IP Library Granted Patent US 11,024,822
Granted Patent B2
US 11,024,822 · App. 16/468,995 · Granted Jun 1, 2021

Organic electroluminescent element, lighting device, and display device

Inventor: Junichi Tanaka (Yonezawa, JP)
Assignee: XIANYANG CHVT NEW DISPLAY TECHNOLOGY CO., LTD.
H01L51/504H01L27/322H01L27/3244H01L51/0072H01L51/0097H01L51/5012H01L51/5016H01L51/524H01L51/5262H01L51/5278H01L51/001H01L51/0021H01L51/5056H01L51/5072H01L51/5206H01L51/5221H01L51/56H01L2251/5338H01L2251/558
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Quick Facts
Patent No.
US 11,024,822
App. No.
16/468,995
Granted
Jun 1, 2021
Kind
B2
Abstract

This organic EL element has two blue light emitting units, and has, in the emission spectrum thereof, one or two peak wavelengths in a blue light wavelength range of 440 nm-490 nm. In this organic EL element, the correlated color temperature of white light is 3300K or greater, R6 is 60 or greater, and R12 is 30 or greater.

Claims (92)

1. An organic electroluminescent element having a structure in which a plurality of light emitting units each including a light emitting layer made of at least an organic compound are stacked one on top of another between a first electrode and a second electrode with a charge generating layer sandwiched between each pair of adjacent light emitting units, wherein

the organic electroluminescent element comprises

at least two blue light emitting units each including a light emitting layer formed of a blue light emitting layer which emits blue light with one or two peak wavelengths in a blue wavelength band, and

one of a red/green emitting unit including a light emitting layer formed by stacking a red phosphorescent light emitting layer which emits red light with one peak wavelength in a red wavelength band and a green phosphorescent light emitting layer which emits green light with one peak wavelength in a green wavelength band one on top of the other, and a red-green light emitting unit including a light emitting layer formed of a mixed layer of a red phosphorescent material and a green phosphorescent material,

a light emission intensity of a peak wavelength in a green wavelength band is lower than a light emission intensity of a peak wavelength in a red wavelength band,

white light produced by light emission of the plurality of light emitting units has an emission spectrum continuous over a wavelength band of at least 380 nm to 780 nm and has one or two peak wavelengths in a blue wavelength band of 440 nm to 490 nm in the emission spectrum,

correlated color temperature of the white light is 3300 K or higher, and

R6 and R12 among special color rendering indices (Ri) of the white light are 60 or more and 30 or more, respectively.

2. The organic electroluminescent element according to claim 1 , wherein characterized in that R12 among the special color rendering indices (Ri) of the white light is 60 or more.

3. The organic electroluminescent element according to claim 1 , wherein each blue light emitting layer is formed of a blue fluorescent light emitting layer containing a blue fluorescent material.

4. The organic electroluminescent element according to claim 3 , wherein the blue light provided by each of the blue light emitting units including the blue fluorescent light emitting layer includes a delayed fluorescence component.

5. The organic electroluminescent element according to claim 1 , wherein the blue light emitting layer is formed of a blue phosphorescent light emitting layer containing a blue phosphorescent material.

6. The organic electroluminescent element according to claim 1 , wherein

the at least two blue light emitting units comprise two blue light emitting units which are both identical and which emit blue light with the same peak wavelength.

7. The organic electroluminescent element according to claim 1 , wherein

the at least two blue light emitting units comprise two blue light emitting units which are both different from each other and which emit blue light with different peak wavelengths from each other.

8. The organic electroluminescent element according to claim 7 , wherein the white light has one peak wavelength in a blue wavelength band of 440 nm to 470 nm and one peak wavelength in a blue wavelength band of 470 nm to 490 nm.

9. The organic electroluminescent element according to claim 1 , wherein

the white light produced by the light emission of the plurality of light emitting units has one peak wavelength in the red wavelength band of 590 nm to 640 nm and one or two peak wavelengths in the green wavelength band of 500 nm to 560 nm.

