Thin film coatings on transparent substrates and methods of making and using thereof

    公开(公告)号:US11774637B1

    公开(公告)日:2023-10-03

    申请号:US17173881

    申请日:2021-02-11

    发明人: Hulya Demiryont

    摘要: Disclosed are transparent articles having a substrate adapted for carrying a transparent and electrically conductive thin film thereon. The thin film includes an optical matching-stress releasing layer directly deposited on the substrate; a first antireflection layer directly deposited on the optical matching layer; a metal layer adapted for infra-red reflection and electrical conductivity directly deposited on the first antireflection layer; a second antireflection layer deposited directly on the metal layer adapted for high visibility and infra-red transmission, and an optionally visible and infra-red region transparent outermost protective layer deposited on the second antireflection layer. In certain aspects, no buffer layer is positioned between the metal layer adapted for infra-red reflection and electrical conductivity and the second antireflection layer. The transparent articles have various uses including electrodes used in electrochromic devices and as glass treatments due to unique transparent, transmissive, and reflective properties.

    THIN FILM COATINGS ON TRANSPARENT SUBSTRATES AND METHODS OF MAKING AND USING THEREOF

    公开(公告)号:US20230393306A1

    公开(公告)日:2023-12-07

    申请号:US18235044

    申请日:2023-08-17

    发明人: Hulya Demiryont

    摘要: Disclosed are transparent articles having a substrate adapted for carrying a transparent and electrically conductive thin film thereon. The thin film includes an optical matching-stress releasing layer directly deposited on the substrate; a first antireflection layer directly deposited on the optical matching layer; a metal layer adapted for infra-red reflection and electrical conductivity directly deposited on the first antireflection layer; a second antireflection layer deposited directly on the metal layer adapted for high visibility and infra-red transmission, and an optionally visible and infra-red region transparent outermost protective layer deposited on the second antireflection layer. In certain aspects, no buffer layer is positioned between the metal layer adapted for infra-red reflection and electrical conductivity and the second antireflection layer. The transparent articles have various uses including electrodes used in electrochromic devices and as glass treatments due to unique transparent, transmissive, and reflective properties.

    Electrochromic device with buffer layer(s)

    公开(公告)号:US10996535B1

    公开(公告)日:2021-05-04

    申请号:US16677215

    申请日:2019-11-07

    发明人: Hulya Demiryont

    摘要: Electrochromic devices having buffer layer(s) that promote electron transfer between the second transparent electrode and second electrochromic layer while concurrently reducing or inhibiting deleterious chemical interaction between the second electrochromic layer and the second electrode and/or maintaining the conductive state of the second electrode and while the device changes the from a low transparency state of approximately 10-20% transmittance in the visible region to a high transparency state of approximately 75% to 95% transmittance in the visible region with at least a 70% difference in transmittance between the low and high transmittance states. In certain aspects, the electrochromic devices change from a low transparency state having a gray color to a high transparency state that is substantially colorless within 20 seconds of applying the selective electrical potential to the electrochromic device. Also disclosed are methods of making the electrochromic devices.

    Thin film coatings on transparent substrates and methods of making and using thereof

    公开(公告)号:US10948628B1

    公开(公告)日:2021-03-16

    申请号:US15622258

    申请日:2017-06-14

    发明人: Hulya Demiryont

    摘要: Disclosed are transparent articles having a substrate adapted for carrying a transparent and electrically conductive thin film thereon. The thin film includes an optical matching-stress releasing layer directly deposited on the substrate; a first antireflection layer directly deposited on the optical matching layer; a metal layer adapted for infra-red reflection and electrical conductivity directly deposited on the first antireflection layer; a second antireflection layer deposited directly on the metal layer adapted for high visibility and infra-red transmission, and an optionally visible and infra-red region transparent outermost protective layer deposited on the second antireflection layer. In certain aspects, no buffer layer is positioned between the metal layer adapted for infra-red reflection and electrical conductivity and the second antireflection layer. The transparent articles have various uses including electrodes used in electrochromic devices and as glass treatments due to unique transparent, transmissive, and reflective properties.

    Electrochromic layer
    6.
    发明申请
    Electrochromic layer 失效
    电致变色层

    公开(公告)号:US20030137712A1

    公开(公告)日:2003-07-24

    申请号:US10356220

    申请日:2003-01-31

    IPC分类号: G02F001/03 G02F001/07

    摘要: An improved electrochromic device comprising a substrate and a first conductive layer located on the transparent substrate. An ion storage layer is located on the first conductive layer. An electrolyte layer is located on the ion storage layer with an active layer being located on the electrolyte layer. A second conductive layer is located on the active layer

    摘要翻译: 一种改进的电致变色装置,其包括基板和位于透明基板上的第一导电层。 离子存储层位于第一导电层上。 电解质层位于离子存储层上,活性层位于电解质层上。 第二导电层位于有源层上

    Electrochromic device having various uses

    公开(公告)号:US12066734B1

    公开(公告)日:2024-08-20

    申请号:US17240005

    申请日:2021-04-26

    发明人: Hulya Demiryont

    摘要: Electrochromic devices having buffer layer(s) that promote electron transfer between the second transparent electrode and second electrochromic layer while concurrently reducing or inhibiting deleterious chemical interaction between the second electrochromic layer and the second electrode and/or maintaining the conductive state of the second electrode and while the device changes the from a low transparency state of approximately 10-20% transmittance in the visible region to a high transparency state of approximately 75% to 95% transmittance in the visible region with at least a 70% difference in transmittance between the low and high transmittance states. In certain aspects, the electrochromic devices change from a low transparency state having a gray color to a high transparency state that is substantially colorless within 20 seconds of applying the selective electrical potential to the electrochromic device.