[go: up one dir, main page]

CN101847652A - Electroluminescent display panel - Google Patents

Electroluminescent display panel Download PDF

Info

Publication number
CN101847652A
CN101847652A CN 201010153236 CN201010153236A CN101847652A CN 101847652 A CN101847652 A CN 101847652A CN 201010153236 CN201010153236 CN 201010153236 CN 201010153236 A CN201010153236 A CN 201010153236A CN 101847652 A CN101847652 A CN 101847652A
Authority
CN
China
Prior art keywords
layer
packaging film
pixel
day
disposed
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
CN 201010153236
Other languages
Chinese (zh)
Other versions
CN101847652B (en
Inventor
吴文豪
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
AUO Corp
Original Assignee
AU Optronics Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by AU Optronics Corp filed Critical AU Optronics Corp
Priority to CN2010101532360A priority Critical patent/CN101847652B/en
Publication of CN101847652A publication Critical patent/CN101847652A/en
Application granted granted Critical
Publication of CN101847652B publication Critical patent/CN101847652B/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Electroluminescent Light Sources (AREA)

Abstract

本发明公开一种电激发光显示面板,包括主动元件阵列基板、像素定义层、电激发光元件层、电极层与保护层。基板具有像素电极。位于基板上的像素定义层具有开口。各开口分别暴露出一个像素电极。电激发光元件层位于开口内。各电激发光元件层分别位于一个像素电极上。电极层位于像素定义层与电激发光元件层上。包括缓冲层、第一与第二封装薄膜的保护层位于电极层上。缓冲层覆盖像素定义层与电激发光元件层。第一封装薄膜仅部分地覆盖缓冲层。第一封装薄膜包括位于像素电极上的岛状图案。第二封装薄膜覆盖缓冲层与第一封装薄膜。

The invention discloses an electroluminescence display panel, which comprises an active element array substrate, a pixel definition layer, an electroluminescence element layer, an electrode layer and a protective layer. The substrate has pixel electrodes. The pixel definition layer on the substrate has openings. Each opening respectively exposes a pixel electrode. The electroluminescence element layer is located in the opening. Each electroluminescent element layer is respectively located on a pixel electrode. The electrode layer is located on the pixel definition layer and the electroluminescence element layer. A protection layer including a buffer layer, first and second encapsulation films is located on the electrode layer. The buffer layer covers the pixel definition layer and the electroluminescence element layer. The first encapsulation film only partially covers the buffer layer. The first encapsulation film includes an island pattern on the pixel electrode. The second encapsulation film covers the buffer layer and the first encapsulation film.

Description

电激发光显示面板 Electroluminescence display panel

技术领域technical field

本发明涉及一种显示面板,且特别是有关于一种电激发光显示面板(electroluminescent display panel)。The present invention relates to a display panel, and more particularly to an electroluminescent display panel.

背景技术Background technique

随着显示科技的日益进步,人们借着显示装置的辅助可使生活更加便利。为求显示器轻、薄的特性,平面显示器成为了目前的主流。With the advancement of display technology, people can make life more convenient with the assistance of display devices. In order to achieve light and thin characteristics of displays, flat panel displays have become the current mainstream.

在各种平面显示器中,主动矩阵电激发光显示器(active matrixelectroluminescent display,AMLED)显示器因具有视角广、色彩对比效果好、轻薄、响应速度快及成本低等优点,故十分适用于如随身影像产品(笔记型电脑、PDA、手机等),特别是大型显示装置如电视等。Among various flat-panel displays, active matrix electroluminescent display (AMLED) displays are very suitable for portable imaging products due to their advantages such as wide viewing angle, good color contrast effect, thinness, fast response speed and low cost. (Notebook computers, PDAs, mobile phones, etc.), especially large display devices such as TVs, etc.

在一般的主动矩阵电激发光显示器中,电激发光元件上通常会覆盖有缓冲层,且缓冲层上依序覆盖有机层与无机层,以防止水气或氧气接触电激发光元件而导致元件损坏,以及使元件表面平坦化。然而,在形成缓冲层、有机层与无机层时,无法避免地会于各膜层中产生针孔(pin hole),使得水气与氧气通过这些针孔而接触电激发光元件。此外,由于水气与氧气在有机层中非常容易扩散至针孔以外的区域,因此往往造成大面积的元件损坏。In a general active matrix electroluminescent display, the electroluminescent element is usually covered with a buffer layer, and the buffer layer is covered with an organic layer and an inorganic layer in order to prevent moisture or oxygen from contacting the electroluminescent element and causing damage to the element. damage, and planarization of the component surface. However, when forming the buffer layer, the organic layer and the inorganic layer, it is inevitable to generate pinholes in each film layer, so that water vapor and oxygen can contact the electroluminescent element through these pinholes. In addition, because moisture and oxygen in the organic layer are very easy to diffuse to areas other than the pinholes, a large area of the device is often damaged.

发明内容Contents of the invention

本发明提供一种电激发光显示面板,其可以有效地避免水气与氧气在有机层中大幅度地扩散。The invention provides an electroluminescent display panel, which can effectively prevent water vapor and oxygen from greatly diffusing in an organic layer.

本发明另提供一种电激发光显示面板,其可以有效地避免元件发生大面积的损坏。The present invention further provides an electroluminescent display panel, which can effectively prevent large-area damage to components.

