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    • 10. 发明申请
    • Electrochromic Device And Method For Making Electrochromic Device
    • 电致变色器件及制造电致变色器件的方法
    • US20100165440A1
    • 2010-07-01
    • US12347953
    • 2008-12-31
    • Paul P. NguyenShiwei Liu
    • Paul P. NguyenShiwei Liu
    • G02F1/155B05D5/12C23C14/34B44C1/22
    • G02F1/155C23C14/083C23C14/086C23C14/18G02F2001/1555
    • A method for lithiating an electrochromic device comprise forming a first transparent conductive layer on a substrate, forming an electrochromic structure on the first transparent conductive layer, forming a second transparent conductive layer on the electrochromic structure, and lithiating the electrochromic structure through the second transparent conductive layer. In one exemplary embodiment lithiating the electrochromic structure comprises lithiating the electrochromic structure at a temperature range of between about room temperature and about 500 C for the duration of the lithiation process. In another exemplary embodiment, lithiating the electrochromic structure further comprises lithiating the electrochromic structure by using at least one of sputtering, evaporation, laser ablation and exposure to a lithium salt. The electrochromic device can be configured in either a “forward” or a “reverse” stack configuration.
    • 一种用于锂化电致变色装置的方法包括在基板上形成第一透明导电层,在第一透明导电层上形成电致变色结构,在电致变色结构上形成第二透明导电层,并通过第二透明导电层 层。 在一个示例性实施方案中,锂化电致变色结构包括在锂化过程的持续时间内在约室温至约500℃的温度范围内对电致变色结构进行锂化。 在另一个示例性实施方案中,锂化电致变色结构还包括通过使用溅射,蒸发,激光烧蚀和暴露于锂盐中的至少一种来锂化电致变色结构。 电致变色器件可以配置为“正向”或“反向”堆叠配置。