DYE-LABELED POLYMER, SOLAR COLLECTOR AND METHODS FOR MANUFACTURING THE SAME, AND SOLAR CELL MODULE, AND OFF-GRID LAMP USING THE COLLECTOR
    1.
    发明申请
    DYE-LABELED POLYMER, SOLAR COLLECTOR AND METHODS FOR MANUFACTURING THE SAME, AND SOLAR CELL MODULE, AND OFF-GRID LAMP USING THE COLLECTOR 审中-公开
    戴标签聚合物,太阳能收集器及其制造方法,太阳能电池模块和使用收集器的离网灯

    公开(公告)号:US20130170192A1

    公开(公告)日:2013-07-04

    申请号:US13730344

    申请日:2012-12-28

    Abstract: A dye-labeled polymer includes a fluorescent dye moiety and a polymer moiety, wherein the fluorescent dye moiety and the polymer moiety are connected through a chemical bond.A luminescent solar collector is provided. The luminescent solar collector includes: a waveguide; a wavelength conversion material disposed on the waveguide, wherein the wavelength conversion material includes 0-95 parts by weight of a polymer material; and 5-100 parts by weight of the previously described dye-labeled polymer, wherein the polymer material is different from the dye-labeled polymer.A fluorescent column embedded solar collector includes: a waveguide; and at least one fluorescent column embedded in the waveguide, wherein the fluorescent column contains a wavelength conversion material.

    Abstract translation: 染料标记的聚合物包括荧光染料部分和聚合物部分,其中荧光染料部分和聚合物部分通过化学键连接。 提供发光太阳能收集器。 发光太阳能收集器包括:波导管; 设置在波导上的波长转换材料,其中所述波长转换材料包括0-95重量份的聚合物材料; 和5-100重量份前述染料标记的聚合物,其中聚合物材料不同于染料标记的聚合物。 荧光柱嵌入式太阳能收集器包括:波导管; 以及至少一个嵌入在所述波导中的荧光柱,其中所述荧光柱包含波长转换材料。

    TRANSPARENT DISPLAY
    2.
    发明公开
    TRANSPARENT DISPLAY 审中-公开

    公开(公告)号:US20240258456A1

    公开(公告)日:2024-08-01

    申请号:US18542771

    申请日:2023-12-18

    CPC classification number: H01L33/02 H01L25/0753 H01L33/52 H01L33/62

    Abstract: A transparent display includes a transparent substrate, a wiring layer, a plurality of light-emitting package units, and a plurality of connecting elements. The wiring layer is disposed on a surface of the transparent substrate. Each of the light-emitting package units includes a micro-substrate, frontward light-emitting elements, backward light-emitting elements, and a sealant. The micro-substrate has a first surface facing away from the transparent substrate and a second surface facing the transparent substrate. The frontward light-emitting elements are disposed on the first surface of the micro-substrate, in which the micro-substrate is configured to block the light from the frontward light-emitting elements toward the transparent substrate. The backward light-emitting elements are disposed on the second surface of the micro-substrate. The sealant covers the micro-substrate, the frontward light-emitting elements, and the backward light-emitting elements. The connecting elements electrically connect the light-emitting package units to the wiring layer, respectively.

Patent Agency Ranking