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WO2019085478A1 - 有机电致发光器件、显示器及移动通信设备 - Google Patents

有机电致发光器件、显示器及移动通信设备 Download PDF

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Publication number
WO2019085478A1
WO2019085478A1 PCT/CN2018/090275 CN2018090275W WO2019085478A1 WO 2019085478 A1 WO2019085478 A1 WO 2019085478A1 CN 2018090275 W CN2018090275 W CN 2018090275W WO 2019085478 A1 WO2019085478 A1 WO 2019085478A1
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WIPO (PCT)
Prior art keywords
electrode
pixel defining
blocks
organic electroluminescent
electroluminescent device
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PCT/CN2018/090275
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English (en)
French (fr)
Inventor
刘权
张露
胡思明
韩珍珍
Original Assignee
昆山国显光电有限公司
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Application filed by 昆山国显光电有限公司 filed Critical 昆山国显光电有限公司
Priority to KR1020197033938A priority Critical patent/KR102365947B1/ko
Priority to EP18872604.6A priority patent/EP3614438A4/en
Priority to US16/322,271 priority patent/US10978525B2/en
Priority to JP2019564459A priority patent/JP6900511B2/ja
Publication of WO2019085478A1 publication Critical patent/WO2019085478A1/zh

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    • HELECTRICITY
    • H10SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
    • H10KORGANIC ELECTRIC SOLID-STATE DEVICES
    • H10K59/00Integrated devices, or assemblies of multiple devices, comprising at least one organic light-emitting element covered by group H10K50/00
    • H10K59/10OLED displays
    • H10K59/12Active-matrix OLED [AMOLED] displays
    • H10K59/131Interconnections, e.g. wiring lines or terminals
    • HELECTRICITY
    • H10SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
    • H10KORGANIC ELECTRIC SOLID-STATE DEVICES
    • H10K59/00Integrated devices, or assemblies of multiple devices, comprising at least one organic light-emitting element covered by group H10K50/00
    • H10K59/10OLED displays
    • H10K59/12Active-matrix OLED [AMOLED] displays
    • H10K59/122Pixel-defining structures or layers, e.g. banks
    • HELECTRICITY
    • H10SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
    • H10KORGANIC ELECTRIC SOLID-STATE DEVICES
    • H10K50/00Organic light-emitting devices
    • H10K50/80Constructional details
    • H10K50/805Electrodes
    • HELECTRICITY
    • H10SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
    • H10KORGANIC ELECTRIC SOLID-STATE DEVICES
    • H10K59/00Integrated devices, or assemblies of multiple devices, comprising at least one organic light-emitting element covered by group H10K50/00
    • H10K59/10OLED displays
    • H10K59/17Passive-matrix OLED displays
    • H10K59/173Passive-matrix OLED displays comprising banks or shadow masks
    • HELECTRICITY
    • H10SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
    • H10KORGANIC ELECTRIC SOLID-STATE DEVICES
    • H10K2102/00Constructional details relating to the organic devices covered by this subclass
    • H10K2102/301Details of OLEDs
    • H10K2102/302Details of OLEDs of OLED structures

