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    • 2. 发明申请
    • Nano-particle loaded metal oxide matrix coatings deposited via combustion deposition
    • 通过燃烧沉积沉积的纳米颗粒负载金属氧化物基质涂层
    • US20090233084A1
    • 2009-09-17
    • US12076100
    • 2008-03-13
    • Michael P. Remington, JR.
    • Michael P. Remington, JR.
    • B05D1/12B32B5/16B32B17/06
    • C03C17/002C03C17/007C03C2217/477C03C2217/478C03C2217/71C03C2217/732C03C2217/75C03C2218/10C03C2218/335C03C2218/36C03C2218/365C23C16/40C23C16/453
    • Certain example embodiments relate to coatings comprising nano-particle loaded metal oxide matrices deposited via combustion deposition. The matrix and the nano-particles comprising the coating may be of or include the same metal or a different metal. For example, the coating may include a silicon oxide matrix (e.g., SiO2, or other suitable stoichiometry) having silicon oxide (e.g., silica), titanium oxide (e.g., TiO2, titania, or other suitable stoichiometry), and/or other nano-particles embedded therein. In certain example embodiments, the coating may serve as an anti-reflective (AR) coating and, in certain example embodiments, a percent visible transmission gain of at least about 2.0%, and more preferably between about 3.0-3.5%, may be realized through the growth of a film on a first surface of the substrate. In certain example embodiments, the microstructure of the final deposited coating may resemble the microstructure of coatings produced by wet chemical (e.g., sol gel) techniques.
    • 某些示例性实施方案涉及包含通过燃烧沉积沉积的载有纳米颗粒的金属氧化物基质的涂层。 基质和包含该涂层的纳米颗粒可以是或包括相同的金属或不同的金属。 例如,涂层可以包括具有氧化硅(例如二氧化硅),氧化钛(例如,TiO 2,二氧化钛或其它合适的化学计量)的氧化硅基体(例如,SiO 2或其它合适的化学计量)和/或其它纳米 其中嵌入的颗粒。 在某些示例性实施例中,涂层可以用作抗反射(AR)涂层,并且在某些示例性实施例中,可以实现至少约2.0%,更优选在约3.0-3.5%之间的百分比可见透射增益 通过在衬底的第一表面上生长膜。 在某些示例性实施例中,最终沉积的涂层的微结构可类似于通过湿化学(例如,溶胶凝胶)技术产生的涂层的微结构。
    • 10. 发明授权
    • Nano-particle loaded metal oxide matrix coatings deposited via combustion deposition
    • 通过燃烧沉积沉积的纳米颗粒负载金属氧化物基质涂层
    • US08795773B2
    • 2014-08-05
    • US12076100
    • 2008-03-13
    • Michael P. Remington, Jr.
    • Michael P. Remington, Jr.
    • C23C16/00C23C16/40
    • C03C17/002C03C17/007C03C2217/477C03C2217/478C03C2217/71C03C2217/732C03C2217/75C03C2218/10C03C2218/335C03C2218/36C03C2218/365C23C16/40C23C16/453
    • Certain example embodiments relate to coatings comprising nano-particle loaded metal oxide matrices deposited via combustion deposition. The matrix and the nano-particles comprising the coating may be of or include the same metal or a different metal. For example, the coating may include a silicon oxide matrix (e.g., SiO2, or other suitable stoichiometry) having silicon oxide (e.g., silica), titanium oxide (e.g., TiO2, titania, or other suitable stoichiometry), and/or other nano-particles embedded therein. In certain example embodiments, the coating may serve as an anti-reflective (AR) coating and, in certain example embodiments, a percent visible transmission gain of at least about 2.0%, and more preferably between about 3.0-3.5%, may be realized through the growth of a film on a first surface of the substrate. In certain example embodiments, the microstructure of the final deposited coating may resemble the microstructure of coatings produced by wet chemical (e.g., sol gel) techniques.
    • 某些示例性实施方案涉及包含通过燃烧沉积沉积的载有纳米颗粒的金属氧化物基质的涂层 基质和包含该涂层的纳米颗粒可以是或包括相同的金属或不同的金属。 例如,涂层可以包括具有氧化硅(例如二氧化硅),氧化钛(例如,TiO 2,二氧化钛或其它合适的化学计量)的氧化硅基体(例如SiO 2或其它合适的化学计量)和/或其它纳米 其中嵌入的颗粒。 在某些示例性实施例中,涂层可以用作抗反射(AR)涂层,并且在某些示例性实施例中,可以实现至少约2.0%,更优选在约3.0-3.5%之间的百分比可见透射增益 通过在基板的第一表面上生长膜。 在某些示例性实施例中,最终沉积的涂层的微结构可类似于通过湿化学(例如,溶胶凝胶)技术产生的涂层的微结构。