10. The organic electroluminescent element according to claim 9 , the organic electroluminescent element capable of providing the white light by causing the plurality of light emitting units to emit light, wherein

the organic electroluminescent element comprises:

a first light emitting unit;

a second light emitting unit; and

a third light emitting unit formed of one of the at least two blue light emitting units,

the first light emitting unit and the second light emitting unit are stacked one on top of the other with a first charge generating layer sandwiched therebetween,

the second light emitting unit and the third light emitting unit are stacked one on top of the other with a second charge generating layer sandwiched therebetween, and

the organic electroluminescent element has a structure in which the second electrode, the third light emitting unit, the second charge generating layer, the second light emitting unit, the first charge generating layer, the first light emitting unit, and the first electrode are stacked one on top of another in this order,

when the first light emitting unit is the at least one red/green light emitting unit or the at least one red-green light emitting unit, the second light emitting unit is one of the at least two blue light emitting units, and

when the first light emitting unit is one of the at least two blue light emitting units, the second light emitting unit is the at least one red/green light emitting unit or the at least one red-green light emitting unit.

11. The organic electroluminescent element according to claim 9 , the organic electroluminescent element capable of providing the white light by causing the plurality of light emitting units to emit light, wherein

the organic electroluminescent element comprises:

a first light emitting unit formed of the red/green light emitting unit or the at least one red-green light emitting unit;

a second light emitting unit formed of the at least two blue light emitting units;

a third light emitting unit formed of the at least one red/green light emitting unit or the at least one red-green light emitting unit; and

a fourth light emitting unit formed of the at least two blue light emitting units, the first light emitting unit and the second light emitting unit are stacked one on top of the other with a first charge generating layer sandwiched therebetween,

the second light emitting unit and the third light emitting unit are stacked one on top of the other with a second charge generating layer sandwiched therebetween,

the third light emitting unit and the fourth light emitting unit are stacked one on top of the other with a third charge generating layer sandwiched therebetween, and

the organic electroluminescent element has a structure in which the second electrode, the fourth light emitting unit, the third charge generating layer, the third light emitting unit, the second charge generating layer, the second light emitting unit, the first charge generating layer, the first light emitting unit, and the first electrode are stacked one on top of another in this order.

12. The organic electroluminescent element according to claim 9 , the organic electroluminescent element capable of providing the white light by causing the plurality of light emitting units to emit light, wherein

the organic electroluminescent element comprises:

a first light emitting unit formed of the at least one red/green light emitting unit or the at least one red-green light emitting unit;

a second light emitting unit formed of the at least two blue light emitting units;

a third light emitting unit formed of the at least one red/green light emitting unit or the at least one red-green light emitting unit;

a fourth light emitting unit formed of the at least one red/green light emitting unit or the at least one red-green light emitting unit;

a fifth light emitting unit formed of the at least two blue light emitting units; and

a sixth light emitting unit formed of the at least one red/green light emitting unit or the at least one red-green light emitting unit,

the first light emitting unit and the second light emitting unit are stacked one on top of the other with a first charge generating layer sandwiched therebetween,

the second light emitting unit and the third light emitting unit are stacked one on top of the other with a second charge generating layer sandwiched therebetween,

the third light emitting unit and the fourth light emitting unit are stacked one on top of the other with a third charge generating layer sandwiched therebetween,

the fourth light emitting unit and the fifth light emitting unit are stacked one on top of the other with a fourth charge generating layer sandwiched therebetween,

the fifth light emitting unit and the sixth light emitting unit are stacked one on top of the other with a fifth charge generating layer sandwiched therebetween, and

the organic electroluminescent element has a structure in which the second electrode, the sixth light emitting unit, the fifth charge generating layer, the fifth light emitting unit, the fourth charge generating layer, the fourth light emitting unit, the third charge generating layer, the third light emitting unit, the second charge generating layer, the second light emitting unit, the first charge generating layer, the first light emitting unit, and the first electrode are stacked one on top of another in this order.

13. The organic electroluminescent element according to claim 1 , wherein the white light further comprises a light emission intensity of the one or two peak wavelengths in the blue wavelength band of 440 nm to 490 nm such that the light emission intensity of the one or two peak wavelength in the blue wavelength band is higher than either of a light emission intensity of a peak wavelength in a red wavelength band of 590 nm to 640 nm and a light emission intensity of a peak wavelength in a green wavelength band of 500 nm to 560 nm in the wavelength band of the white light.

14. The organic electroluminescent element according to claim 13 , wherein the white light has one bottom wavelength in a blue wavelength band and a green wavelength band of 500 nm to 520 nm.

15. The organic electroluminescent element according to claim 14 , wherein a light emission intensity of the one bottom wavelength in the blue wavelength band and the green wavelength band of 500 nm to 520 nm is lower than a light emission intensity of a bottom wavelength in a wavelength band of 570 nm to 590 nm.