Definitions

  • the present application belongs to the field of organic electroluminescent devices, and in particular to an improvement in the layout of the overlap region of an organic electroluminescent device.
  • OLED Organic Light Emitting Diode
  • the technical problem to be solved by the present application is that the aperture ratio of the organic electroluminescent device in the cathode overlapping region is insufficient, resulting in uneven brightness of the screen body, and the present application provides an organic electroluminescent device, a display thereof and Applied mobile communication device.
  • An organic electroluminescent device having a landing region, the overlapping region being located at an edge of the non-display area, comprising:
  • a pixel defining layer disposed on the first electrode, the pixel defining layer further comprising a plurality of pixel defining blocks;
  • An isolation layer disposed on the pixel defining layer, the support blocks being respectively on the plurality of pixel defining blocks;
  • a second electrode covering the first electrode, the plurality of pixel defining blocks, and the plurality of supporting blocks in the overlapping region, the second electrode overlapping the first electrode.
  • a vertical projection position of the plurality of support blocks of the isolation layer is the same as a vertical projection position of the plurality of pixel defining blocks of the pixel defining layer.
  • any one of the plurality of pixel defining blocks is larger than the area of the corresponding supporting block.
  • the first electrode of the organic electroluminescent device of the present application further includes a plurality of openings in the overlapping region, the arrangement of the plurality of openings and the plural of the pixel defining layer
  • the pixel-defining blocks are arranged in the same way.
  • a vertical projection position of the plurality of openings of the first electrode is the same as a vertical projection position of the plurality of pixel defining blocks of the pixel defining layer.
  • the pixel defining block of the pixel defining layer is filled and covers the plurality of openings of the first electrode.
  • the first electrode and the second electrode are transparent electrodes.
  • the plurality of support blocks and the plurality of pixel defining blocks are both organic materials.
  • the present application also includes an organic electroluminescent display comprising a flexible printed wiring board (FPC) and a power interface, and the organic electroluminescent display employs the aforementioned organic electroluminescent device.
  • an organic electroluminescent display comprising a flexible printed wiring board (FPC) and a power interface
  • the organic electroluminescent display employs the aforementioned organic electroluminescent device.
  • the application also includes a mobile communication device comprising a communication device and a display device, the display device being the aforementioned organic electroluminescent display.
  • the organic electroluminescent device of the present application can reduce the shielding of the cathode overlapping region and increase the aperture ratio of the cathode overlapping region by the same arrangement or vertical projection position of the supporting block and the pixel defining block. , reducing the voltage drop of the Vss lead, thereby improving the problem of uneven brightness of the screen.
  • the organic electroluminescent device of the present application can also reduce the shielding of the cathode overlapping region, increase the aperture ratio of the cathode overlapping region, and reduce the Vss by the arrangement of the supporting blocks, the arrangement of the openings or the vertical projection position.
  • the lead voltage drops, thereby improving the problem of uneven brightness of the screen.
  • the organic electroluminescent device of the present application can be stacked by the present application, so that the thickness from the bottom end of the substrate to the support block can be the same or close regardless of the overlap region or the display region, which is advantageous for improving the organic electroluminescent device. Screen body impact resistance.
  • FIG. 1 is a schematic structural view of an organic electroluminescent device according to an embodiment of the present application.
  • Figure 2 is a cross-sectional view along line A-A' of the structure of an organic electroluminescent device according to an embodiment of the present application;
  • FIG 3 is an enlarged schematic view showing a lap joint region of an organic electroluminescent device structure according to an embodiment of the present application.
  • the substrate 1 includes a display area 11 and a non-display area 12.
  • the display area 11 is disposed on the substrate 10, and the non-display area 12 is disposed on an area outside the display area 11 on the substrate 10.
  • the non-display area 12 also includes a landing area 121 and a drive circuit area 122.
  • the lap area 121 is located at the edge of the non-display area 12, and the drive circuit area 122 is located between the lap area 121 and the display area 11.
  • the lap area 121 is a cathode lap area, but the present application is not limited thereto.
  • Fig. 2 is a cross-sectional view taken along line A-A' of the structure of an organic electroluminescent device according to an embodiment of the present application.
  • the cross-sectional view taken along line A-A' of Fig. 2 is a cross-sectional view of the overlapping region 121 of the non-display area 12 of Fig. 1.
  • the overlap region 121 of the organic electroluminescent device of the present application further includes a planarization layer 2, a pixel defining layer, a first electrode 41, a second electrode 42, and an isolation layer.
  • the planarization layer 2 is disposed on the substrate 1, and the first electrode 41 is disposed on the planarization layer 2 of the overlap region.
  • the pixel defining layer is disposed on the first electrode 41, and the pixel defining layer further includes a plurality of pixel defining blocks 3.