本发明提出一种电激发光显示面板,其包括主动元件阵列基板、像素定义层、多个电激发光元件层、电极层以及保护层。主动元件阵列基板具有多个呈阵列排列的像素电极。像素定义层配置于主动元件阵列基板上,其中像素定义层具有多个呈阵列排列的开口,且各开口分别暴露出其中一个像素电极。电激发光元件层配置于开口内,其中各电激发光元件层分别配置于其中一个像素电极上。电极层覆盖于像素定义层与电激发光元件层上。保护层覆盖于电极层上。保护层包括缓冲层、第一封装薄膜以及第二封装薄膜。缓冲层覆盖像素定义层与电激发光元件层。第一封装薄膜仅部分地覆盖缓冲层。第一封装薄膜包括多个彼此分离的岛状图案,且岛状图案位于像素电极上方。第二封装薄膜覆盖缓冲层与第一封装薄膜。The invention provides an electroluminescent display panel, which includes an active element array substrate, a pixel definition layer, a plurality of electroluminescent element layers, an electrode layer and a protective layer. The active element array substrate has a plurality of pixel electrodes arranged in an array. The pixel definition layer is disposed on the active element array substrate, wherein the pixel definition layer has a plurality of openings arranged in an array, and each opening respectively exposes one of the pixel electrodes. The electroluminescent element layers are arranged in the opening, and each electroluminescent element layer is respectively arranged on one of the pixel electrodes. The electrode layer covers the pixel definition layer and the electroluminescence element layer. The protective layer covers the electrode layer. The protection layer includes a buffer layer, a first encapsulation film and a second encapsulation film. The buffer layer covers the pixel definition layer and the electroluminescence element layer. The first encapsulation film only partially covers the buffer layer. The first encapsulation film includes a plurality of island-shaped patterns separated from each other, and the island-shaped patterns are located above the pixel electrodes. The second encapsulation film covers the buffer layer and the first encapsulation film.

依照本发明实施例所述的电激发光显示面板,上述的主动元件阵列基板包括多条扫描线、多条数据线以及多个主动元件。主动元件与扫描线、数据线以及像素电极对应地电性连接,且扫描线、数据线与主动元件被像素定义层所覆盖。According to the electroluminescent display panel described in the embodiment of the present invention, the above-mentioned active element array substrate includes a plurality of scanning lines, a plurality of data lines and a plurality of active elements. The active element is electrically connected to the scan line, the data line and the pixel electrode correspondingly, and the scan line, the data line and the active element are covered by the pixel definition layer.

依照本发明实施例所述的电激发光显示面板,上述的第一封装薄膜的水气穿透速率(water vapor transmission rate,WVTR)例如大于第二封装薄膜的水气穿透速率。According to the electroluminescence display panel described in the embodiment of the present invention, the water vapor transmission rate (WVTR) of the above-mentioned first encapsulation film is, for example, greater than the water vapor transmission rate of the second encapsulation film.

依照本发明实施例所述的电激发光显示面板,上述的第一封装薄膜的氧气穿透速率(oxygen transmission rate,OTR)例如大于第二封装薄膜的氧气穿透速率。According to the electroluminescence display panel described in the embodiment of the present invention, the oxygen transmission rate (oxygen transmission rate, OTR) of the above-mentioned first encapsulation film is, for example, greater than the oxygen transmission rate of the second encapsulation film.

依照本发明实施例所述的电激发光显示面板,上述的第一封装薄膜的水气穿透速率例如介于0.1g/m2/day至100g/m2/day之间,而第二封装薄膜的水气穿透速率例如介于1g/m2/day至50g/m2/day之间。According to the electroluminescence display panel described in the embodiment of the present invention, the water vapor transmission rate of the above-mentioned first encapsulation film is, for example, between 0.1 g/m 2 /day and 100 g/m 2 /day, and the second encapsulation film The water vapor transmission rate of the film is, for example, between 1 g/m 2 /day and 50 g/m 2 /day.

依照本发明实施例所述的电激发光显示面板,上述的第一封装薄膜的氧气穿透速率例如介于0.1c.c./m2/day至100c.c./m2/day之间,而第二封装薄膜的氧气穿透速率例如介于1c.c./m2/day至50c.c./m2/day之间。According to the electroluminescence display panel described in the embodiment of the present invention, the oxygen transmission rate of the above-mentioned first encapsulation film is, for example, between 0.1cc/m 2 /day and 100c.c./m 2 /day, and the second The oxygen transmission rate of the two-encapsulation film is, for example, between 1 c.c./m 2 /day and 50 c.c./m 2 /day.

依照本发明实施例所述的电激发光显示面板,上述的缓冲层与第二封装薄膜的材料例如为无机材料,而第一封装薄膜的材料例如为有机材料。According to the electroluminescence display panel described in the embodiment of the present invention, the material of the buffer layer and the second encapsulation film is, for example, an inorganic material, and the material of the first encapsulation film is, for example, an organic material.

依照本发明实施例所述的电激发光显示面板,上述的各岛状图案例如分别位于其中一个开口内。According to the electroluminescent display panel described in the embodiment of the present invention, the above-mentioned island patterns are respectively located in one of the openings, for example.

依照本发明实施例所述的电激发光显示面板,上述的各电激发光元件层包括发光层、空穴注入层(hole injection layer,HIL)、空穴传输层(hole transportlayer,HTL)以及电子注入层(electron injection layer,EIL)。发光层配置于其中一个像素电极与电极层之间。空穴注入层配置于其中一个像素电极与发光层之间。空穴传输层配置于空穴注入层于发光层之间。电子注入层配置于发光层与电极层之间。According to the electroluminescence display panel described in the embodiment of the present invention, each electroluminescence element layer includes a light emitting layer, a hole injection layer (hole injection layer, HIL), a hole transport layer (hole transport layer, HTL) and an electron Injection layer (electron injection layer, EIL). The light emitting layer is arranged between one of the pixel electrodes and the electrode layer. The hole injection layer is disposed between one of the pixel electrodes and the light emitting layer. The hole transport layer is disposed between the hole injection layer and the light emitting layer. The electron injection layer is arranged between the light emitting layer and the electrode layer.

