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    • 4. 发明公开
    • MULTIFUNCTIONAL STATIC OR SEMI-STATIC PHOTOVOLTAIC SKYLIGHT AND/OR METHODS OF MAKING THE SAME
    • 多功能静态或半静态的屋顶光伏Windows和/或方法及其生产
    • EP3050123A1
    • 2016-08-03
    • EP14780724.2
    • 2014-09-22
    • Guardian Industries Corp.
    • DEN BOER, WillemWENG, Jian-GangAKKASHIAN, Eric W.VEERASAMY, Vijayen S.THOMSEN, Scott V.
    • H01L31/052
    • H01L31/0543Y02A30/62Y02B10/10Y02E10/52
    • Improved building-integrated photovoltaic systems according to certain example embodiments may include concentrated photovoltaic skylights or other windows having a cylindrical lens array. The skylight may include an insulated glass unit, which may improve the Solar Heat Gain Coefficient (SHGC). The photovoltaic skylight and lens arrays may be used in combination with strip solar cells. Arrangements that involve lateral displacement tracking systems, or static systems (e.g., that are fixed at one, two, or more predefined positions) are contemplated herein. Such techniques may advantageously help to reduce cost per watt related, in part, to the potentially reduced amount of semiconductor material to be used for such example embodiments. A photovoltaic skylight may permit diffuse daylight to pass through into an interior of a building so as to provide lighting inside the building, while the strip solar cells absorb the direct sunlight and convert it to electricity, providing for SHGC tuning.
    • 改善光伏建筑一体化系统雅丁某些示例实施例可以包括具有柱面透镜阵列聚光光伏天窗或其他窗口。 天窗可以包括在绝缘玻璃单元,其可提高太阳能热增益系数(SHGC)。 光伏天窗和透镜阵列可以与条带的太阳能电池组合使用。 安排确实涉及横向位移跟踪系统,或静态系统(例如,没有被固定在一个,两个,或多个预定位置)中是可预期的。 搜索技术可以有利地有助于减少每相关瓦费用,部分地半导体材料的潜在减少的量将被用于搜索的示例实施例。 一种光伏天窗可以允许漫射的日光穿过到建筑物的内部,以便提供建筑物内的照明,而条带的太阳能电池吸收日光直射,并将其转换为电能,从而为SHGC调谐。
    • 8. 发明公开
    • METHODS FOR LOW-TEMPERATURE GRAPHENE PRECIPITATION ONTO GLASS, AND ASSOCIATED ARTICLES/DEVICES
    • 方法低温GRAPHENAUSFÄLLUNG在玻璃和相关产品/设备
    • EP2969945A1
    • 2016-01-20
    • EP14729493.8
    • 2014-03-13
    • Guardian Industries Corp.
    • VEERASAMY, Vijayen S.
    • C01B31/04C23C26/00
    • C01B31/0453B82Y30/00B82Y40/00C01B32/186C23C16/0281C23C16/26C23C26/00H01B13/0026Y10T29/49002Y10T156/10
    • Certain example embodiments relate to methods for large area graphene precipitation onto glass, and associated articles/devices. For example, coated articles including graphene-inclusive films on substrates, and/or methods of making the same, are provided. A metal-inclusive catalyst layer (e.g., of or including Ni and/or the like) is disposed on the substrate. The substrate with the catalyst layer thereon is exposed to a precursor gas and a strain-inducing gas at a temperature of no more than 350-600 degrees C for 10s or 100s of minutes. Graphene is formed and/or allowed to form both over and contacting the catalyst layer, and between the substrate and the catalyst layer, in making the coated article. The catalyst layer, together with graphene formed thereon, is removed, e.g., through excessive strain introduced into the catalyst layer as associated with the graphene formation. Products including such articles, and/or methods of making the same, also are contemplated.
    • 某些示例实施例涉及一种用于大面积的石墨烯沉淀法在玻璃上,以及相关的物品/装置。 例如,包含在基板上的石墨烯包容膜,和/或制备其的方法涂布的制品中,提供了。 的金属包层的催化剂(E. G.,或包括Ni和/或类似物)被设置在基底上。 其上具有催化剂层的基材在不超过350〜600℃下10秒或分钟的100秒的温度下暴露于前体气体和应变诱导气体。 石墨烯形成和/或允许形成两种以上并接触催化剂层,以及在基板和催化剂层,在使涂覆的制品之间。 催化剂层中,在其上的石墨烯形成在一起,被移除,E. G.,通过过度应变引入到催化剂层与所述石墨烯形成相关。 产品,包括搜索的文章,和/或制造相同的方法,因此被考虑。