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    • 3. 发明申请
    • FABRICATION OF LOW DEFECTIVITY ELECTROCHROMIC DEVICES
    • 低缺陷电致发光器件的制造
    • WO2015168166A1
    • 2015-11-05
    • PCT/US2015/028067
    • 2015-04-28
    • VIEW, INC.
    • PRADHAN, Anshu A.ROZBICKI, Robert T.GILLASPIE, DaneKAILASAM, Sridhar K.
    • G02F1/15
    • G02F1/1523C23C14/08C23C14/185C23C14/568G02F2202/06
    • Prior electrochromic devices frequently suffer from high levels of defectivity. The defects may be manifest as pin holes or spots where the electrochromic transition is impaired. This is unacceptable for many applications such as electrochromic architectural glass. Improved electrochromic devices with low defectivity can be fabricated by depositing certain layered components of the electrochromic device in a single integrated deposition system. While these layers are being deposited and/or treated on a substrate, for example a glass window, the substrate never leaves a controlled ambient environment, for example a low pressure controlled atmosphere having very low levels of particles. These layers may be deposited using physical vapor deposition. In certain embodiments, the device includes a counter electrode having an anodically coloring electrochromic material in combination with an additive.
    • 先前的电致变色器件经常遭受高水平的缺陷。 缺陷可能表现为电致变色转变受损的针孔或斑点。 这对于许多应用如电致变色建筑玻璃是不可接受的。 具有低缺陷性的改进的电致变色器件可以通过将电致变色器件的某些分层部件沉积在单个集成沉积系统中来制造。 虽然这些层在基底(例如玻璃窗)上沉积和/或处理,但是基底不会离开受控的周围环境,例如具有非常低水平的颗粒的低压控制气氛。 可以使用物理气相沉积来沉积这些层。 在某些实施方案中,该装置包括具有与添加剂组合的阳极着色电致变色材料的对电极。
    • 10. 发明申请
    • ELECTROCHROMIC DEVICES
    • 电致发光器件
    • WO2015168626A1
    • 2015-11-05
    • PCT/US2015/028899
    • 2015-05-01
    • VIEW, INC.
    • GILLASPIE, DaneKAILASAM, Sridhar K.PRADHAN, Anshu A.ROZBICKI, Robert T.
    • G02F1/15
    • G02F1/1523G02F1/1508G02F1/1525G02F2001/1555
    • Conventional electrochromic devices frequently suffer from poor reliability and poor performance. Improvements are made using entirely solid and inorganic materials. Electrochromic devices are fabricated by forming an ion conducting electronically-insulating interfacial region that serves as an IC layer. In some methods, the interfacial region is formed after formation of an electrochromic and a counter electrode layer. The interfacial region contains an ion conducting electronically-insulating material along with components of the electrochromic and/or the counter electrode layer. Materials and microstructure of the electrochromic devices provide improvements in performance and reliability over conventional devices. In various embodiments, a counter electrode is fabricated to include a base anodically coloring material and one or more additives.
    • 常规的电致变色器件经常具有差的可靠性和差的性能。 使用完全固体和无机材料进行改进。 通过形成用作IC层的离子传导电绝缘界面区域来制造电致变色器件。 在一些方法中,在形成电致变色剂和对电极层之后形成界面区域。 界面区域包含离子传导电绝缘材料以及电致变色和/或对电极层的成分。 与常规设备相比,电致变色器件的材料和微结构提供了性能和可靠性的改进。 在各种实施例中,制造对电极以包括基底阳极着色材料和一种或多种添加剂。