本发明另提出一种电激发光显示面板,其包括主动元件阵列基板、像素定义层、多个电激发光元件层、电极层以及保护层。主动元件阵列基板具有多个呈阵列排列的像素电极。像素定义层配置于主动元件阵列基板上,其中像素定义层具有多个呈阵列排列的开口,且各开口分别暴露出其中一个像素电极。电激发光元件层配置于开口内,其中各电激发光元件层分别配置于其中一个像素电极上。电极层覆盖于像素定义层与电激发光元件层上。保护层覆盖于电极层上。保护层包括第一封装薄膜。第一封装薄膜包括多个彼此分离的岛状图案,且岛状图案大体位于像素电极正上方而不位于像素电极正上方以外的区域。The present invention further provides an electroluminescent display panel, which includes an active element array substrate, a pixel definition layer, a plurality of electroluminescent element layers, an electrode layer, and a protective layer. The active element array substrate has a plurality of pixel electrodes arranged in an array. The pixel definition layer is disposed on the active element array substrate, wherein the pixel definition layer has a plurality of openings arranged in an array, and each opening respectively exposes one of the pixel electrodes. The electroluminescent element layers are arranged in the opening, and each electroluminescent element layer is respectively arranged on one of the pixel electrodes. The electrode layer covers the pixel definition layer and the electroluminescence element layer. The protective layer covers the electrode layer. The protection layer includes a first encapsulation film. The first encapsulation film includes a plurality of island-shaped patterns separated from each other, and the island-shaped patterns are generally located directly above the pixel electrodes and not located in areas other than directly above the pixel electrodes.

依照本发明实施例所述的电激发光显示面板,上述的第一封装薄膜的水气穿透速率例如介于0.1g/m2/day至100g/m2/day之间。According to the electroluminescence display panel described in the embodiment of the present invention, the water vapor transmission rate of the above-mentioned first packaging film is, for example, between 0.1 g/m 2 /day and 100 g/m 2 /day.

依照本发明实施例所述的电激发光显示面板,上述的第一封装薄膜的氧气穿透速率例如介于0.1c.c./m2/day至100c.c./m2/day之间。According to the electroluminescence display panel described in the embodiment of the present invention, the oxygen transmission rate of the above-mentioned first encapsulation film is, for example, between 0.1 cc/m 2 /day and 100 c.c./m 2 /day.

依照本发明实施例所述的电激发光显示面板,上述的第一封装薄膜的材料例如为有机材料。According to the electroluminescence display panel described in the embodiment of the present invention, the material of the above-mentioned first packaging film is, for example, an organic material.

基于上述,本发明将由有机材料所形成的各个封装薄膜配置于像素定义层的每一个开口内,使这些由有机材料所形成的封装薄膜彼此不连接,因此当水气与氧气由膜层中的针孔进入时,可以避免水气与氧气在由有机材料所形成的封装薄膜中大幅度地扩散,进而可以减少电激发光元件的损坏。Based on the above, the present invention arranges each encapsulation film formed by organic materials in each opening of the pixel definition layer, so that these encapsulation films formed by organic materials are not connected to each other, so when moisture and oxygen are released from the film layer When the pinholes enter, the large diffusion of water vapor and oxygen in the encapsulation film formed by the organic material can be avoided, thereby reducing the damage of the electroluminescent element.

以下为有关本发明的详细说明与附图。然而所附附图仅供参考与辅助说明用,并非用来对本发明加以限制者。The following are detailed descriptions and accompanying drawings of the present invention. However, the accompanying drawings are only for reference and auxiliary description, and are not intended to limit the present invention.

附图说明Description of drawings

图1A为依照本发明一实施例所绘示的电激发光显示面板的俯视示意图;FIG. 1A is a schematic top view of an electroluminescent display panel according to an embodiment of the present invention;

图1B为沿图1A中的I-I’剖线所绘示的电激发光显示面板的剖面示意图;Figure 1B is a schematic cross-sectional view of the electroluminescent display panel drawn along the line I-I' in Figure 1A;

图2为依照本发明另一实施例所绘示的电激发光显示面板的剖面示意图。FIG. 2 is a schematic cross-sectional view of an electroluminescent display panel according to another embodiment of the present invention.