16. The organic electroluminescent element according to claim 14 , wherein a ratio of (B) to (A) ((B)/(A)) is 0.50 or smaller, where (A) is a light emission intensity of a peak wavelength having the highest light emission intensity in the wavelength band of 380 nm to 780 nm and (B) is a light emission intensity of the one bottom wavelength in the blue wavelength band and the green wavelength band of 500 nm to 520 nm.

17. The organic electroluminescent element according to claim 1 , wherein characterized in that an average color rendering index (Ra) of the white light is 70 or more.

18. The organic electroluminescent element according to claim 1 , wherein

the charge generating layers are formed of electrically insulating layers made of an electron accepting material and an electron donating material, and

a specific resistance of the electrically insulating layers is 1.0×10 2 Ω·cm or more.

19. The organic electroluminescent element according to claim 18 , wherein characterized in that the specific resistance of the electrically insulating layers is 1.0×10 2 Ω·cm or more.

20. The organic electroluminescent element according to claim 1 , wherein

each of the charge generating layers is formed of a mixed layer of different materials and one component of the mixed layer forms a charge transfer complex by redox, and

when voltage is applied between the first electrode and the second electrode, charges in the charge transfer complex move to the first electrode side and the second electrode side to cause holes to be injected into one light emitting unit located on the first electrode side of the charge generating layer and cause electrons to be injected into another light emitting unit located on the second electrode side of the charge generating layer.

21. The organic electroluminescent element according to claim 1 , wherein

each of the charge generating layers is formed of a laminate of an electron accepting material and an electron donating material, and

when voltage is applied between the first electrode and the second electrode, in an interface between the electron accepting material and the electron donating material, charges generated by reaction involving electron transfer between the electron accepting material and the electron donating material move to the first electrode side and the second electrode side to cause holes to be injected into one light emitting unit located on the first electrode side of the charge generating layer and cause electrons to be injected into another light emitting unit located on the second electrode side of the charge generating layer.

22. The organic electroluminescent element according to claim 1 , wherein the charge generating layers contain a compound having a structure expressed by formula (1):

where R represents an electron withdrawing group of F, Cl, Br, I, CN, or CF 3 .

23. The organic electroluminescent element according to claim 1 , wherein

the organic electroluminescent element comprises at least three color filters different from one another, and

an arrangement of the at least three color filters different from one another changes the white light produced by the light emission of the plurality of light emitting units to light of a different color.

24. The organic electroluminescent element according to claim 23 , wherein the arrangement of the at least three color filters different from one another is one selected from the group consisting of a stripe arrangement, a mosaic arrangement, a delta arrangement, and a pentile arrangement.

25. The organic electroluminescent element according to claim 23 , wherein

the at least three color filters different from one another are a red color filter, a green color filter, and a blue color filter, and

the organic electroluminescent element has a RGB arrangement in which the three color filters different from one another are arranged in turn.

26. The organic electroluminescent element according to claim 25 , wherein

the organic electroluminescent element has a RGBW arrangement including the RGB arrangement, and

the color filters are not arranged in an arrangement portion of W.

27. The organic electroluminescent element according to claim 26 , wherein the RGBW arrangement is one selected from the group consisting of a stripe arrangement, a mosaic arrangement, a delta arrangement, and a pentile arrangement.

28. A display device, comprising:

the organic electroluminescent element according to claim 23 .

29. The display device according to claim 28 , wherein

the display device comprises a base substrate and a sealing substrate which are formed of flexible substrates, and

the display device is flexible.

30. A lighting device, comprising:

the organic electroluminescent element according to claim 1 .

31. The lighting device according to claim 30 , wherein the lighting device comprises an optical film on a light extraction surface side of the organic electroluminescent element.

32. The lighting device according to claim 30 , wherein an average color rendering index (Ra) of the white light is 80 or more.

33. The lighting device according to claim 30 , wherein

the lighting device comprises a base substrate and a sealing substrate which are formed of flexible substrates, and

the lighting device is flexible.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 1, 2020
From: LUMIOTEC INC.
To: XIANYANG CHVT NEW DISPLAY TECHNOLOGY CO., LTD.
Reel/Frame 054510/0442 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 12, 2019
From: TANAKA, JUNICHI
To: LUMIOTEC INC.
Reel/Frame 049449/0836 →
Priority Claims (1)
JP JP2016-254302 · Dec 27, 2016 · national
Continuity (1)
Related Publication 20190319209A1 · Oct 17, 2019
Cited By (1)
US 12,684,936