Heat treatable four layer anti-reflection coating
    42.
    发明授权
    Heat treatable four layer anti-reflection coating 有权
    可热处理四层防反射涂层

    公开(公告)号:US09163150B2

    公开(公告)日:2015-10-20

    申请号:US14169163

    申请日:2014-01-31

    Abstract: A coated article includes a heat treatable (e.g., temperable) antireflection (AR) coating having four layers. The AR coating includes a layer adjacent the glass substrate having an index of refraction substantially matching that of the glass substrate, and having a compressive residual stress. In certain example embodiments, the coating may include the following layers from the glass substrate outwardly: stress-reducing layer/medium index layer/high index layer/low index layer. In certain example embodiments, depending on the chemical and optical properties of the high index layer and the substrate, the stress-reducing layer of the AR coating is selected to cause a net compressive residual stress and thus improve the overall performance of the antireflection coating when the coated article is heat treated.

    Abstract translation: 涂覆制品包括具有四层的可热处理(例如,可回火)抗反射(AR)涂层。 AR涂层包括与玻璃基板相邻的层,其折射率基本上与玻璃基板的折射率一致,并且具有压缩残余应力。 在某些示例性实施例中,涂层可以包括从玻璃基板向外的以下层:应力减小层/介质折射率层/高折射率层/低折射率层。 在某些示例性实施例中,根据高折射率层和基底的化学和光学性质,选择AR涂层的应力降低层以产生净压缩残余应力,从而提高抗反射涂层的整体性能, 涂层制品进行热处理。

    ULTRA-HYDROPHILIC ANTIREFLECTIVE COATING COMPOSITION COMPRISING SILOXANE COMPOUND, ULTRA-HYDROPHILIC ANTIREFLECTIVE FILM USING SAME, AND METHOD FOR PREPARING ULTRA-HYDROPHILIC ANTIREFLECTIVE FILM
    43.
    发明申请
    ULTRA-HYDROPHILIC ANTIREFLECTIVE COATING COMPOSITION COMPRISING SILOXANE COMPOUND, ULTRA-HYDROPHILIC ANTIREFLECTIVE FILM USING SAME, AND METHOD FOR PREPARING ULTRA-HYDROPHILIC ANTIREFLECTIVE FILM 有权
    包含硅氧烷化合物的超级疏水性抗反射涂料组合物,使用其的超级疏水性抗反射膜和制备超亲水抗反射膜的方法

    公开(公告)号:US20150291803A1

    公开(公告)日:2015-10-15

    申请号:US14438134

    申请日:2013-10-30

    Abstract: The present invention relates to an ultra-hydrophilic antireflective coating composition, to an ultra-hydrophilic antireflective film using the same, and to a method for preparing the ultra-hydrophilic antireflective film, wherein the ultra-hydrophilic antireflective coating composition can form a coating layer having a low refractive index and ultra-hydrophilicity. More particularly, the present invention relates to an antireflective film and to a method for preparing same wherein the antireflective film has excellent hydrophilicity and minimize the reflectivity by forming the coating layer using an ultra-hydrophilic antireflective coating composition including a siloxane compound as a binder.The ultra-hydrophilic antireflective film using the ultra-hydrophilic antireflective coating composition has excellent antireflective effects and a self-cleaning function. Therefore, it is expected that the ultra-hydrophilic antireflective film can be applied to various display devices such as devices for the outdoors.

    Abstract translation: 本发明涉及一种超亲水性防反射涂料组合物,使用该超亲水性防反射膜的超亲水性防反射膜及其制造方法,其中超亲水性防反射涂料组合物可形成涂层 具有低折射率和超亲水性。 更具体地说,本发明涉及一种抗反射膜及其制备方法,其中,通过使用包含硅氧烷化合物作为粘合剂的超亲水性防反射涂料组合物,通过形成涂层,防反射膜具有优异的亲水性和最小化反射率。 使用超亲水性防反射涂料组合物的超亲水性防反射膜具有优异的抗反射效果和自清洁功能。 因此,期望超亲水性防反射膜可以应用于各种显示装置,例如户外用的装置。