其中,附图标记Among them, reference signs

10、20:电激发光显示面板            100:主动元件阵列基板10, 20: Electroluminescence display panel 100: Active element array substrate

100a:像素电极                      100b:扫描线100a: Pixel electrode 100b: Scanning line

100c:数据线                        102:像素定义层100c: Data line 102: Pixel definition layer

104:电激发光元件层                 104a:发光层104: Electroluminescent element layer 104a: Light emitting layer

104b:空穴注入层                    104c:空穴传输层104b: hole injection layer 104c: hole transport layer

104d:电子注入层                    106:电极层104d: Electron injection layer 106: Electrode layer

108:保护层                         108a:缓冲层108: Protection layer 108a: Buffer layer

108b、108c、108d、108e:封装薄膜    110:开口108b, 108c, 108d, 108e: packaging film 110: opening

具体实施方式Detailed ways

图1A为依照本发明一实施例所绘示的电激发光显示面板的俯视示意图。图1B为沿图1A中的I-I’剖线所绘示的电激发光显示面板的剖面示意图。请同时参照图1A与图1B,电激发光显示面板10包括主动元件阵列基板100、像素定义层102、电激发光元件层104、电极层106以及保护层108。主动元件阵列基板100的材料例如为玻璃、塑胶或其他合适的材料。主动元件阵列基板100具有呈阵列排列的像素电极100a。像素电极100a的材料例如为铟锡氧化物(indium tin oxide,ITO)或铟锌氧化物(indium zinc oxide,IZO)。此外,主动元件阵列基板100还具有扫描线100b、数据线100c以及主动元件(为了使附图清楚而未绘示)。扫描线100b与数据线100c彼此互相垂直。主动元件与所对应的一条扫描线100b、一条数据线100c以及一个像素电极100a电性连接。扫描线100b、数据线100c的材料例如为金属。主动元件包括栅极、栅绝缘层、通道层、源极/漏极等,其彼此间的配置关系为本领域技术人员所熟知,于此不另行说明。FIG. 1A is a schematic top view of an electroluminescence display panel according to an embodiment of the present invention. FIG. 1B is a schematic cross-sectional view of the electroluminescent display panel along the line I-I' in FIG. 1A. Please refer to FIG. 1A and FIG. 1B at the same time. The electroluminescent display panel 10 includes an active element array substrate 100 , a pixel definition layer 102 , an electroluminescent element layer 104 , an electrode layer 106 and a protection layer 108 . The material of the active device array substrate 100 is, for example, glass, plastic or other suitable materials. The active device array substrate 100 has pixel electrodes 100a arranged in an array. The material of the pixel electrode 100 a is, for example, indium tin oxide (ITO) or indium zinc oxide (IZO). In addition, the active device array substrate 100 also has scan lines 100b, data lines 100c and active devices (not shown for clarity of the drawing). The scan lines 100b and the data lines 100c are perpendicular to each other. The active device is electrically connected to a corresponding scan line 100b, a data line 100c and a pixel electrode 100a. The material of the scan line 100b and the data line 100c is, for example, metal. The active element includes a gate, a gate insulating layer, a channel layer, a source/drain, etc., and the relationship between them is well known to those skilled in the art, and will not be further described here.

像素定义层102配置于主动元件阵列基板100上。像素定义层102覆盖扫描线100b、数据线100c与主动元件,用以定义出像素区。像素定义层102的材料例如为压克力(acrylic)。像素定义层102具有开口110。开口110以阵列的方式排列,且每一个开口110暴露出一个像素电极100a。The pixel definition layer 102 is disposed on the active device array substrate 100 . The pixel definition layer 102 covers the scan line 100b, the data line 100c and the active device to define a pixel area. The material of the pixel definition layer 102 is, for example, acrylic. The pixel definition layer 102 has an opening 110 . The openings 110 are arranged in an array, and each opening 110 exposes a pixel electrode 100a.

电激发光元件层104配置于开口110内,且每一个电激发光元件层104配置于一个像素电极100a上。电激发光元件层104包括发光层104a、空穴注入层104b、空穴传输层104c以及电子注入层104d。空穴注入层104b、空穴传输层104c、发光层104a以及电子注入层104d自像素电极100a依序堆叠于其上。电激发光元件层104中各膜层材料可使用公知电激发光元件层的材料。发光层104a例如为有机发光层或无机发光层,有机发光层材料例如为Alq。空穴注入层104b的材料例如为CuPc、空穴传输层104c的材料例如为NPB以及电子注入层104d的材料例如为LiF。发光层104a、空穴注入层104b、空穴传输层104c以及电子注入层104d的形成方法例如为喷墨印刷法(ink-jetprinting,IJP)。此外,在其他实施例中,也可以视实际需求而于电子注入层104d与发光层104a之间配置电子传输层;于发光层104a与电子注入层104d或电子传输层之间配置空穴阻挡层。The electroluminescent element layers 104 are disposed in the opening 110, and each electroluminescent element layer 104 is disposed on a pixel electrode 100a. The electroluminescence element layer 104 includes a light emitting layer 104a, a hole injection layer 104b, a hole transport layer 104c, and an electron injection layer 104d. The hole injection layer 104b, the hole transport layer 104c, the light emitting layer 104a and the electron injection layer 104d are sequentially stacked on the pixel electrode 100a. The material of each film layer in the electroluminescence element layer 104 can use the material of the known electroluminescence element layer. The light-emitting layer 104 a is, for example, an organic light-emitting layer or an inorganic light-emitting layer, and the material of the organic light-emitting layer is, for example, Alq. The material of the hole injection layer 104 b is, for example, CuPc, the material of the hole transport layer 104 c is, for example, NPB, and the material of the electron injection layer 104 d is, for example, LiF. The formation method of the light emitting layer 104a, the hole injection layer 104b, the hole transport layer 104c and the electron injection layer 104d is, for example, ink-jet printing (IJP). In addition, in other embodiments, an electron transport layer can also be arranged between the electron injection layer 104d and the light emitting layer 104a according to actual needs; a hole blocking layer can be arranged between the light emitting layer 104a and the electron injection layer 104d or the electron transport layer .

电极层106例如是共形地(conformally)覆盖于像素定义层102与电激发光元件层104上,以作为共用电极。电极层106的材料例如为铝。The electrode layer 106 is, for example, conformally covering the pixel definition layer 102 and the electroluminescence element layer 104 to serve as a common electrode. The material of the electrode layer 106 is aluminum, for example.

