of 5 to 20 nm, and the average particle diameter of the silicon oxide particles is five times or more of the average particle diameter of the titanium oxide particles. Assuming that the photocatalyst film has a film thickness T, 80% or more of the titanium oxide particles are localized in a region from the surface of the glass sheet 2 to 0.6 T.
    • 本发明提供一种玻璃制品,其包含含有氧化硅颗粒6和氧化钛颗粒5的光催化剂膜1,玻璃制品通过提高光催化剂膜1的反射降低功能而提高透光率,同时保持膜强度和光催化 在光催化剂膜1中,氧化硅粒子6的含量为72〜79质量%,氧化钛粒子5的含量为13〜18质量%,粘结剂 主要成分为氧化硅的材料的含量相对于氧化硅粒子,氧化钛粒子和粘合剂材料的总量为8〜14质量%。 氧化硅粒子的平均粒径为30〜200nm,氧化钛粒子的平均粒径为5〜20nm,氧化硅粒子的平均粒径为平均粒径的5倍以上 的氧化钛颗粒。 假设光催化剂膜具有膜厚T,则从玻璃板2的表面到0.6T的区域中,80%以上的氧化钛粒子被定位。