Organic electroluminescent element and organic electroluminescent display panel
US-9768403-B2 · Sep 19, 2017 · US
US10109814B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10109814-B2 |
| Application number | US-201715673447-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 10, 2017 |
| Priority date | Oct 30, 2013 |
| Publication date | Oct 23, 2018 |
| Grant date | Oct 23, 2018 |
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The organic electroluminescent element of the present invention includes, in the given order: an anode; a light-emitting layer; and a cathode, the light-emitting layer including a luminescent dopant layer and a luminescent host layer, the luminescent dopant layer containing a luminescent dopant material and substantially no luminescent host material, the luminescent host layer containing a luminescent host material and substantially no luminescent dopant material.
Opening claim text (preview).
The invention claimed is: 1. An organic electroluminescent display panel comprising: a substrate; and an organic electroluminescent element disposed on the substrate; wherein the organic electroluminescent element includes, in the following order: an anode; a light-emitting layer; and a cathode, the light-emitting layer includes a luminescent dopant layer and a luminescent host layer, the luminescent dopant layer contains a luminescent dopant material, the luminescent host layer contains a luminescent host material, the organic electroluminescent display panel is a top side emission organic electroluminescent display panel which emits light from the cathode side, the organic electroluminescent element includes the anode, a hole transport layer, the luminescent dopant layer, the luminescent host layer, a doped electron transport layer, and the cathode in the order from the substrate side, the doped electron transport layer is made of a material obtained by doping a substance having electron transport ability with a dopant, and the lowest triplet state energy level of a material constituting the hole transport layer is higher than the lowest triplet state energy level of the luminescent dopant material. 2. The organic electroluminescent display panel according to claim 1 , wherein the luminescent host material has bipolarity, and the hole mobility of the luminescent host material is lower than the electron mobility thereof. 3. The organic electroluminescent display panel according to claim 1 , wherein the luminescent dopant layer has a thickness of 5 nm or smaller. 4. The organic electroluminescent display panel according to claim 1 , wherein the luminescent dopant layer has a concentration of the luminescent dopant material of 90 wt % or higher. 5. The organic electroluminescent display panel according to claim 1 , wherein the dopant is an n-type impurity. 6. The organic electroluminescent display panel according to claim 1 , wherein the luminescent dopant material is a blue fluorescent material exhibiting delayed fluorescence. 7. An organic electroluminescent display panel comprising: a substrate; and an organic electroluminescent element disposed on the substrate, wherein the organic electroluminescent element includes, in the following order: an anode; a light-emitting layer; and a cathode, the light-emitting layer includes a luminescent dopant layer and a luminescent host layer, the luminescent dopant layer contains a luminescent dopant material, the luminescent host layer contains at least two luminescent host materials, the organic electroluminescent display panel is a top side emission organic electroluminescent display panel which emits light from the cathode side, the organic electroluminescent element includes the anode, a hole transport layer, the luminescent dopant layer, the luminescent host layer, a doped electron transport layer, and the cathode in the order from the substrate side, the doped electron transport layer is made of a material obtained by doping a substance having electron transport ability with a dopant, the at least two luminescent host materials include a material having electron transport ability and a material having hole transport ability, and the highest occupied molecular orbital level of the material having hole transport ability is higher than the highest occupied molecular orbital level of the material having electron transport ability. 8. The organic electroluminescent display panel according to claim 7 , wherein the at least two luminescent host materials include a material having bipolarity, and the hole mobility of the material having bipolarity is lower than the electron mobility thereof. 9. The organic electroluminescent display panel according to claim 7 , wherein the luminescent dopant layer has a thickness of 5 nm or smaller. 10. The organic electroluminescent display panel according to claim 7 , wherein the luminescent dopant layer has a concentration of the luminescent dopant material of 90 wt % or higher. 11. The organic electroluminescent display panel according to claim 7 , wherein the dopant is an n-type impurity. 12. The organic electroluminescent display panel according to claim 7 , wherein the luminescent dopant material is a blue fluorescent material exhibiting delayed fluorescence. 13. An organic electroluminescent display panel comprising: a substrate; and an organic electroluminescent element disposed on the substrate, wherein the organic electroluminescent element includes, in the following order: an anode; a light-emitting layer; and a cathode, the light-emitting layer includes a luminescent dopant layer and a luminescent host layer, the luminescent dopant layer contains a luminescent dopant material, the luminescent host layer contains at least two luminescent host materials, the organic electroluminescent display panel is a top side emission organic electroluminescent display panel which emits light from the cathode side, the organic electroluminescent element includes the anode, a hole transport layer, the luminescent dopant layer, the luminescent host layer, a doped electron transport layer, and the cathode in the order from the substrate side, the doped electron transport layer is made of a material obtained by doping a substance having electron transport ability with a dopant, the at least two luminescent host materials include a material having electron transport ability and a material having hole transport ability, and the lowest unoccupied molecular orbital level of the material having hole transport ability is higher than the lowest unoccupied molecular orbital level of the material having electron transport ability. 14. The organic electroluminescent display panel according to claim 13 , wherein the at least two luminescent host materials include a material having bipolarity, and the hole mobility of the material having bipolarity is lower than the electron mobility thereof. 15. The organic electroluminescent display panel according to claim 13 , wherein the luminescent dopant layer has a thickness of 5 nm or smaller. 16. The organic electroluminescent display panel according to claim 13 , wherein the luminescent dopant layer has a concentration of the luminescent dopant material of 90 wt % or higher. 17. The organic electroluminescent display panel according to claim 13 , wherein the dopant is an n-type impurity. 18. The organic electroluminescent display panel according to claim 13 , wherein the luminescent dopant material is a blue fluorescent material exhibiting delayed fluorescence.
Electricity · mapped topic
Electricity · mapped topic
Electricity · mapped topic
Electricity · mapped topic
Electricity · mapped topic
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