    HIGHLY DURABLE ANTI-REFLECTIVE COATINGS
    45.
    发明申请
    HIGHLY DURABLE ANTI-REFLECTIVE COATINGS 审中-公开
    高耐用抗反射涂层

    公开(公告)号:US20150267060A1

    公开(公告)日:2015-09-24

    申请号:US14423221

    申请日:2013-03-05

    Abstract: A chemically modified anti-reflective (AR) coating is provided having improved durability. The AR coating may be a polymerized alkoxy siloxane-based material that includes a densifier in the form of an organic or inorganic phosphorus (P)-based compound, boron (B)-based compound, antimony (Sb)-based compound, bismuth (Bi)-based compound, lead (Pb)-based compound, arsenic (As)-based compound, or combinations thereof. At least one residue of the densifier may be chemically and/or physically incorporated into the polymerized alkoxy siloxane-based material.

    Abstract translation: 提供具有改进的耐久性的化学改性的抗反射(AR)涂层。 AR涂层可以是聚合的烷氧基硅氧烷基材料,其包括有机或无机磷(P)基化合物,基于硼(B)的化合物,锑(Sb)基化合物,铋( Bi)基化合物,铅(Pb)基化合物,砷(As)基化合物或其组合。 致密剂的至少一个残余物可以化学和/或物理地掺入聚合的烷氧基硅氧烷基材料中。

    Sol-gel based antireflective coatings using alkyltrialkoxysilane binders having low refractive index and high durability
    47.
    发明授权
    Sol-gel based antireflective coatings using alkyltrialkoxysilane binders having low refractive index and high durability 有权
    使用具有低折射率和高耐久性的烷基三烷氧基硅烷粘合剂的溶胶 - 凝胶基抗反射涂层

    公开(公告)号:US09109121B2

    公开(公告)日:2015-08-18

    申请号:US13273007

    申请日:2011-10-13

    Abstract: Methods and compositions for forming porous low refractive index coatings on substrates are provided. The method comprises coating a substrate with a sol-formulation comprising silica based nanoparticles and an alkyltrialkoxysilane based binder. Use of the alkyltrialkoxysilane based binder results in a porous low refractive index coating having bimodal pore distribution including mesopores formed from particle packing and micropores formed from the burning off of organics including the alkyl chain covalently bonded to the silicon. The mass ratio of binder to particles may vary from 0.1 to 20. Porous coatings formed according to the embodiments described herein demonstrate good optical properties (e.g. a low refractive index) while maintaining good mechanical durability due to the presence of a high amount of binder and a close pore structure.

    Abstract translation: 提供了在基底上形成多孔低折射率涂层的方法和组合物。 该方法包括用包含二氧化硅基纳米颗粒和烷基三烷氧基硅烷基粘合剂的溶胶制剂涂覆基材。 使用烷基三烷氧基硅烷基粘合剂导致具有双峰孔分布的多孔低折射率涂层,包括由颗粒填充形成的介孔和由共价键合到硅上的烷基链的有机物燃烧形成的微孔。 粘合剂与颗粒的质量比可以在0.1至20之间变化。根据本文所述实施方案形成的多孔涂层表现出良好的光学性能(例如低折射率),同时由于存在大量粘合剂而保持良好的机械耐久性, 密闭孔结构。

    ARTICLES WITH ANTI-REFLECTIVE HIGH-HARDNESS COATINGS AND RELATED METHODS
    50.
    发明申请
    ARTICLES WITH ANTI-REFLECTIVE HIGH-HARDNESS COATINGS AND RELATED METHODS 有权
    具有抗反射高硬度涂层的文章及相关方法

    公开(公告)号:US20140362444A1

    公开(公告)日:2014-12-11

    申请号:US14174993

    申请日:2014-02-07

    Abstract: Methods and articles are provide for: a substrate having first and second opposing surfaces; an intermediate layer substantially covering the first surface of the substrate, the intermediate layer being between about 1-5 microns in thickness and having a hardness of at least 15 GPa; a first outer layer substantially covering the intermediate layer; and a second outer layer substantially covering the first outer layer, and having a hardness of at least 15 GPa.

    Abstract translation: 方法和制品提供:具有第一和第二相对表面的基底; 基本上覆盖所述基底的第一表面的中间层,所述中间层的厚度在约1-5微米之间,硬度至少为15GPa; 基本覆盖所述中间层的第一外层; 以及基本上覆盖所述第一外层的第二外层,并且具有至少15GPa的硬度。

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