保护层108覆盖于电极层106上。详细地说,保护层108包括缓冲层108a、封装薄膜108b以及封装薄膜108c。缓冲层108a例如是共形地配置于电极层106上,以覆盖像素定义层102与电激发光元件层104。缓冲层108a的材料例如为无机材料。封装薄膜108b仅部分地覆盖缓冲层108a。在本实施例中,封装薄膜108b例如为彼此分离的岛状图案,而这些岛状图案配置于开口110内,且位于像素电极100a的正上方。在另一实施例中,封装薄膜108b除了位于开口110内之外,还可以位于开口110周围的缓冲层108a上。封装薄膜108b的材料例如为有机材料,其水气穿透速率例如介于0.1g/m2/day至100g/m2/day之间,而氧气穿透速率例如介于0.1c.c./m2/day至100c.c./m2/day之间。此外,封装薄膜108c覆盖缓冲层108a与封装薄膜108b。封装薄膜108c的材料例如为无机材料,其水气穿透速率例如介于1g/m2/day至50g/m2/day之间,而氧气穿透速率例如介于1c.c./m2/day至50c.c./m2/day之间。在一实施例中,封装薄膜108b的水气穿透速率例如大于封装薄膜108c的水气穿透速率。在一实施例中,封装薄膜108b的氧气穿透速率例如大于封装薄膜108c的氧气穿透速率。The passivation layer 108 covers the electrode layer 106 . In detail, the protection layer 108 includes a buffer layer 108a, an encapsulation film 108b and an encapsulation film 108c. The buffer layer 108 a is, for example, conformally disposed on the electrode layer 106 to cover the pixel definition layer 102 and the electroluminescence element layer 104 . The material of the buffer layer 108a is, for example, an inorganic material. The encapsulation film 108b only partially covers the buffer layer 108a. In this embodiment, the encapsulation film 108 b is, for example, island-shaped patterns separated from each other, and these island-shaped patterns are disposed in the opening 110 and directly above the pixel electrodes 100 a. In another embodiment, the encapsulation film 108 b may be located on the buffer layer 108 a around the opening 110 in addition to being located in the opening 110 . The material of the encapsulation film 108b is, for example, an organic material, and its water vapor transmission rate is, for example, between 0.1 g/m 2 /day and 100 g/m 2 /day, while the oxygen transmission rate is, for example, between 0.1 cc/m 2 / day. day to 100c.c./m 2 /day. In addition, the encapsulation film 108c covers the buffer layer 108a and the encapsulation film 108b. The material of the packaging film 108c is, for example, an inorganic material, and its water vapor transmission rate is, for example, between 1 g/m 2 /day and 50 g/m 2 /day, while the oxygen transmission rate is, for example, between 1 c.c./m 2 /day to 50c.c./m 2 /day. In one embodiment, the water vapor transmission rate of the encapsulation film 108b is, for example, greater than the water vapor transmission rate of the encapsulation film 108c. In one embodiment, the oxygen transmission rate of the encapsulation film 108b is, for example, greater than the oxygen transmission rate of the encapsulation film 108c.

由图1B可以看出,由于由有机材料所形成的各个封装薄膜108b位于每一个开口110内且彼此不连接,因此当水气与氧气由各膜层中的针孔进入时,并无法经封装薄膜108b而扩散至其他区域,也就不会导致元件发生大面积的损坏。It can be seen from FIG. 1B that since the packaging films 108b formed of organic materials are located in each opening 110 and are not connected to each other, when water vapor and oxygen enter through the pinholes in each film layer, they cannot be packaged. The thin film 108b spreads to other regions, so that the device will not be damaged in a large area.

特别一提的是,在本实施例中,保护层108是由一层由无机材料所形成的缓冲层108a、一层由有机材料形成的封装薄膜108b以及一层由无机材料所形成的封装薄膜108c所构成,而在其他实施例中,保护层也可以是由一层缓冲层108a以及由多层有机材料层与多层无机材料层依序交替堆叠所形成的复合层所构成。In particular, in this embodiment, the protective layer 108 is a buffer layer 108a formed of an inorganic material, a packaging film 108b formed of an organic material, and a packaging film 108b formed of an inorganic material. 108c, and in other embodiments, the protective layer may also be composed of a buffer layer 108a and a composite layer formed by alternately stacking multiple organic material layers and multiple inorganic material layers sequentially.

图2为依照本发明另一实施例所绘示的电激发光显示面板的剖面示意图。请参照图2,在本实施例中,电激发光显示面板20与电激发光显示面板10的差异在于:在电激发光显示面板20中,保护层是由一层缓冲层108a、封装薄膜108b(举例为有机材料)、封装薄膜108c(举例为无机材料)、封装薄膜108d(举例为有机材料)与封装薄膜108e(举例为无机材料)所构成。当然,在其他实施例中,还可以视实际需求而继续堆叠更多层的有机材料层与无机材料层。FIG. 2 is a schematic cross-sectional view of an electroluminescent display panel according to another embodiment of the present invention. Please refer to FIG. 2. In this embodiment, the difference between the electroluminescence display panel 20 and the electroluminescence display panel 10 is that in the electroluminescence display panel 20, the protective layer is composed of a buffer layer 108a, an encapsulation film 108b (for example, organic material), encapsulation film 108c (for example, inorganic material), encapsulation film 108d (for example, organic material) and encapsulation film 108e (for example, inorganic material). Of course, in other embodiments, more layers of organic material layers and inorganic material layers can be continuously stacked according to actual needs.

