IP Library › Granted Patent US 10,074,709
Granted Patent B1
US 10,074,709 · App. 15/721,271 · Granted Sep 11, 2018

Display device

Inventor: Sakae Tanaka (Saitama, JP)
Assignee: Mikuni Electron Corporation
H01L27/3262H01L27/3248H01L27/3258H01L29/42384H01L29/66969H01L29/7869H01L29/78648H01L51/5218H01L27/1225H01L27/1248H01L27/1288H01L51/5072H01L51/5092H01L51/56H01L2227/323H01L2251/303
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Quick Facts
Patent No.
US 10,074,709
App. No.
15/721,271
Granted
Sep 11, 2018
Kind
B1
Abstract

A display device includes a driving transistor and an organic EL element. The driving transistor includes an oxide semiconductor layer; a first gate electrode that includes a region overlapping the oxide semiconductor layer; a first insulating layer between the first gate electrode and the oxide semiconductor layer; a second gate electrode that includes a region overlapping the oxide semiconductor layer and the first gate electrode; a second insulating layer between the second gate electrode and the oxide semiconductor layer; and a first and a second transparent conductive layer that are provided between the oxide semiconductor layer and the first insulating layer and each include a region contacting the oxide semiconductor layer. The organic EL element includes a first electrode; a second electrode; a light emitting layer between the first electrode and the second electrode; and an electron transfer layer between the light emitting layer and the first electrode.

Claims (45)

1. A display device, comprising:

a transistor includes an oxide semiconductor layer, a first gate electrode, a first insulating layer, and a transparent conductive layer; and

an organic EL element includes a first electrode having a light-transmissive, a second electrode, a light emitting layer, and an electron transfer layer,

wherein

the first gate electrode including a region overlapping the oxide semiconductor layer,

the first insulating layer provided between the first gate electrode and the oxide semiconductor layer,

the transparent conductive layer provided between the first insulating layer and the oxide semiconductor layer, and at least including a region in contact with the oxide semiconductor layer,

the first electrode including a region overlapping the second electrode,

the light emitting layer provided between the first electrode and the second electrode,

the electron transfer layer provided between the first electrode and the light emitting layer, and

the first electrode is continuous from the transparent conductive layer.

2. The display device according to claim 1 , further comprising a second gate electrode, and a second insulating layer,

wherein

the second gate electrode including a region overlapping with the oxide semiconductor layer and the first gate electrode,

the second insulating layer provided between the oxide semiconductor layer and the second gate electrode.

3. The display device according to claim 2 , wherein the second gate electrode electrically connected to the first gate electrode.

4. The display device according to claim 2 , wherein the second gate electrode has a width in a channel length direction larger than a width of the first gate electrode in the channel length direction.

5. The display device according to claim 2 , wherein the region of the second gate electrode overlapping the oxide semiconductor layer has an area size larger than an area size of the region of the first gate electrode overlapping the oxide semiconductor layer.

6. The display device according to claim 2 , wherein an end of the transparent conductive layer overlaps the first gate electrode and the second gate electrode.

7. The display device according to claim 1 , wherein the transistor electrically connected to the organic EL element.

8. The display device according to claim 1 , wherein the oxide semiconductor layer extends to be located between the first electrode and the electron transfer layer.

9. The display device according to claim 8 , wherein the oxide semiconductor layer and the electron transfer layer are in contact with each other.

10. The display device according to claim 9 , wherein the electron transfer layer has a carrier concentration higher than a carrier concentration of the oxide semiconductor layer.

11. The display device according to claim 9 , wherein the electron transfer layer has a bandgap of 3.4 eV or greater, and the oxide semiconductor layer has a bandgap of 3.0 eV or greater.

12. The display device according to claim 1 , wherein the organic EL element further includes an electron injection layer provided between the electron transfer layer and the light emitting layer.

13. The display device according to claim 12 , wherein the electron injection layer is formed of C12A7 (12CaO.7Al 2 O 3 ) electride.

14. The display device according to claim 1 , wherein the electron transfer layer is formed of a zinc (Zn)-based oxide semiconductor not containing tin (Sn), and the oxide semiconductor layer is formed of a tin (Sn)-based oxide semiconductor containing neither zinc (Zn) nor magnesium (Mg).

15. The display device according to claim 14 , wherein the electron transfer layer contains at least one selected from zinc oxide, silicon oxide, magnesium oxide and gallium oxide,

wherein the oxide semiconductor layer contains tin oxide, indium oxide and at least one selected from gallium oxide, tungsten oxide and silicon oxide.

16. The display device according to claim 1 , further comprising a flattening layer burying the driving transistor,

wherein

the flattening layer has an opening exposing a top surface of the first electrode, and

the electron transfer layer, the light emitting layer and the second electrode are provided continuously on the top surface of the first electrode, on an inner wall of the opening and a top surface of the flattening layer.

17. The display device according to claim 16 , wherein the organic EL element further includes a hole transfer layer and a hole injection layer provided between the light emitting layer and the second electrode,

wherein

the hole transfer layer and the hole injection layer are provided continuously for the plurality of pixels, and

the electron transfer layer is individually provided for each of the plurality of pixels.

18. The display device according to claim 17 , wherein an end of the electron transfer layer is located outer to the opening and inner to an end of the light emitting layer.

19. The display device according to claim 16 , wherein the organic EL element further includes a hole transfer layer and a hole injection layer provided between the light emitting layer and the second electrode,

wherein

the hole transfer layer and the hole injection layer are provided continuously for the plurality of pixels, and

the electron transfer layer and the electron injection layer are individually provided for each of the plurality of pixels.

20. The display device according to claim 19 , wherein an end of the electron transfer layer and an end of the electron injection layer are located outer to the opening and inner to an end of the light emitting layer.

21. The display device according to claim 1 , further comprising a reflective layer overlapping the first electrode, the reflective layer being provided on a surface of the first insulating layer opposite to a surface thereof facing the first electrode.

22. The display device according to claim 21 , wherein the reflective layer is provided in the same layer as that of the first gate electrode.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 10, 2017
From: TANAKA, SAKAE
To: MIKUNI ELECTRON CORPORATION
Reel/Frame 044096/0600 →
Priority Claims (1)
JP 2017-107278 · May 31, 2017 · national
Cited By (4)
US 12,432,981 US 12,433,090 US 12,572,046 US 12,696,362