Color conversion film using polymeric dye, and multicolor light-emitting organic EL device using same
The present invention provides a color conversion film that can maintain sufficient conversion light intensity without increasing the thickness thereof, and a multicolor light-emitting organic EL device that uses such a film. The color conversion film of the invention includes a polymeric dye material that has a weight-average molecular weight of at least 1,000 but not more than 100,000 and that is composed of a first dye unit and a second dye unit. The first dye unit absorbs light incident on the color conversion film and transfers energy of the absorbed incident light to the second dye unit. The second dye unit receives the energy from the first dye unit and emits light.
1. A color conversion film, comprising:
a polymeric dye material that has a weight-average molecular weight of at least 1,000 but not more than 100,000 and that is composed of a first dye unit and a second dye unit,
wherein the first dye unit absorbs light incident on the color conversion film and transfers energy of the absorbed incident light to the second dye unit, and
wherein the second dye unit receives the energy from the first dye unit and emits light.
2. The color conversion film according to claim 1 , wherein the first dye unit is present in an amount of at least 50% but not more than 99.99% based on total number of constituent units making up the polymeric dye material.
3. The color conversion film according to claim 2 , wherein the film is a coated film formed by a coating process.
4. A multicolor light-emitting organic EL device, comprising:
an organic EL element including:
a pair of electrodes, at least one of which is a transparent electrode; and
an organic EL layer sandwiched between the pair of electrodes; and
the color conversion film according to claim 2 that has a thickness of not more than 2 μm.
5. The multicolor light-emitting organic EL device according to claim 4 , wherein the color conversion film is a coated film formed by a coating process.
6. The multicolor light-emitting organic EL device according to claim 4 , wherein the color conversion film and the transparent electrode are arranged so as to be in contact with each other.
7. The color conversion film according to claim 1 , wherein the second dye unit is present in an amount of at least 0.01% but not more than 50% based on total number of constituent units making up the polymeric dye material.
8. The color conversion film according to claim 7 , wherein the film is a coated film formed by a coating process.
9. A multicolor light-emitting organic EL device, comprising:
an organic EL element including:
a pair of electrodes, at least one of which is a transparent electrode; and
an organic EL layer sandwiched between the pair of electrodes; and
the color conversion film according to claim 7 that has a thickness of not more than 2 μm.
10. The multicolor light-emitting organic EL device according to claim 9 , wherein the color conversion film is a coated film formed by a coating process.
11. The multicolor light-emitting organic EL device according to claim 9 , wherein the color conversion film and the transparent electrode are arranged so as to be in contact with each other.
12. The color conversion film according to claim 1 , wherein the film is a coated film formed by a coating process.
13. A multicolor light-emitting organic EL device, comprising:
an organic EL element including:
a pair of electrodes, at least one of which is a transparent electrode; and
an organic EL layer sandwiched between the pair of electrodes; and
the color conversion film according to claim 1 that has a thickness of not more than 2 μm.
14. The multicolor light-emitting organic EL device according to claim 13 , wherein the color conversion film is a coated film formed by a coating process.
15. The multicolor light-emitting organic EL device according to claim 13 , wherein the color conversion film and the transparent electrode are arranged so as to be in contact with each other.