当然,本发明还可有其它多种实施例,在不背离本发明精神及其实质的情况下,熟悉本领域的技术人员当可根据本发明作出各种相应的改变和变形,但这些相应的改变和变形都应属于本发明所附的权利要求的保护范围。Certainly, the present invention also can have other multiple embodiments, without departing from the spirit and essence of the present invention, those skilled in the art can make various corresponding changes and deformations according to the present invention, but these corresponding Changes and deformations should belong to the scope of protection of the appended claims of the present invention.

Claims (9)

1. an electric exciting light emitting display panel is characterized in that, comprising:
One active component array base board has a plurality of pixel electrodes that are arrayed;
One pixel defining layer is disposed on this active component array base board, and wherein this pixel defining layer has a plurality of openings that are arrayed, and respectively this opening exposes a wherein pixel electrode respectively;
A plurality of electroluminescent element layers are disposed in these openings, and wherein respectively this electroluminescent element layers is disposed at respectively wherein on the pixel electrode;
One electrode layer is covered on this pixel defining layer and these electroluminescent element layers; And
One protective layer be covered on this electrode layer, and this protective layer comprises:
One resilient coating covers this pixel defining layer and these electroluminescent element layers;
One first packaging film only partly covers this resilient coating, and this first packaging film comprises a plurality of island-shaped pattern separated from one another, and these island-shaped pattern are positioned at these pixel electrode tops; And
One second packaging film covers this resilient coating and this first packaging film.
2. electric exciting light emitting display panel according to claim 1, it is characterized in that, this active component array base board comprises multi-strip scanning line, many data wires and a plurality of active member, these active members and these scan lines, these data wires and these pixel electrodes electrically connect accordingly, and these scan lines, these data wires and these active members are covered by this pixel defining layer.
3. electric exciting light emitting display panel according to claim 1 is characterized in that, the aqueous vapor transmission rate of this first packaging film is greater than the aqueous vapor transmission rate of this second packaging film.
4. electric exciting light emitting display panel according to claim 1 is characterized in that, the oxygen penetration speed of this first packaging film is greater than the oxygen penetration speed of this second packaging film.
5. electric exciting light emitting display panel according to claim 1 is characterized in that, the aqueous vapor transmission rate of this first packaging film is between 0.1g/m 2/ day to 100g/m 2Between/the day, and the aqueous vapor transmission rate of second packaging film is between 1g/m 2/ day to 50g/m 2Between/the day.
6. electric exciting light emitting display panel according to claim 1 is characterized in that, the oxygen penetration speed of this first packaging film is between 0.1c.c./m 2/ day to 100c.c./m 2Between/the day, and the oxygen penetration speed of second packaging film is between 1c.c./m 2/ day to 50c.c./m 2Between/the day.
7. electric exciting light emitting display panel according to claim 1, it is characterized in that, the material of this resilient coating and this second packaging film is an inorganic material, the material of this first packaging film is an organic material, wherein respectively this island-shaped pattern lays respectively at wherein in the opening, and wherein respectively this electroluminescent element layers comprises:
One luminescent layer is disposed at wherein between the pixel electrode and this electrode layer, and wherein this luminescent layer comprises organic luminous layer or inorganic light-emitting layer;
One hole injection layer is disposed at wherein between the pixel electrode and this luminescent layer;
One hole transmission layer is disposed at this hole injection layer between this luminescent layer; And
One electron injecting layer is disposed between this luminescent layer and this electrode layer.
8. an electric exciting light emitting display panel is characterized in that, comprising:
One active component array base board has a plurality of pixel electrodes that are arrayed;
One pixel defining layer is disposed on this active component array base board, and wherein this pixel defining layer has a plurality of openings that are arrayed, and respectively this opening exposes a wherein pixel electrode respectively;
A plurality of electroluminescent element layers are disposed in these openings, and wherein respectively this electroluminescent element layers is disposed at respectively wherein on the pixel electrode;
One electrode layer is covered on this pixel defining layer and these electroluminescent element layers; And
One protective layer be covered on this electrode layer, and this protective layer comprises:
One first packaging film, this first packaging film comprises a plurality of island-shaped pattern separated from one another, and these island-shaped pattern are positioned at directly over these pixel electrodes and zone beyond not being positioned at directly over these pixel electrodes substantially.
9. electric exciting light emitting display panel according to claim 8, it is characterized in that, this active component array base board comprises multi-strip scanning line, many data wires and a plurality of active member, these active members and these scan lines, these data wires and these pixel electrodes electrically connect accordingly, and these scan lines, these data wires and these active members are covered by this pixel defining layer, and wherein the aqueous vapor transmission rate of this first packaging film is between 0.1g/m 2/ day to 100g/m 2Between/the day, wherein the oxygen penetration speed of this first packaging film is between 0.1c.c./m 2/ day to 100c.c./m 2Between/the day, wherein the material of this first packaging film is an organic material, and wherein respectively this island-shaped pattern lays respectively at wherein in the opening, and wherein respectively this electroluminescent element layers comprises:
One luminescent layer is disposed at wherein between the pixel electrode and this electrode layer, and wherein this luminescent layer comprises organic luminous layer or inorganic light-emitting layer;
One hole injection layer is disposed at wherein between the pixel electrode and this luminescent layer;
One hole transmission layer is disposed at this hole injection layer between this luminescent layer; And
One electron injecting layer is disposed between this luminescent layer and this electrode layer.
CN2010101532360A 2010-04-21 2010-04-21 Electroluminescent display panel Active CN101847652B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2010101532360A CN101847652B (en) 2010-04-21 2010-04-21 Electroluminescent display panel

