SOLAR CELL MODULE AND METHOD OF MANUFACTURE THEREOF

    公开(公告)号:US20170345960A1

    公开(公告)日:2017-11-30

    申请号:US15485831

    申请日:2017-04-12

    摘要: Provided herein is a solar cell module with which high output can be achieved through wavelength conversion of shorter wavelength light to longer wavelength light while extending life by removing ultraviolet light. A method of manufacture of the solar cell module is also provided. The solar cell module includes a back sheet, a first sealing material layer, a plurality of photoelectric conversion devices that are electrically connected to one another by an electrode material, a second sealing material layer, and a protective glass that are laminated in this order. The second sealing material layer is configured from a first layer, a second layer, and a third layer. The first layer is disposed in contact with the protective glass, and formed of a transparent material containing a phosphor. The third layer is disposed in contact with the photoelectric conversion, devices, and formed of a transparent material containing an ultraviolet absorber. The second layer is a transparent material disposed between the first layer and the third layer.

    Solar redshift systems
    68.
    发明授权
    Solar redshift systems 有权
    太阳能红移系统

    公开(公告)号:US09560812B2

    公开(公告)日:2017-02-07

    申请号:US14232467

    申请日:2012-06-20

    摘要: Solar-redshift systems comprise an integral array of redshift modules, each having at least a focusing device, a target, and a quantum-dot vessel. The quantum-dot vessel contains quantum dots that emit light having an emission wavelength. The focusing device directs incident solar radiation through a focusing gap and toward the quantum-dot vessel, or into a slab waveguide and then toward the quantum-dot vessel, causing the quantum dots to emit redshifted light having the emission wavelength. The redshifted light is directed to the target, examples of which include a photovoltaic material or a living photosynthetic organism. The target has increased sensitivity or response to photons having the wavelength of the redshifted light. A trapping reflector component of the quantum-dot vessel prevents loss of redshifted light to the environment outside the solar-redshift system and allows undesirable infrared light to be removed from the system.

    摘要翻译: 太阳能 - 红移系统包括一个整体阵列的红移模块,每个红移模块至少有一个聚焦装置,一个靶和一个量子点容器。 量子点容器包含发射具有发射波长的光的量子点。 聚焦装置将入射的太阳辐射通过聚焦间隙引向量子点容器,或者进入平板波导,然后朝向量子点容器,导致量子点发射具有发射波长的红移光。 红移光指向目标,其实例包括光伏材料或活的光合生物。 目标已经增加了对具有红移光的波长的光子的灵敏度或响应。 量子点容器的捕获反射器部件防止红移红光移动到太阳红移系统外部的环境,并允许从系统中去除不需要的红外光。

    PHOTOELECTRIC CONVERSION ELEMENT
    69.
    发明申请
    PHOTOELECTRIC CONVERSION ELEMENT 有权
    光电转换元件

    公开(公告)号:US20170025558A1

    公开(公告)日:2017-01-26

    申请号:US15165103

    申请日:2016-05-26

    摘要: A photoelectric conversion element includes a superlattice semiconductor layer including barrier sub-layers and quantum sub-layers (quantum dot sub-layers) alternately stacked and also includes a wavelength conversion layer containing a wavelength conversion material converting the wavelength of incident light. The wavelength conversion layer converts incident light into light with a wavelength corresponding to an optical transition from a quantum level of the conduction band of the superlattice semiconductor layer to a continuum level of the conduction band.

    摘要翻译: 光电转换元件包括交替堆叠的包括势垒子层和量子子层(量子点子层)的超晶格半导体层,并且还包括含有转换入射光波长的波长转换材料的波长转换层。 波长转换层将入射光转换成具有对应于从超晶格半导体层的导带的量子水平到导带的连续层的光学跃迁的波长的光。