Organic electroluminescent element and light emitting device with gap filled with gas

US9583736B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9583736-B2
Application numberUS-201514640970-A
CountryUS
Kind codeB2
Filing dateMar 6, 2015
Priority dateSep 20, 2012
Publication dateFeb 28, 2017
Grant dateFeb 28, 2017

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

According to one embodiment, an organic electroluminescent element includes a first electrode, a reflective layer, an organic light emitting layer, a second electrode, and an optical buffer layer. The reflective layer is provided to face the first electrode. The organic light emitting layer is provided between the first electrode and the reflective layer. The second electrode is provided between the organic light emitting layer and the reflective layer. The optical buffer layer is provided between the second electrode and the reflective layer. The refractive index of the optical buffer layer is lower than a refractive index of the organic light emitting layer. The optical buffer layer includes a gas filled between the second electrode and the reflective layer.

First claim

Opening claim text (preview).

What is claimed is: 1. An organic electroluminescent element, comprising: a first electrode; a reflective layer provided to face the first electrode; an organic light emitting layer provided between the first electrode and the reflective layer; a second electrode provided between the organic light emitting layer and the reflective layer; a first substrate; a second substrate; a sealing unit; and the second electrode is opposed to the reflective layer via a gap filled with a gas, the first electrode is provided between the first substrate and the organic light emitting layer, and the reflective layer is provided between the second substrate and an optical layer, one end portion side of the sealing unit is provided around the rim of the first substrate and the one other end portion side of the sealing unit is provided around the rim of the first substrate, the gas is filled into the space defined by the first substrate and the second substrate and the sealing unit. 2. The element according to claim 1 , wherein the second electrode includes at least one species selected from the group consisting of Ag, Au, Ca, and an alkaline metal. 3. The element according to claim 1 , wherein the second electrode has a first portion and a second portion, a refractive index of the second portion being different from a refractive index of the first portion. 4. The element according to claim 1 , wherein the second electrode includes a co-deposited film of an insulator and at least one species selected from the group consisting of Ag, Au, Ca, and an alkaline metal, or a co-deposited film of an insulator and an alloy including the at least one species selected from the group. 5. The element according to claim 1 , wherein the second electrode includes an alloy including at least one species selected from the group consisting of Ag, Au, Ca, and an alkaline metal. 6. The element according to claim 1 , wherein the second electrode includes a magnesium-silver alloy, the volume fraction of Ag in the magnesium-silver alloy being not less than 0.2. 7. The element according to claim 1 , further comprising a control unit configured to apply a voltage to the second electrode and the reflective layer, and the optical layer is provided between the second electrode and the reflective layer, the control unit being configured to control the optical buffer layer to have a negative uniaxiality by applying the voltage. 8. The element according to claim 1 , further comprising a light extraction structure opposing the first electrode, the first electrode being provided between the light extraction structure and the organic light emitting layer. 9. An organic electroluminescent element, comprising: a first electrode; a reflective layer provided to face the first electrode; an organic light emitting layer provided between the first electrode and the reflective layer; a second electrode provided between the organic light emitting layer and the reflective layer; a first substrate; a second substrate; a sealing unit; and the second electrode is opposed to the reflective layer via a gap filled with a gas, wherein the second electrode includes at least one species selected from the group consisting of Ag, Au, Ca, and an alkaline metal, the first electrode is provided between the first substrate and the organic light emitting layer, and the reflective layer is provided between the second substrate and an optical layer, one end portion side of the sealing unit is provided around the rim of the first substrate and the one other end portion side of the sealing unit is provided around the rim of the first substrate, the gas is filled into the space defined by the first substrate and the second substrate and the sealing unit. 10. The element according to claim 9 , wherein the second electrode has a first portion and a second portion, a refractive index of the second portion being different from a refractive index of the first portion. 11. The element according to claim 9 , wherein the second electrode includes a co-deposited film of an insulator and at least one species selected from the group consisting of Ag, Au, Ca, and an alkaline metal, or a co-deposited film of an insulator and an alloy including the at least one species selected from the group. 12. The element according to claim 9 , wherein the second electrode includes an alloy including at least one species selected from the group consisting of Ag, Au, Ca, and an alkaline metal. 13. The element according to claim 9 , wherein the second electrode includes a magnesium-silver alloy, the volume fraction of Ag in the magnesium-silver alloy being not less than 0.2. 14. The element according to claim 9 , further comprising a control unit configured to apply a voltage to the second electrode and the reflective layer, and the optical layer is provided between the second electrode and the reflective layer, the control unit being configured to control the optical buffer layer to have a negative uniaxiality by applying the voltage. 15. A light emitting device including an organic electroluminescent element, the element comprising: a first electrode; a reflective layer provided to face the first electrode; an organic light emitting layer provided between the first electrode and the reflective layer; a second electrode provided between the organic light emitting layer and the reflective layer; a first substrate; a second substrate; a sealing unit; and the second electrode is opposed to the reflective layer via a gap filled with a gas, the first electrode is provided between the first substrate and the organic light emitting layer, and the reflective layer is provided between the second substrate and an optical layer, one end portion side of the sealing unit is provided around the rim of the first substrate and the one other end portion side of the sealing unit is provided around the rim of the first substrate, the gas is filled into the space defined by the first substrate and the second substrate and the sealing unit. 16. The device according to claim 15 , wherein the second electrode has a first portion and a second portion, a refractive index of the second portion being different from a refractive index of the first portion. 17. The device according to claim 15 , wherein the second electrode includes a co-deposited film of an insulator and at least one species selected from the group consisting of Ag, Au, Ca, and an alkaline metal, or a co-deposited film of an insulator and an alloy including the at least one species selected from the group. 18. The device according to claim 15 , wherein the second electrode includes an alloy including at least one species selected from the group consisting of Ag, Au, Ca, and an alkaline metal. 19. The device according to claim 15 , wherein the second electrode includes a magnesium-silver alloy, the volume fraction of Ag in the magnesium-silver alloy being not less than 0.2.

Assignees

Inventors

Classifications

  • Manufacture or treatment specially adapted for the organic devices covered by this subclass · CPC title

  • comprising refractive means, e.g. lenses · CPC title

  • Transparent cathodes, e.g. comprising thin metal layers · CPC title

  • H10K50/856Primary

    comprising reflective means · CPC title

  • H10K59/878Primary

    comprising reflective means · CPC title

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Frequently asked questions

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What does patent US9583736B2 cover?
According to one embodiment, an organic electroluminescent element includes a first electrode, a reflective layer, an organic light emitting layer, a second electrode, and an optical buffer layer. The reflective layer is provided to face the first electrode. The organic light emitting layer is provided between the first electrode and the reflective layer. The second electrode is provided betwee…
Who is the assignee on this patent?
Toshiba Kk
What technology area does this patent fall under?
Primary CPC classification H10K50/856. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Feb 28 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).