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2010101532360A CN101847652B (en) 2010-04-21 2010-04-21 Electroluminescent display panel

Publications (2)

Publication Number Publication Date
CN101847652A true CN101847652A (en) 2010-09-29
CN101847652B CN101847652B (en) 2011-08-17

Family

ID=42772185

Family Applications (1)

Application Number Title Priority Date Filing Date
CN2010101532360A Active CN101847652B (en) 2010-04-21 2010-04-21 Electroluminescent display panel

Country Status (1)

Country Link
CN (1) CN101847652B (en)

Cited By (14)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103092380A (en) * 2011-11-02 2013-05-08 东莞万士达液晶显示器有限公司 Touch control display panel
CN104022129A (en) * 2014-06-18 2014-09-03 上海和辉光电有限公司 Array substrate of display device and manufacturing method of array substrate of display device
CN104538558A (en) * 2014-12-25 2015-04-22 昆山国显光电有限公司 OLED device and method thereof
CN104952906A (en) * 2015-03-25 2015-09-30 友达光电股份有限公司 Pixel structure of display panel
CN107123750A (en) * 2016-02-25 2017-09-01 株式会社日本显示器 Display device and its manufacture method
CN107146803A (en) * 2016-03-01 2017-09-08 株式会社日本显示器 Organic EL display device
CN108288680A (en) * 2017-12-29 2018-07-17 信利(惠州)智能显示有限公司 A kind of flexibility AMOLED display screens encapsulating structure and its packaging method
CN109166902A (en) * 2018-06-22 2019-01-08 友达光电股份有限公司 Organic Light Emitting Display
CN109728045A (en) * 2018-12-29 2019-05-07 昆山维信诺科技有限公司 Display panel and display terminal
CN110808275A (en) * 2019-11-15 2020-02-18 昆山工研院新型平板显示技术中心有限公司 Display panel, preparation method thereof and display device
CN110993675A (en) * 2019-12-20 2020-04-10 武汉华星光电半导体显示技术有限公司 OLED display panel and preparation method thereof
CN111180604A (en) * 2019-03-14 2020-05-19 广东聚华印刷显示技术有限公司 Packaging structure, preparation method thereof and display panel
CN111276628A (en) * 2018-12-05 2020-06-12 乐金显示有限公司 Electroluminescent display device
TWI812463B (en) * 2022-09-13 2023-08-11 友達光電股份有限公司 Stretchable pixel array substrate

Citations (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH1185057A (en) * 1997-09-08 1999-03-30 Matsushita Electric Ind Co Ltd Color liquid crystal panel and its production
CN1504816A (en) * 2002-11-28 2004-06-16 友达光电股份有限公司 Pixel structure and manufacturing method thereof
CN1542528A (en) * 2003-04-29 2004-11-03 友达光电股份有限公司 Method for manufacturing thin film transistor liquid crystal display panel
US20050250270A1 (en) * 2004-05-06 2005-11-10 Ying-Ming Wu Process of manufacturing thin film transistor
US20050274953A1 (en) * 2004-06-14 2005-12-15 Bo-Sung Kim Organic thin film transistor array panel and manufacturing method thereof
CN1794078A (en) * 2004-12-24 2006-06-28 Lg.菲利浦Lcd株式会社 Liquid crystal display device and fabricating method thereof
JP2007053147A (en) * 2005-08-16 2007-03-01 Sony Corp Organic semiconductor device and its manufacturing method
CN1992236A (en) * 2005-12-29 2007-07-04 Lg.菲利浦Lcd株式会社 Thin film transistor array substrate and fabricating method for thin film transistor array substrate
US20070170850A1 (en) * 2006-01-23 2007-07-26 Choi Dong-Soo Organic light emitting display and method of fabricating the same
CN101030555A (en) * 2007-04-05 2007-09-05 友达光电股份有限公司 Pixel structure and its production
US20080116516A1 (en) * 2006-11-16 2008-05-22 Au Optronics Corporation Thin film transistor array substrate and fabricating method thereof
CN101226932A (en) * 2008-02-18 2008-07-23 友达光电股份有限公司 Pixel structure and manufacturing method thereof
CN101599500A (en) * 2008-06-04 2009-12-09 乐金显示有限公司 Organic Light Emitting Diode Display Devices

Patent Citations (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH1185057A (en) * 1997-09-08 1999-03-30 Matsushita Electric Ind Co Ltd Color liquid crystal panel and its production
CN1504816A (en) * 2002-11-28 2004-06-16 友达光电股份有限公司 Pixel structure and manufacturing method thereof
CN1542528A (en) * 2003-04-29 2004-11-03 友达光电股份有限公司 Method for manufacturing thin film transistor liquid crystal display panel
US20050250270A1 (en) * 2004-05-06 2005-11-10 Ying-Ming Wu Process of manufacturing thin film transistor
US20050274953A1 (en) * 2004-06-14 2005-12-15 Bo-Sung Kim Organic thin film transistor array panel and manufacturing method thereof
CN1794078A (en) * 2004-12-24 2006-06-28 Lg.菲利浦Lcd株式会社 Liquid crystal display device and fabricating method thereof
JP2007053147A (en) * 2005-08-16 2007-03-01 Sony Corp Organic semiconductor device and its manufacturing method
CN1992236A (en) * 2005-12-29 2007-07-04 Lg.菲利浦Lcd株式会社 Thin film transistor array substrate and fabricating method for thin film transistor array substrate
US20070170850A1 (en) * 2006-01-23 2007-07-26 Choi Dong-Soo Organic light emitting display and method of fabricating the same
US20080116516A1 (en) * 2006-11-16 2008-05-22 Au Optronics Corporation Thin film transistor array substrate and fabricating method thereof
CN101030555A (en) * 2007-04-05 2007-09-05 友达光电股份有限公司 Pixel structure and its production
CN101226932A (en) * 2008-02-18 2008-07-23 友达光电股份有限公司 Pixel structure and manufacturing method thereof
CN101599500A (en) * 2008-06-04 2009-12-09 乐金显示有限公司 Organic Light Emitting Diode Display Devices

