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    • 3. 发明申请
    • Display Device With Solid Redox Centres
    • 显示设备与固体氧化还原中心
    • US20080186559A1
    • 2008-08-07
    • US11815565
    • 2006-02-06
    • Nicolaas P. WillardHenri Jagt
    • Nicolaas P. WillardHenri Jagt
    • G02F1/15
    • G02F1/1533G02F1/155G02F2001/1557G02F2202/022
    • A display device (1) comprises a base layer (2) and a top layer (4). A conduction layer (5) is applied to the base layer in a pattern, to form electrodes 6 and 8. These can be made of ITO coated with conductive PEDOT. An insulating isolation layer (14) is then applied in a pattern on top of the conduction layer (5) and fills in the spaces between the electrodes (6, 8) of the conduction layer (5). Gaps in the isolation layer (14) extend over a part of the electrodes. A conductive electrochromic material is deposited and fills in these gaps, to form redox centres 16 and 18 each in electrical contact with one of the electrodes 6 and 8. Sealing (20) defines a cavity, which is filled with a water-based electrolyte (22). The isolation layer (14) and the redox centres (16, 18) protect the electrodes (6, 8) from the electrolyte. Providing a light source and using transparent materials for all of the base layer (2), the top layer (4), the electrodes 6 and 8, and the isolation layer (14) allows the device (1) to be used for the transmission of light. Alternatively, one of the top and base layers (2, 4) can be reflective and the other transparent, in which case the device (1) can be used for light reflection. By selecting suitable materials, a washable and flexible display device can be constructed.
    • 显示装置(1)包括基层(2)和顶层(4)。 以图案将导电层(5)施加到基底层,以形成电极6和8。 这些可以由涂覆有导电PEDOT的ITO制成。 然后将绝缘隔离层(14)以图案涂覆在导电层(5)的顶部上,并填充在导电层(5)的电极(6,8)之间的空间中。 隔离层(14)中的间隙在电极的一部分上延伸。 沉积导电电致变色材料并填充这些间隙,以形成各自与电极6和8之一电接触的氧化还原中心16和18。 密封件(20)限定了空腔,其填充有水性电解质(22)。 隔离层(14)和氧化还原中心(16,18)保护电极(6,8)免受电解质的影响。 为所有基层(2)提供光源并使用透明材料,顶层(4),电极6和8以及隔离层(14)允许装置(1)用于传输 的光。 或者,顶层和底层(2,4)中的一个可以是反射的,另一个是透明的,在这种情况下,装置(1)可以用于光反射。 通过选择合适的材料,可以构建可洗涤和柔性的显示装置。
    • 5. 发明申请
    • Bistable Display Devices
    • 双稳态显示设备
    • US20080212165A1
    • 2008-09-04
    • US11917214
    • 2006-06-12
    • Henri JagtGuofu ZhouPeter Jan Slikkerveer
    • Henri JagtGuofu ZhouPeter Jan Slikkerveer
    • G02F1/167G02F1/00G09G3/34
    • G02F1/167G02F1/134327G09G3/04G09G3/344G09G2300/0439
    • A bistable display device comprises a first substrate (22) carrying, on one side, a plurality of electrode segments (28, 30) and supply lines (26) connecting to the segments. The electrode segments comprise a first set of electrode segments (30) which define the display regions for providing information to the user, and a second set of electrode segments (28) which defines a background display region. Each supply line (26) is sandwiched laterally between electrode segments such that the visual display output in the region of the supply line is substantially the same as that in the region of the electrode segments which sandwich the supply line. The electrode segments which sandwich the supply lines dominate the electric field distribution in the display medium layer so that visibility of the supply lines is reduced, even though they are formed on the same substrate surface as the electrode segments.
    • 双稳态显示装置包括在一侧承载多个电极段(28,30)和连接到段的电源线(26)的第一衬底(22)。 电极段包括限定用于向用户提供信息的显示区域的第一组电极段(30)和限定背景显示区域的第二组电极段(28)。 每个供应管线(26)横向地夹在电极段之间,使得在供应管线区域中的视觉显示输出与夹着供应管线的电极段的区域中的视觉显示输出基本相同。 夹着电源线的电极段支配显示介质层中的电场分布,使得供电线的可视性降低,即使它们形成在与电极段相同的衬底表面上。
    • 6. 发明申请
    • Display Device With Water-Based Electrolyte
    • 带水性电解液的显示装置
    • US20080130088A1
    • 2008-06-05
    • US11815566
    • 2006-02-06
    • Nicolaas P. WillardHenri Jagt
    • Nicolaas P. WillardHenri Jagt
    • G02F1/153G02F1/155
    • G02F1/155G02F1/15G02F1/15165G02F2001/1502G02F2001/1557G02F2001/164
    • A display device 1 comprises a base layer 2 and a top layer 4. A conduction layer 5 is applied to the base layer in a pattern, to form electrodes 6 and 8. These can be made of ITO coated with conductive PEDOT. An insulating isolation layer 14 is then applied in a pattern on top of the conduction layer 5 and fills in the spaces between the electrodes 6, 8 of the conduction layer 5. Gaps in the isolation layer 14 extend over a part of the electrodes. A conductive electrochromic material is deposited and fills in these gaps, to form redox centres 16 and 18 each in electrical contact with one of the electrodes 6 and 8. Sealing 20 defines a cavity, which is filled with a water-based electrolyte 22. The isolation layer 14 and the redox centres 16, 18 protect the electrodes 6,8 from the electrolyte. Providing a light source and using transparent materials for all of the base layer 2, the top layer 4, the electrodes 6 and 8, and the isolation layer 14 allows the device 1 to be used for the transmission of light. Alternatively, one of the top and base layers 2, 4 can be reflective and the other transparent, in which case the device 1 can be used for light reflection. By selecting suitable materials, a washable and flexible display device can be constructed.
    • 显示装置1包括基底层2和顶层4。 以图案将导电层5施加到基底层,以形成电极6和8。 这些可以由涂覆有导电PEDOT的ITO制成。 然后将绝缘隔离层14以导电层5顶部的图案施加,并填充在导电层5的电极6,8之间的空间中。 隔离层14中的间隙在电极的一部分上延伸。 沉积导电电致变色材料并填充这些间隙,以形成各自与电极6和8之一电接触的氧化还原中心16和18。 密封件20限定了空腔,其填充有水性电解质22。 隔离层14和氧化还原中心16,18保护电极6,8免受电解质的影响。 为所有基层2,顶层4,电极6和8以及隔离层14提供光源并使用透明材料,允许装置1用于透光。 或者,顶层和底层2,4中的一个可以是反射的,另一个是透明的,在这种情况下,装置1可以用于光反射。 通过选择合适的材料,可以构建可洗涤和柔性的显示装置。