Organic light-emitting device and organic light-emitting display device using the same

US2019189702A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2019189702-A1
Application numberUS-201916283213-A
CountryUS
Kind codeA1
Filing dateFeb 22, 2019
Priority dateOct 31, 2016
Publication dateJun 20, 2019
Grant date

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  5. First independent claim

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Abstract

Official abstract text for this publication.

An organic light-emitting device, including: a substrate including a blue sub-pixel, a green sub-pixel, and a red sub-pixel, each blue sub-pixel, green sub-pixel, and red sub-pixel respectively including an anode, a first common layer, a second common layer, and a cathode, in the blue sub-pixel, a blue light-emitting layer between the first common layer and the second common layer, in the green sub-pixel, a green light-emitting layer between the first common layer and the second common layer, and in the red sub-pixel, a red light-emitting layer between the first common layer and the second common layer, wherein HOMO energy levels of the blue, green, and red light-emitting layers are each lower than a HOMO energy level of the first common layer, and wherein the HOMO energy level of the green light-emitting layer is 0.2 eV or more higher than the HOMO energy level of the blue light-emitting layer.

First claim

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1 - 14 . (canceled) 15 . An organic light-emitting device, comprising: a substrate comprising a blue sub-pixel, a green sub-pixel, and a red sub-pixel, each blue sub-pixel, green sub-pixel, and red sub-pixel respectively comprising an anode, a first common layer, a second common layer, and a cathode; in the blue sub-pixel, a blue light-emitting layer between the first common layer and the second common layer; in the green sub-pixel, a green light-emitting layer between the first common layer and the second common layer; and in the red sub-pixel, a red light-emitting layer between the first common layer and the second common layer, wherein HOMO energy levels of the blue and green light-emitting layers are each lower than a HOMO energy level of the first common layer, and wherein the HOMO energy level of the green light-emitting layer is 0.2 eV or more higher than the HOMO energy level of the blue light-emitting layer. 16 . The organic light-emitting device according to claim 15 , wherein the HOMO energy level of the red light-emitting layer is 0.2 eV or more higher than the HOMO energy level of the green light-emitting layer. 17 . The organic light-emitting device according to claim 16 , wherein: the red light-emitting layer is thicker than the green light-emitting layer; and the green light-emitting layer is thicker than the blue light-emitting layer. 18 . The organic light-emitting device according to claim 15 , wherein the first common layer contacts each of the blue light-emitting layer, the green light-emitting layer, and the red light-emitting layer. 19 . The organic light-emitting device according to claim 15 , wherein the first common layer is a hole transport layer. 20 . The organic light-emitting device according to claim 15 , further comprising a third common layer between the first common layer and a color-emitting layer that comprises the blue light-emitting layer, the green light-emitting layer, and the red light-emitting layer. 21 . The organic light-emitting device according to claim 20 , wherein each of the blue light-emitting layer, the green light-emitting layer, and the red light-emitting layer contacts the third common layer. 22 . The organic light-emitting device according to claim 21 , wherein a HOMO energy level of the third common layer is lower than the HOMO energy level of the first common layer. 23 . The organic light-emitting device according to claim 22 , wherein the HOMO energy levels of the blue and green light-emitting layers are each lower than the HOMO energy level of the third common layer. 24 . The organic light-emitting device according to claim 23 , wherein the HOMO energy level of the red light-emitting layer is 0.2 eV or more higher than the HOMO energy level of the green light-emitting layer. 25 . The organic light-emitting device according to claim 15 , wherein: a plurality of units are stacked in each sub-pixel; and each of the plurality of units comprises: the first common layer; a color-emitting layer comprising at least one of: the blue light-emitting layer, the green light-emitting layer, and the red light-emitting layer; and the second common layer between the anode and the cathode. 26 . The organic light-emitting device according to claim 25 , further comprising a charge generation layer among the plurality of units. 