  • the isolation layer is disposed on the pixel defining layer, and the isolation layer further includes a plurality of support blocks 5.
  • the second electrode 42 covers the first electrode 41, the plurality of pixel defining blocks 3, and the plurality of supporting blocks 5 in the overlapping region 121.
  • the second electrode 42 overlaps the first electrode 41.
  • the first electrode 41 may be an anode layer in an organic electroluminescent device process
  • the second electrode 42 may be a cathode layer in an organic electroluminescent device process.
  • the second electrode 42 is connected to the first electrode 41 and connected by superposition. This method is also called lap joint.
  • the first electrode 41 and the second electrode 42 are transparent electrodes, and the second electrode 42 may also have a unitary structure.
  • the plurality of pixel defining blocks 3 and the plurality of supporting blocks 5 may both be organic materials, but the application is not limited thereto.
  • the overlapping area 121 the arrangement manner of the plurality of support blocks 5 of the isolation layer and the arrangement of the plurality of pixels defining the block 3 of the pixel defining layer are described. the same.
  • the vertical projection positions of the plurality of support blocks 5 of the isolation layer are the same as the vertical projection positions of the plurality of pixel defining blocks 3 of the pixel defining layer.
  • the area of the plurality of pixel defining blocks 3 of the pixel defining layer may be larger than the plurality of supporting blocks 5 of the isolation layer, but the application is not limited thereto.
  • the first electrode 41 further includes a plurality of openings 410 in the overlap region 121.
  • the plurality of openings 410 may be cylindrical, square cylindrical or tapered, but the application is not limited thereto.
  • the plurality of openings 410 are arranged in the same manner as the plurality of pixel defining blocks 3 of the pixel defining layer.
  • the vertical projection positions of the plurality of openings 410 of the first electrode 41 are the same as the vertical projection positions of the plurality of pixel defining blocks 3 of the pixel defining layer.
  • the pixel defining block 3 of the pixel defining layer may further be a plurality of openings 410 filled and covered by the first electrode 41.
  • FIG. 3 is an enlarged schematic view showing a lap joint region of an organic electroluminescent device structure according to an embodiment of the present application.
  • FIG. 3 is a partially enlarged plan view showing a top view of the M region in the overlap region 121 of the non-display area of FIG.
  • a plurality of support blocks 5 overlap with the pixel defining block 3
  • a plurality of openings 410 are actually overlapped with a plurality of pixel defining blocks 3 of the pixel defining layer.
  • the vertical projection positions of the plurality of pixel defining blocks 3 of the pixel defining layer are the same as the vertical projection positions of the plurality of openings 410 of the first electrode 41, and the plurality of supporting blocks 5 of the isolation layer are further
  • the vertical projection position is the same as the vertical projection position of the plurality of pixel defining blocks 3 of the pixel defining layer, so it can be understood that the vertical projection positions of the pixel defining block 3, the opening 410, and the supporting block 5 can all be the same.
  • a plurality of support blocks 5 and a plurality of pixel defining blocks 3 are arranged with an interval, and the separation distance may be equidistant, the difference is increased, or the difference is reduced, so the plurality of supports of the isolation layer are supported.
  • the arrangement of the blocks 5 is the same as the arrangement of the plurality of pixel defining blocks 3 of the pixel defining layer.
  • the area of the pixel defining block 3 may be greater than or equal to the area of the supporting block 5, and is adaptively adjusted according to actual design requirements. In the illustration of the embodiment, the area of the pixel defining block 3 is larger than the area of the supporting block 5, However, this application is not limited to this.
  • the arrangement of the pixel defining block 3 and the supporting block 5 in the overlapping area 121 may be the same as the arrangement of the pixel defining block 3 and the supporting block 5 in the display area 11.
  • the organic electroluminescent device of the present application can be used in the stacking manner of the present application, so that the thickness from the bottom end of the substrate 1 to the support block 5 is the same or close to the overlapping region 121 or the display region 11, which is advantageous for enhancing the organic electroluminescence.
  • the screen body impact resistance of the device.
  • the organic electroluminescent device can pass the ball test of the quality inspection to perform the quality test on the impact resistance of the screen body.
  • the pass rate of the organic electroluminescent device in the embodiment of the present application is significantly higher than that in the prior art, which is sufficient to confirm the application.
  • the organic electroluminescent device of the embodiment can effectively improve the impact resistance of the screen body.
  • the organic electroluminescent device of the present application can reduce the shielding of the cathode overlapping region and increase the aperture ratio of the cathode overlapping region by the arrangement of the pixel defining block 3, the supporting block 5 and the opening 410 or the vertical projection position. Reduce the voltage drop of the Vss lead, thereby improving the problem of uneven brightness of the screen.
  • the present application further proposes an organic electroluminescent display comprising a flexible printed wiring board (FPC) and a power supply interface, and the organic electroluminescent display employs the aforementioned organic electroluminescent device.
  • a mobile communication device including a communication device and a display device, and the display device is the aforementioned organic electroluminescence display.

