METHOD OF DEPOSITING NIOBIUM DOPED TITANIA FILM ON A SUBSTRATE AND THE COATED SUBSTRATE MADE THEREBY
    8.
    发明申请
    METHOD OF DEPOSITING NIOBIUM DOPED TITANIA FILM ON A SUBSTRATE AND THE COATED SUBSTRATE MADE THEREBY 审中-公开
    在底物上沉积铌酸钡薄膜的方法及其涂覆的基板

    公开(公告)号:US20140037988A1

    公开(公告)日:2014-02-06

    申请号:US14047324

    申请日:2013-10-07

    IPC分类号: H01B13/00

    摘要: A coated article includes an applied transparent electrically conductive oxide film of niobium doped titanium oxide. The article can be made by using a coating mixture having a niobium precursor and a titanium precursor. The coating mixture is directed toward a heated substrate to decompose the coating mixture and to deposit a transparent electrically conductive niobium doped titanium oxide film on the surface of the heated substrate. In another coating process, the mixed precursors are moved toward the substrate positioned in a plasma area between spaced electrodes to coat the surface of the substrate. Optionally, the substrate can be heated or maintained at room temperature. The deposited niobium doped titanium oxide film has a sheet resistance greater than 1.2 ohms/square and an index of refraction of 1.00 or greater. The chemical formula for the niobium doped titanium oxide is Nb:TiOX where X is in the range of 1.8-2.1.

    摘要翻译: 涂覆制品包括掺铌氧化钛的透明导电氧化物膜。 该制品可以通过使用具有铌前体和钛前体的涂料混合物来制备。 涂层混合物指向加热的基底以分解涂层混合物并在被加热的基底的表面上沉积透明导电的掺铌的氧化钛膜。 在另一涂覆工艺中,将混合的前体移动到位于间隔电极之间的等离子体区域中的衬底上以涂覆衬底的表面。 任选地,可以将基底加热或保持在室温。 沉积的掺铌氧化钛薄膜的薄层电阻大于1.2欧姆/平方,折射率为1.00或更大。 掺杂铌的氧化钛的化学式是Nb:TiOX,其中X在1.8-2.1的范围内。

    Thermally switched optical downconverting filter
    9.
    发明授权
    Thermally switched optical downconverting filter 有权
    热交换光学下变频滤波器

    公开(公告)号:US08593581B2

    公开(公告)日:2013-11-26

    申请号:US13107626

    申请日:2011-05-13

    IPC分类号: G02F1/1335

    摘要: A thermally switched optical downconverting (TSOD) filter is a self-regulating device including a downconverter that converts incoming light at a variety of wavelengths into longer-wavelength radiation and then directs it using one or more bandblock filters in either the inward or outward direction, depending on the temperature of the device. This control over the flow of radiant energy occurs independently of the thermal conductivity or insulating properties of the device and may or may not preserve the image and color properties of incoming visible light. The TSOD filter is energy-efficient as it can be used to regulate the internal temperature and illumination of buildings, vehicles, and other structures without the need for an external power supply or operator signals. The TSOD filter has unique aesthetic and optical properties not found in traditional windows, skylights, stained glass, light fixtures, glass blocks, bricks, or walls.

    摘要翻译: 热交换光学下变频(TSOD)滤波器是一种自调节装置,其包括将各种波长的入射光转换成更长波长辐射的下变频器,然后使用一个或多个带阻滤波器向内或向外引导它, 取决于设备的温度。 对辐射能量流的这种控制独立于设备的导热性或绝缘性能而发生,并且可以保持或不保留入射的可见光的图像和颜色特性。 TSOD过滤器是节能的,因为它可用于调节建筑物,车辆和其他结构的内部温度和照明,而无需外部电源或操作员信号。 TSOD过滤器在传统的窗户,天窗,彩色玻璃,灯具,玻璃砖,砖块或墙壁上都没有发现独特的美学和光学特性。