27 . The organic light-emitting device according to claim 26 , further comprising, in at least one of the plurality of units, a third common layer between first common layer and the color-emitting layer including the blue light-emitting layer, the green light-emitting layer, and the red light-emitting layer. 28 . An organic light-emitting device, comprising: a substrate comprising a blue sub-pixel, a green sub-pixel, and a red sub-pixel, each blue sub-pixel, green sub-pixel, and red sub-pixel respectively comprising an anode, a first common layer, a second common layer, and a cathode; in the blue sub-pixel, a blue light-emitting layer between the first common layer and the second common layer; in the green sub-pixel, a green light-emitting layer between the first common layer and the second common layer; and in the red sub-pixel, a red light-emitting layer between the first common layer and the second common layer, wherein a HOMO energy level of the green light emitting layer is 0.2 eV or more higher than higher than a HOMO energy level of the blue light-emitting layer and 0.2 eV or more lower than a HOMO energy level of the red light-emitting layer, and wherein the blue and green light-emitting layers are each lower than a HOMO energy level of the first common layer. 29 . The organic light-emitting device according to claim 28 , wherein: the red light-emitting layer is thicker than the green light-emitting layer; and the green light-emitting layer is thicker than the blue light-emitting layer. 30 . The organic light-emitting device according to claim 28 , wherein: each of the blue, green and red light-emitting layers has a least one host and each color dopant, and each host of the blue, green and red light emitting layers contacts the first common layer. 31 . The organic light-emitting device according to claim 30 , wherein the first common layer comprises host material to decide the HOMO energy level of the first common layer and dopant material to help injection of holes to each of the blue, green and red light-emitting layers, and wherein the HOMO levels of hosts of blue, green and red light-emitting layers are each lower than a HOMO energy level of the dopant material of the first common layer. 32 . An organic light-emitting display device, comprising: a substrate comprising a blue sub-pixel, a green sub-pixel, and a red sub-pixel, each sub-pixel comprising: a transistor; and a stack in an order of: an anode connected to the transistor, a first common layer, a second common layer, and a cathode; in the blue sub-pixel, a blue light-emitting layer between the first common layer and the second common layer; in the green sub-pixel, a green light-emitting layer between the first common layer and the second common layer; and in the red sub-pixel, a red light-emitting layer between the first common layer and the second common layer, wherein HOMO energy levels of the blue and greenlight-emitting layers are each lower than a HOMO energy level of the first common layer, and wherein the HOMO energy level of the green light-emitting layer is 0.2 eV or more higher than the HOMO energy level of the blue light-emitting layer. 33 . The organic light-emitting display device according to claim 32 , wherein the HOMO energy level of the red light-emitting layer is 0.2 eV or more higher than the HOMO energy level of the green light-emitting layer. 34 . The organic light-emitting display device according to claim 32 , wherein the first common layer is a hole transport layer and the second common layer is an electron transport layer.

Assignees

Inventors

Classifications

  • Pixel-defining structures or layers, e.g. banks · CPC title

  • including getter material or desiccant · CPC title

  • comprising colour filters or colour changing media [CCM] · CPC title

  • Insulating layers formed between TFT elements and OLED elements · CPC title

  • comprising a resonant cavity structure, e.g. Bragg reflector pair · CPC title

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What does patent US2019189702A1 cover?
An organic light-emitting device, including: a substrate including a blue sub-pixel, a green sub-pixel, and a red sub-pixel, each blue sub-pixel, green sub-pixel, and red sub-pixel respectively including an anode, a first common layer, a second common layer, and a cathode, in the blue sub-pixel, a blue light-emitting layer between the first common layer and the second common layer, in the green…
Who is the assignee on this patent?
Lg Display Co Ltd
What technology area does this patent fall under?
Primary CPC classification H10K50/11. Mapped technology areas include Electricity.
When was this patent published?
Publication date Thu Jun 20 2019 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).