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  • Engineering & Computer Science (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Electroluminescent Light Sources (AREA)
  • Devices For Indicating Variable Information By Combining Individual Elements (AREA)

Abstract

本申请公开一种有机电致发光器件,具有位于非显示区边缘的搭接区,其包括第一电极、像素界定层、隔离层以及第二电极。第一电极设置在搭接区的平坦化层上。像素界定层设置在第一电极上,还包括复数个像素界定块。隔离层设置在像素界定层上,还包括复数个支撑块,隔离层的复数个支撑块的排布方式与像素界定层的复数个像素界定块的排布方式相同。第二电极,在搭接区中覆盖于第一电极、复数个像素界定块以及复数个支撑块,第二电极与第一电极搭接。本申请可以藉由支撑块的排布方式与像素界定块的排布方式或垂直投影位置相同,减少搭接区的遮蔽,提升搭接区的开口率,降低Vss引线电压降,从而改善屏体亮度不均匀的问题。

Description

有机电致发光器件、显示器及移动通信设备
交互参考
本申请要求以下优先权:2017年10月31日提出的申请号:201711053191.8,名称:“有机电致发光器件、显示器及移动通信设备”的中国专利,本申请参考引用了如上所述申请的全部内容。
技术领域
本申请属于有机电致发光器件领域,具体地说,涉及一种有机电致发光器件的搭接区布局的改进。
背景技术
对于现有的显示装置而言,有机发光二极管(Organic Light Emitting Diode,简称OLED)作为一种电流型发光器件,因其所具有自发光、快速响应、宽视角和可制作在柔性基板上等多种特点而越来越多地被应用于高性能显示领域当中。
随着OLED应用于显示领域的拓展,对于OLED显示器屏体亮度的要求也相应增加,然而在显示器与引线搭接的区域,往往因为忽略布局混乱所造成的影响,而在高分辨率屏体的要求下,搭接区的布局混乱或不一至进而影响了搭接区的开口率,造成显示器亮度不均匀的问题。
发明内容
有鉴于此,本申请所要解决的技术问题是有机电致发光器件的在阴极搭接区开口率不足,造成屏体亮度不均匀的问题,本申请提供一种有机电致发光器件、显示器及其应用的移动通信设备。
本申请的上述目的是通过如下技术方案予以实现的:
一种有机电致发光器件,具有搭接区,所述搭接区位于非显示区的边缘, 其包括:
第一电极,设置在所述搭接区的平坦化层上;
像素界定层,设置在所述第一电极上,所述像素界定层还包括复数个像素界定块;
隔离层,设置在所述像素界定层上,所述支撑块分别处于所述复数个像素界定块上;
第二电极,在所述搭接区中覆盖于所述第一电极、所述复数个像素界定块以及所述复数个支撑块,所述第二电极与所述第一电极搭接。
其中,在所述搭接区中,所述隔离层的所述复数个支撑块的垂直投影位置与所述像素界定层的所述复数个像素界定块的垂直投影位置相同。
其中,所述复数个像素界定块中的任一个的面积大于与其相应支撑块的面积。
其中,本申请的有机电致发光器件的所述第一电极在所述搭接区中还包括复数个开孔,所述复数个开孔的排布方式与所述像素界定层的所述复数个像素界定块的排布方式相同。
其中,在所述搭接区中,所述第一电极的所述复数个开孔的垂直投影位置与所述像素界定层的所述复数个像素界定块的垂直投影位置相同。
其中,所述像素界定层的所述像素界定块填设并覆盖于所述第一电极的所述复数个开孔。
其中,所述第一电极与所述第二电极为透明电极。
其中,所述复数个支撑块与所述复数个像素界定块均为有机材料。
本申请还包括一种有机电致发光显示器,包括柔性印刷线路板(FPC)和电源接口,有机电致发光显示器应用了前述的有机电致发光器件。
本申请还包括一种移动通信设备,包括通信装置和显示装置,所述显示装置为前述的有机电致发光显示器。
与现有技术相比,本申请的有机电致发光器件可以藉由支撑块与像素界 定块的排布方式或垂直投影位置相同,减少阴极搭接区的遮蔽,提升阴极搭接区的开口率,降低Vss引线电压降,从而改善屏体亮度不均匀的问题。
本申请的有机电致发光器件还可以藉由支撑块的排布方式与开孔的排布方式或垂直投影位置相同,减少阴极搭接区的遮蔽,提升阴极搭接区的开口率,降低Vss引线电压降,从而改善屏体亮度不均匀的问题。
本申请的有机电致发光器件更可以藉由本申请的堆叠方式,使得自基板底端至支撑块的厚度不论在搭接区或显示区都可以相同或接近,有利于提升有机电致发光器件的屏体抗冲击性能。
当然,实施本申请的任一产品必不一定需要同时达到以上所述的所有技术效果。
附图说明
在附图中:
图1是本申请一实施例的有机电致发光器件结构示意图;
