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    • 15. 发明申请
    • ELECTRO-OPTICAL ELEMENT INCLUDING IMI COATINGS
    • 电光元件包括IMI涂料
    • US20110080629A1
    • 2011-04-07
    • US12941724
    • 2010-11-08
    • George A. NeumanHenry A. LutenJohn S. AndersonJeffrey A. ForgetteScott W. VanderZwaag
    • George A. NeumanHenry A. LutenJohn S. AndersonJeffrey A. ForgetteScott W. VanderZwaag
    • G02F1/153
    • G02F1/155G02F1/157G02F1/161
    • An electrochromic element comprises a first substrate having a first surface and a second surface opposite the first surface, a second substrate in spaced-apart relationship to the first substrate and having a third surface facing the second surface and a fourth surface opposite the third surface, and an electrochromic medium located between the first and second substrates, wherein the electrochromic medium has a light transmittance that is variable upon application of an electric field thereto. The electrochromic element further comprises a transparent electrode layer covering at least a portion of at least a select one of the first surface, the second surface, the third surface, and the fourth surface, wherein the transparent electrode layer comprises an insulator/metal/insulator stack. The materials utilized to construct the insulator/metal/insulator stack are selected to optimize optical and physical properties of the electrochromic element such as reflectivity, color, electrical switch stability, and environmental durability.
    • 电致变色元件包括具有第一表面和与第一表面相对的第二表面的第一基底,与第一基底隔开关系并具有面向第二表面的第三表面和与第三表面相对的第四表面的第二基底, 以及位于第一和第二基板之间的电致变色介质,其中电致变色介质具有在施加电场时可变的透光率。 电致变色元件还包括覆盖第一表面,第二表面,第三表面和第四表面中的至少一个的至少一部分的透明电极层,其中透明电极层包括绝缘体/金属/绝缘体 堆栈 选择用于构建绝缘体/金属/绝缘体堆叠的材料以优化电致变色元件的光学和物理性质,例如反射率,颜色,电开关稳定性和环境耐久性。
    • 18. 发明授权
    • Hydrophobic coatings and methods
    • 疏水性涂料及方法
    • US07138186B2
    • 2006-11-21
    • US10771514
    • 2004-02-05
    • Henry A. Luten, III
    • Henry A. Luten, III
    • B32B9/04
    • C03C17/30C03C17/42C03C2217/76Y10T428/31612Y10T428/31663
    • Substrates have a hydrophobic surface coating comprised of the reaction products of methyltrichlorsilane (MTCS) and dimethyldichlorosilane (DMDCS). Most preferably the substrate is glass. An anchor layer is most preferably formed directly onto the glass substrate surface by means of the application of a humidified reaction product of silicon tetrachloride, followed by the vapor-deposition of MTCS as a cross-linking layer. The hydrophobic layer of MTCS and DMDCS may then be applied over the cross-linking layer of MTCS. A capping layer formed of trimethylchlorosilane (TMCS) may then be vapor deposited onto the hydrophobic layer.
    • 底物具有由甲基三氯硅烷(MTCS)和二甲基二氯硅烷(DMDCS)的反应产物组成的疏水表面涂层。 最优选地,基底是玻璃。 锚定层最优选通过施加四氯化硅的加湿反应产物直接形成在玻璃基板表面上,随后将MTCS作为交联层进行气相沉积。 然后可以在MTCS的交联层上施加MTCS和DMDCS的疏水层。 然后可以将由三甲基氯硅烷(TMCS)形成的覆盖层气相沉积到疏水层上。