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    • 3. 发明申请
    • Hydrogen Sensor
    • 氢传感器
    • US20100178209A1
    • 2010-07-15
    • US12602984
    • 2008-05-28
    • Naoki UchiyamaKazuki Yoshimura
    • Naoki UchiyamaKazuki Yoshimura
    • G01N31/10G01N21/55
    • G01N33/005G01N31/22
    • In a hydrogen sensor (10a, 10b, 10c, 10d), a thin film layer (12) is formed over a substrate (11) and a buffer layer (13) is formed over the thin film layer (12). Further, over the buffer layer (13) is formed a catalyst layer (14) which, by being contacted by hydrogen gas, hydrogenates the thin film layer (12), thereby changing optical reflectance of the thin film layer (12). A constituent of the thin film layer (12) diffusing into the catalyst layer (14) combines with a constituent that has diffused from the buffer layer (13) into the catalyst layer (14), so that oxidation of the catalyst film layer (14) is prevented. Consequently, oxidation of the catalyst layer (14), etc. caused by repetition of hydrogenation of the thin film layer (12) is prevented, and therefore, decrease in hydrogen detection sensitivity of the hydrogen sensor (10a, 10b, 10c, 10d) is restrained.
    • 在氢传感器(10a,10b,10c,10d)中,在衬底(11)上形成薄膜层(12),在薄膜层(12)上形成缓冲层(13)。 此外,在缓冲层(13)上形成催化剂层(14),其通过与氢气接触而氢化薄膜层(12),由此改变薄膜层(12)的光学反射率。 扩散到催化剂层(14)中的薄膜层(12)的成分与从缓冲层(13)扩散到催化剂层(14)中的成分组合,从而催化剂膜层(14)的氧化 )被阻止。 因此,防止了由于薄膜层(12)的氢化反复而引起的催化剂层(14)等的氧化,氢传感器(10a,10b,10c,10d)的氢气检测灵敏度降低, 被束缚
    • 6. 发明申请
    • ALL SOLID STATE TYPE REFLECTION LIGHT CONTROL ELECTROCHROMIC ELEMENT EMPLOYING MAGNESIUM/TITANIUM ALLOY AND LIGHT CONTROL MEMBER
    • 所有固态反射光控制电子元件采用镁/钛合金和灯控制构件
    • US20090323159A1
    • 2009-12-31
    • US12520406
    • 2007-12-18
    • Kazuki YoshimuraKazuki TajimaShanhu BaoYasusei Yamada
    • Kazuki YoshimuraKazuki TajimaShanhu BaoYasusei Yamada
    • G02F1/153
    • G02F1/19B32B17/10036B32B17/10513B32B17/10761G02F1/1523
    • The present invention provides an all solid state type reflection light control electrochromic element and a light control member that uses this element, relates to an all solid state type reflection light control electrochromic element, which is a magnesium/titanium alloy reflection type light control element in which a multilayer thin film is formed on a transparent substrate, wherein at least a transparent conductive film layer, an ion storage layer, a solid electrolyte layer, a catalyst layer, and a reflection light control layer employing a magnesium/titanium alloy thin film are formed on the substrate; and a light control member which is incorporated with this reflection light control electrochromic element, and the present invention allows a reflection light control electrochromic element, which has a novel multilayer structure that is colorless when transparent and can be switched in a short time over a wide area, as well as a light control member incorporated with this element to be provided.
    • 本发明提供一种使用该元件的全固体型反射光控制电致变色元件和光控制元件,涉及作为镁/钛合金反射型光控元件的全固体型反射光控制电致变色元件 在透明基板上形成多层薄膜,其中至少透明导电膜层,离子存储层,固体电解质层,催化剂层和使用镁/钛合金薄膜的反射光控制层是 形成在基板上; 以及与该反射光控制电致变色元件结合的光控制部件,本发明允许具有新颖的多层结构的反射光控制电致变色元件,其透明时为无色,并可在短时间内在宽范围内切换 区域,以及与要提供的元件结合的灯控制构件。
    • 9. 发明授权
    • Gasochromic system
    • 气相色谱系统
    • US09376854B2
    • 2016-06-28
    • US14758986
    • 2013-12-16
    • Kazuki YoshimuraYasusei YamadaKazuki Tajima
    • Kazuki YoshimuraYasusei YamadaKazuki Tajima
    • G02F1/01E06B3/67G02F1/19E06B9/24G02F1/15
    • E06B3/6722E06B9/24E06B2009/2464G02F1/15G02F1/19
    • A gasochromic system includes a first transparent part that includes a first surface; a second transparent part that includes a second surface and is disposed such that the second surface faces the first surface of the first transparent part; a light control part that is formed on the first surface and includes a light control element whose optical characteristic is reversibly changed by hydrogenation and dehydrogenation; a hydrogen supplier that supplies a hydrogen-containing gas into a gap between the first and second transparent parts; and a dehydrogenator that removes hydrogen from the gap between the first and second transparent parts. The first and second transparent parts are stacked via the light control part, and the second surface and a surface of the light control part facing the second surface are partially in contact with each other.
    • 气相色谱系统包括第一透明部分,其包括第一表面; 第二透明部分,其包括第二表面并且被布置成使得第二表面面向第一透明部分的第一表面; 光控制部,其形成在第一表面上,并且包括其光学特性通过氢化和脱氢可逆地改变的光控制元件; 氢供应器,其将含氢气体供应到第一和第二透明部分之间的间隙中; 以及从第一和第二透明部分之间的间隙去除氢的脱氢剂。 第一透明部分和第二透明部分经由光控制部件堆叠,并且第二表面和面对第二表面的光控制部分的表面部分地彼此接触。
    • 10. 发明授权
    • All-solid-state reflective dimming electrochromic device having buffer layer and dimmer member using the same
    • 具有缓冲层的全固体反射调光电致变色装置和使用其的调光构件
    • US08284472B2
    • 2012-10-09
    • US12665069
    • 2008-06-17
    • Kazuki YoshimuraYasusel YamadaKazuki Tajima
    • Kazuki YoshimuraYasusel YamadaKazuki Tajima
    • G02F1/153
    • G02F1/13454
    • The present invention provides an all-solid-state type reflection light controllable electrochromic device having a buffer layer, and the constitution thereof comprises an all-solid-state reflective dimming electrochromic device in which a transparent conductive film layer, an ion storage layer, a solid electrolyte layer, a buffer layer, catalyst layer, and a reflective light controllable layer of a magnesium alloy thin film, in particular a multilayer thin film that uses a magnesium-nickel alloy, magnesium-titanium alloy or magnesium-niobium alloy, are formed on a transparent base that uses a glass or resin sheet, and a method for manufacturing the device, and an optical switchable component that incorporates the reflective light controllable electrochromic device, and according to the present invention, a reflective light controllable electrochromic device having a novel multilayer structure can be provided that enables high transmittance when it is transparent and enables switching in a short time over a wide area.
    • 本发明提供了具有缓冲层的全固态反射光可控电致变色器件,其结构包括全固态反射调光电致变色器件,其中透明导电膜层,离子存储层, 固体电解质层,缓冲层,催化剂层和镁合金薄膜的反射光可控层,特别是使用镁 - 镍合金,镁 - 钛合金或镁 - 铌合金的多层薄膜 在使用玻璃或树脂片的透明基底上,以及该装置的制造方法以及包含反射光可控电致变色装置的光可切换部件,根据本发明,具有新颖的反射光可控电致变色装置 可以提供多层结构,其在透明时能够实现高透射率并且能够进行切换 在很短的时间内在广泛的地区。