图2是本申请一实施例的有机电致发光器件结构的A-A’线剖视图;
图3是本申请一实施例的有机电致发光器件结构的搭接区放大示意图。
具体实施方式
以下将配合附图及实施例来详细说明本申请的实施方式,藉此对本申请如何应用技术手段来解决技术问题并达成技术功效的实现过程能充分理解并据以实施。
图1是本申请一实施例的有机电致发光器件结构示意图。如图1所示,基板1上包括显示区11和非显示区12。显示区11设于基板10上,非显示区12设于基板10上显示区11之外的区域。非显示区12还包括搭接区121以及驱动电路区122。搭接区121位于非显示区12的边缘,驱动电路区122位于搭接区121和显示区11之间。在本实施例中,搭接区121为阴极搭接区,但本申请不以此为限。
图2是本申请一实施例的有机电致发光器件结构的A-A’线剖视图。图2所示的A-A’线剖视图为图1非显示区12的搭接区121的剖视图。如图2所示,本申请的有机电致发光器件的搭接区121还包括平坦化层2、像素界定层、第一电极41、第二电极42以及隔离层。平坦化层2设置在基板1上,第一电极41设置在搭接区的平坦化层2上。像素界定层设置在第一电极41上,像素界定层还包括复数个像素界定块3。隔离层设置在像素界定层上,隔离层还包括复数个支撑块5。第二电极42在搭接区121中覆盖于第一电极41、复数个像素界定块3以及复数个支撑块5。第二电极42与第一电极41搭接。在本实施例中,第一电极41可以是有机电致发光器件工艺制程中的阳极层,第二电极42可以是有机电致发光器件工艺制程中的阴极层。第二电极42与第一电极41连接,是通过叠加的方式连接,这种方式又称为搭接。在本实施例中,第一电极41与第二电极42为透明电极,第二电极42还可以是一体性结构。在本实施例中,复数个像素界定块3与所述复数个支撑块5可以均为有机材料,但本申请不以此为限。
下述以图2所揭示的实施例为例进行详细说明,在搭接区121中,隔离层的复数个支撑块5的排布方式与像素界定层的复数个像素界定块3的排布方式相同。隔离层的复数个支撑块5的垂直投影位置与像素界定层的复数个像素界定块3的垂直投影位置相同。在本实施例中,在搭接区121中,像素界定层的复数个像素界定块3的面积还可以大于隔离层的复数个支撑块5,但本申请不以此为限。
如图2所示,第一电极41在搭接区121中还包括复数个开孔410。复数个开孔410可以是圆柱形、方柱形或锥形体,但本申请不以此为限。复数个开孔410的排布方式与像素界定层的复数个像素界定块3的排布方式相同。在搭接区121中,第一电极41的复数个开孔410的垂直投影位置与像素界定层的复数个像素界定块3的垂直投影位置相同。在本实施例中,像素界定层的像素界定块3还可以是填设并覆盖于第一电极41的复数个开孔410。
图3是本申请一实施例的有机电致发光器件结构的搭接区放大示意图。图3所示的局部放大图为图1非显示区的搭接区121中M区域的俯视布局示意图。如图3所示,复数个支撑块5与像素界定块3重叠,在俯视布局图中,未示出的复数个开孔410实际上也是与像素界定层的复数个像素界定块3重叠。对照图2的剖视图中可以理解,像素界定层的复数个像素界定块3的垂直投影位置与第一电极41的复数个开孔410的垂直投影位置相同,又隔离层的复数个支撑块5的垂直投影位置与像素界定层的复数个像素界定块3的垂直投影位置相同,因此可以理解像素界定块3、开孔410以及支撑块5三者的垂直投影位置均可以相同。
请继续参阅图3,复数个支撑块5之间以及复数个像素界定块3之间都是采用间隔设置,间隔距离可以是等距、等差增加或等差减少,所以隔离层的复数个支撑块5的排布方式与像素界定层的复数个像素界定块3的排布方式相同。像素界定块3的面积可以大于或等于支撑块5的面积,视实际的设计需求进行适应性调整,本在本实施例的图示中以像素界定块3的面积大于支撑块5的面积呈现,但本申请不以此为限。在本申请的另一实施例中,像在搭接区121中像素界定块3与支撑块5的排布方式还可以与显示区11中像素界定块3与支撑块5的排布方式相同。本申请的有机电致发光器件可以藉由本申请的堆叠方式,使得自基板1底端至支撑块5的厚度不论在搭接区121或显示区11都相同或接近,有利于提升有机电致发光器件的屏体抗冲击性能。有机电致发光器件可通过质量检验的落球测试,对屏体抗冲击性能进行质量测试,本申请实施例的有机电致发光器件于落球测试的通过率明显高于现有技术,足以确认本申请实施例的有机电致发光器件可以有效提升屏体抗冲击性。本申请的有机电致发光器件可以藉由像素界定块3、支撑块5以及开孔410的排布方式或垂直投影位置相同,减少阴极搭接区的遮蔽,提升阴极搭接区的开口率,降低Vss引线电压降,从而改善屏体亮度不均匀的问题。
本申请在此基础上还提出一种有机电致发光显示器,包括柔性印刷线路 板(FPC)和电源接口,有机电致发光显示器应用了前述的有机电致发光器件。并同时提出一种移动通信设备,包括通信装置和显示装置,所述显示装置为前述的有机电致发光显示器。