Cited By (21)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103092380A (en) * 2011-11-02 2013-05-08 东莞万士达液晶显示器有限公司 Touch control display panel
CN104022129A (en) * 2014-06-18 2014-09-03 上海和辉光电有限公司 Array substrate of display device and manufacturing method of array substrate of display device
CN104022129B (en) * 2014-06-18 2018-01-26 上海和辉光电有限公司 Array base palte of display device and preparation method thereof
CN104538558A (en) * 2014-12-25 2015-04-22 昆山国显光电有限公司 OLED device and method thereof
CN104952906B (en) * 2015-03-25 2018-10-26 友达光电股份有限公司 Pixel structure of display panel
CN104952906A (en) * 2015-03-25 2015-09-30 友达光电股份有限公司 Pixel structure of display panel
CN107123750A (en) * 2016-02-25 2017-09-01 株式会社日本显示器 Display device and its manufacture method
CN107146803B (en) * 2016-03-01 2020-09-04 株式会社日本显示器 Organic EL display device
CN107146803A (en) * 2016-03-01 2017-09-08 株式会社日本显示器 Organic EL display device
CN108288680A (en) * 2017-12-29 2018-07-17 信利(惠州)智能显示有限公司 A kind of flexibility AMOLED display screens encapsulating structure and its packaging method
CN108288680B (en) * 2017-12-29 2020-09-08 信利(惠州)智能显示有限公司 Flexible AMOLED display screen packaging structure and packaging method thereof
CN109166902A (en) * 2018-06-22 2019-01-08 友达光电股份有限公司 Organic Light Emitting Display
CN111276628B (en) * 2018-12-05 2023-09-08 乐金显示有限公司 Electroluminescent display device
US12120907B2 (en) 2018-12-05 2024-10-15 Lg Display Co., Ltd. Electroluminescent display apparatus
CN111276628A (en) * 2018-12-05 2020-06-12 乐金显示有限公司 Electroluminescent display device
CN109728045A (en) * 2018-12-29 2019-05-07 昆山维信诺科技有限公司 Display panel and display terminal
CN111180604A (en) * 2019-03-14 2020-05-19 广东聚华印刷显示技术有限公司 Packaging structure, preparation method thereof and display panel
CN110808275A (en) * 2019-11-15 2020-02-18 昆山工研院新型平板显示技术中心有限公司 Display panel, preparation method thereof and display device
CN110993675B (en) * 2019-12-20 2022-04-26 武汉华星光电半导体显示技术有限公司 OLED display panel and preparation method thereof
CN110993675A (en) * 2019-12-20 2020-04-10 武汉华星光电半导体显示技术有限公司 OLED display panel and preparation method thereof
TWI812463B (en) * 2022-09-13 2023-08-11 友達光電股份有限公司 Stretchable pixel array substrate

Also Published As

Publication number Publication date
CN101847652B (en) 2011-08-17

Similar Documents

Publication Publication Date Title
CN101847652B (en) Electroluminescent display panel
TWI503043B (en) Electroluminescent display panel
US11600797B2 (en) Organic light-emitting display apparatus having peripheral dam containing metal-containing layer
KR102552267B1 (en) Organic light-emitting display apparatus and manufacturing the same
CN107919293B (en) Display device and organic material detection method
KR102457251B1 (en) Organic light-emitting display apparatus
KR102253531B1 (en) Display device and method for manufacturing the same
KR102150011B1 (en) Organic light emitting display device and method of manufacturing having the same
US8994015B2 (en) Organic light-emitting display device
CN101383374B (en) Organic light-emitting display device
KR102541447B1 (en) organic light emitting display device
US11605694B2 (en) Display apparatus including a planarization layer having a recess around a unit display portion
US20100033078A1 (en) Organic light emitting display device
KR102595445B1 (en) Organic light emitting diode display and manufacturing method of the same
KR101796934B1 (en) Organic Light Emitting Diode Display Device Having A Reflective Electrode And Method For Manufacturing The Same
CN106847859A (en) Organic light-emitting display device and the method for manufacturing the organic light-emitting display device
CN102569664B (en) Organic light-emitting display device
US7898164B2 (en) Organic light emitting device comprising microcavity portions containing films with different optical lengths
KR102356743B1 (en) Display device
US20190237695A1 (en) Oled display panel, display device and manufacturing method of oled display panel
US7687985B2 (en) Double-sided organic electro-luminescent device
KR20170003298A (en) Organic light emitting diode display and manufacturing method of the same
KR20210085630A (en) Display apparatus
US10629842B2 (en) Display device and method of fabricating the same
US20220231256A1 (en) Display apparatus and manufacturing the same

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant