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    • 8. 发明申请
    • PHOTOELECTRIC CONVERSION DEVICE, METHOD FOR PRODUCING THE SAME, AND SOLAR BATTERY
    • 光电转换装置,其制造方法和太阳能电池
    • US20120180870A1
    • 2012-07-19
    • US13499114
    • 2010-09-30
    • Kana Yamamoto
    • Kana Yamamoto
    • H01L31/0264
    • H01L31/18H01L31/0322H01L31/065H01L31/0749Y02E10/541Y02P70/521
    • A photoelectric conversion device includes a layered structure formed on a substrate including a first electrode, a photoelectric conversion semiconductor layer and a second electrode, the photoelectric conversion semiconductor layer being mainly composed of a compound semiconductor containing group Ib, group IIIb and group VIb elements, and containing an alkaline(-earth) metal, wherein the alkaline(-earth) metal concentration distribution in the photoelectric conversion layer in the thickness direction includes a valley with the lowest alkaline(-earth) metal concentration and an area with an alkaline(-earth) metal concentration higher than that at the valley, the area being nearer to the substrate from the valley, and wherein Expressions (1) and (2) below are satisfied: 1.0×10−6≦a [mol/cc]≦2.0×10−5  (1) and 1.5≦b/a≦4.0  (2), wherein “a” represents the alkaline(-earth) metal concentration at the valley, and “b” represents the highest alkaline(-earth) metal concentration at a position nearer to the substrate from the valley.
    • 光电转换装置包括形成在包括第一电极,光电转换半导体层和第二电极的基板上的分层结构,该光电转换半导体层主要由含有Ib族,IIIb族和VIb族元素的化合物半导体组成, 并且含有碱土金属(-earth)金属,其中光电转换层中的厚度方向上的碱(( - ))金属浓度分布包括具有最低碱性(-earth)金属浓度的谷和具有碱性( - 土壤)金属浓度高于山谷,该区域从谷地更接近基底,并且其中满足以下表达式(1)和(2):1.0×10-6≦̸ a [mol / cc]≦̸ 2.0×10-5(1)和1.5≦̸ b / a≦̸ 4.0(2),其中“a”表示谷底部的碱性(-earth)金属浓度,“b”表示最高的碱 h)从山谷更靠近基底的位置处的金属浓度。
    • 9. 发明申请
    • PHOTOELECTRIC CONVERSION DEVICE, METHOD FOR PRODUCING THE SAME, AND SOLAR BATTERY
    • 光电转换装置,其制造方法和太阳能电池
    • US20110083743A1
    • 2011-04-14
    • US12899382
    • 2010-10-06
    • Kana YAMAMOTO
    • Kana YAMAMOTO
    • H01L31/0272H01L31/18
    • H01L31/0749H01L31/0322Y02E10/541
    • A photoelectric conversion device includes a photoelectric conversion layer which mainly composed of a compound semiconductor containing a group Ib element, at least two group IIIb elements including Ga, and a group VIb element and contains an alkaline(-earth) metal. Concentration distributions of the alkaline(-earth) metal and Ga in the photoelectric conversion layer in the thickness direction includes a valley with the lowest concentration and an area with a higher concentration between the substrate and the valley, and satisfy Expressions (1) and (2) below: 1.0×10−6≦AN [mol/cc]≦2.0×10−5  (1) and 1.0≦CN/CG  (2), where AN represents the alkaline(-earth) metal concentration at the valley, BN represents the highest alkaline(-earth) metal concentration between the substrate and the valley, AG represents the Ga concentration at the valley, BG represents the highest Ga concentration between the substrate and the valley, CN═BN/AN, and CG═BG/AG.
    • 光电转换装置包括主要由包含Ib族元素的化合物半导体,至少两种包含Ga的IIIb族元素和VIb族元素组成并含有碱性(-earth)金属的光电转换层。 光电转换层中的碱性(-earth)金属和Ga在厚度方向上的浓度分布包括具有最低浓度的谷和在基底和谷之间具有较高浓度的面积,并且满足表达式(1)和( 2)以下:1.0×10-6≦̸ AN [mol / cc]≦̸ 2.0×10-5(1)和1.0≦̸ CN / CG(2),其中AN表示 谷,BN代表基底与谷之间的最高碱性(-earth)金属浓度,AG表示谷底Ga浓度,BG代表基底与谷之间的最高Ga浓度,CN = BN / AN和CG ═BG/ AG。
    • 10. 发明申请
    • OPTICAL SHEET AND METHOD FOR PRODUCING THE SAME
    • 光学片及其制造方法
    • US20100124656A1
    • 2010-05-20
    • US12617226
    • 2009-11-12
    • Tomoyuki HORIOMakoto HONDAKeiko TASAKITakashi KURODAEmi SHIMANOKana YAMAMOTO
    • Tomoyuki HORIOMakoto HONDAKeiko TASAKITakashi KURODAEmi SHIMANOKana YAMAMOTO
    • B32B5/16C08F2/48
    • G02B1/14C08J7/047G02B1/105Y10T428/259
    • The present invention is to provide an optical sheet having excellent abrasion resistance and hardness, and a method for producing the same. The object of the present invention was accomplished by an optical sheet in which a hard coat layer is provided on one surface of a substrate, wherein the hard coat layer comprises a cured product of a curable resin composition for a hard coat layer, which composition comprising reactive, irregularly shaped silica fine particles and a binder component, and wherein at least part of the irregularly shaped silica fine particles have a specific three-dimensional configuration and are present on an interface on the side opposite to the substrate side of the hard coat layer. The object of the present invention was also accomplished by a method for producing the optical sheet, comprising the steps of: forming a coating by applying a curable resin composition for a hard coat layer comprising reactive, irregularly shaped silica fine particles and a binder component onto one surface of a substrate, and forming a hard coat layer by curing the coating with or after preventing that the long axes of the reactive, irregularly shaped silica fine particles are each oriented in a direction planar to a virtual plane.
    • 本发明提供一种耐磨性和硬度优异的光学片及其制造方法。 本发明的目的是通过在基材的一个表面上设置硬涂层的光学片来实现的,其中硬涂层包括硬涂层用固化性树脂组合物的固化物,该组合物包含 反应性,不规则形状的二氧化硅细颗粒和粘合剂组分,并且其中至少部分不规则形状的二氧化硅细颗粒具有特定的三维构型,并且存在于与硬涂层的基材侧相反的一侧的界面上 。 本发明的目的还通过一种光学片的制造方法来实现,包括以下步骤:通过将包含反应性,不规则形状的二氧化硅细颗粒和粘合剂组分的硬涂层的固化性树脂组合物涂布到 并且通过在防止反应性不规则形状的二氧化硅细颗粒的长轴在与虚拟平面平行的方向上定向的情况下或之后固化涂层而形成硬涂层。