Claims (15)

  1. 一种有机电致发光器件,具有搭接区,所述搭接区位于非显示区的边缘,其包括:
    第一电极,设置在所述搭接区的平坦化层上;
    像素界定层,设置在所述第一电极上,所述像素界定层还包括复数个像素界定块;
    隔离层,设置在所述像素界定层上,所述隔离层还包括复数个支撑块,所述复数个支撑块分别处于所述复数个像素界定块上;
    第二电极,在所述搭接区中覆盖于所述第一电极、所述复数个像素界定块以及所述复数个支撑块,所述第二电极与所述第一电极搭接。
  2. 如权利要求1所述的有机电致发光器件,其中,在所述搭接区中,所述隔离层的所述复数个支撑块与所述像素界定层的所述复数个像素界定块的排布方式相同。
  3. 如权利要求2所述的有机电致发光器件,其中,在所述搭接区中,所述隔离层的所述复数个支撑块的垂直投影位置与所述像素界定层的所述复数个像素界定块的垂直投影位置相同。
  4. 如权利要求3所述的有机电致发光器件,其中,在所述搭接区中,所述复数个像素界定块中的任一个的面积大于与其相应支撑块的面积。
  5. 如权利要求1-4任一项所述的有机电致发光器件,其中,所述第一电极在所述搭接区中还包括复数个开孔,所述复数个开孔的排布方式与所述像素界定层的所述复数个像素界定块的排布方式相同。
  6. 如权利要求5所述的有机电致发光器件,其中,在所述搭接区中,所述第一电极的所述复数个开孔的垂直投影位置与所述像素界定层的所述复数个像素界定块的垂直投影位置相同。
  7. 如权利要求5所述的有机电致发光器件,其中,所述像素界定层的所 述复数个像素界定块、所述第一电极的所述复数个开孔及所述隔离层的所述复数个支撑块的垂直投影位置相同。
  8. 如权利要求5所述的有机电致发光器件,其中,所述像素界定层的所述复数个像素界定块填设并覆盖于所述第一电极的所述复数个开孔。
  9. 如权利要求1-4任一项所述的有机电致发光器件,其中,所述第一电极与所述第二电极为透明电极。
  10. 如权利要求1-4任一项所述的有机电致发光器件,其中,所述第一电极是阳极层,所述第二电极是阴极层。
  11. 如权利要求1-4任一项所述的有机电致发光器件,其中,所述第二电极是一体性结构。
  12. 如权利要求1-4任一项所述的有机电致发光器件,其中,所述复数个像素界定块与所述复数个支撑块均为有机材料。
  13. 如权利要求1-4任一项所述的有机电致发光器件,其中,位于所述有机电致发光器件的搭接区的像素界定块、支撑块和位于所述有机电致发光器件的显示区的像素界定块、支撑块的排布方式相同。
  14. 一种有机电致发光显示器,包括柔性印刷线路板和电源接口,还包括如权利要求1-13任一项所述的有机电致发光器件。
  15. 一种移动通信设备,包括通信装置和显示装置,所述显示装置为如权利要求14所述的有机电致发光显示器。
PCT/CN2018/090275 2017-10-31 2018-06-07 有机电致发光器件、显示器及移动通信设备 WO2019085478A1 (zh)

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