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    • 6. 发明授权
    • Near-field super-resolution optical cover glass slip or mount
    • 近场超分辨率光学盖玻璃滑盖或安装座
    • US06737167B2
    • 2004-05-18
    • US10307370
    • 2002-12-02
    • Din-Ping TsaiYu-Hsuan Lin
    • Din-Ping TsaiYu-Hsuan Lin
    • B32B1706
    • C03C17/3417C03C17/3435G01Q60/22G02B21/34
    • This invention is a super-resolution optical cover glass slip or mount which can resolve the optical information on a sample surface without diffraction limit. This super-resolution optical cover glass slip or mount is a multi-layered body at least comprising: (a) a substrate of transparent material; (b) a first protective and spacer layer formed on one surface of the substrate, which is made from transparent dielectric material; (c) a nano structure thin film which is capable of causing localized non-linear near-field optical interaction; (d) a second protective and spacer layer formed on the localized non-linear near-field optical interaction layer, which is also made from transparent dielectric material.
    • 本发明是一种超分辨率光学玻璃滑盖或安装座,可以解析样品表面上的光学信息而无衍射极限。 这种超分辨率光学盖玻璃滑盖或支架是多层体,至少包括:(a)透明材料的基底; (b)由透明介电材料制成的在基板的一个表面上形成的第一保护和隔离层; (c)能够引起局部非线性近场光学相互作用的纳米结构薄膜; (d)形成在局部非线性近场光学相互作用层上的第二保护和间隔层,其也由透明介电材料制成。
    • 7. 发明授权
    • Anti-reflective hydrophobic coatings and methods
    • 抗反射疏水涂层及方法
    • US06692832B2
    • 2004-02-17
    • US10339645
    • 2003-01-10
    • Nestor P. Murphy
    • Nestor P. Murphy
    • B32B1706
    • C03C17/42C03C2217/73C03C2217/76Y10T428/12993
    • Substrates have anti-reflective hydrophobic surface coatings comprised of the reaction products of a vapor-deposited chlorosilyl group containing compound and a vapor-deposited alkylsilane. Most preferably the substrate is glass. In one preferred form of the invention, highly durable antireflective hydrophobic coatings may be provided by forming a silicon oxide anchor layer from a humidified reaction product of silicon tetrachloride, followed by the vapor-deposition of a chloroalkylsilane, preferably dimethyldichlorosilane (DMDCS). The layer thickensses of the anchor layer and the overlayer are such that the coating exhibits light reflectance of less than about 1.5% (more preferably less than about 1.0%) at a wavelength of about 525 nm (+/−50 nm).
    • 底物具有由气相沉积的含氯甲硅烷基的化合物和气相沉积的烷基硅烷的反应产物组成的抗反射疏水表面涂层。 最优选地,基底是玻璃。 在本发明的一个优选形式中,可以通过从四氯化硅的加湿反应产物形成氧化硅锚固层,然后蒸镀氯烷基硅烷,优选二甲基二氯硅烷(DMDCS)来提供高度耐用的抗反射疏水涂层。 锚定层和覆盖层的层厚度使得涂层在约525nm(+/- 50nm)的波长处表现出小于约1.5%(更优选小于约1.0%)的光反射率。
    • 10. 发明授权
    • Low-emissivity glass coatings having a layer of nitrided nichrome and methods of making same
    • 具有一层氮化镍铬合金的低辐射玻璃涂层及其制造方法
    • US06623846B2
    • 2003-09-23
    • US09797903
    • 2001-03-05
    • Ronald E. Laird
    • Ronald E. Laird
    • B32B1706
    • C03C17/3618C03C17/36C03C17/3626C03C17/3644C03C17/3652C03C17/366C03C17/3694C03C2217/78Y10T428/24975Y10T428/265
    • Low-E glass coated glass articles are comprised of a glass substrate and a multiple layer coating on a surface of the glass substrate. Relatively high light transmissivity of greater than about 72% and satisfactory color characteristics are achieved. The coating includes a layer of a transparent dielectric material adjacent the surface of the glass substrate, and respective layers of nitrided nichrome and silver each of which are formed by sputter-coating onto the glass substrate in a nitrogen-containing atmosphere. Most preferably, the coating also includes a layer of silicon oxynitride interposed between the layer of dielectric material and the layer of nitrided nichrome. The silicon oxynitride layer may include an oxygen gradient layer wherein the concentration of oxygen decreases from one location in the silicon oxynitride layer to another location at a different depth in that same layer. If present, the oxygen gradient is most preferably such that the greater amount of oxygen concentration is nearer the bottom of the layer (i.e., towards the glass substrate) with the lesser amount of oxygen concentration being nearer the top of the layer (i.e., away from the glass layer).
    • Low-E玻璃涂层玻璃制品由玻璃基板和玻璃基板表面上的多层涂层构成。 实现了大于约72%的高透光率和令人满意的颜色特性。 该涂层包括邻近玻璃基板表面的透明电介质材料层,以及各自的氮化镍铬合金层和银层,其各自通过在含氮气氛中溅射涂覆在玻璃基板上形成。 最优选地,涂层还包括置于介电材料层和氮化镍铬合金层之间的氮氧化硅层。 氧氮化硅层可以包括氧气梯度层,其中氧浓度从氧氮化硅层中的一个位置降低到同一层中不同深度的另一个位置。 如果存在氧气梯度,则最优选地,氧浓度越大,层的底部越接近玻璃基底(即朝向玻璃基底),氧浓度越接近层的顶部(即,离开 从玻璃层)。