Ordered organic-organic multilayer growth
An ordered multilayer crystalline organic thin film structure is formed by depositing at least two layers of thin film crystalline organic materials successively wherein the at least two thin film layers are selected to have their surface energies within ±50% of each other, and preferably within ±15% of each other, whereby every thin film layer within the multilayer crystalline organic thin film structure exhibit a quasi-epitaxial relationship with the adjacent crystalline organic thin film.
1. An organic light-emitting device comprising:
a first electrode;
a second electrode; and
an organic light emitting region disposed between the first electrode and the second electrode, the organic light emitting region comprising:
at least two thin film layers comprising at least two crystalline organic materials, the at least two thin film layers forming a multilayer crystalline organic thin film structure,
wherein surface energies of the at least two thin film layers are within ±50% of each other, whereby all of the crystalline organic thin film layers within the multilayer crystalline organic thin film structure exhibit a quasi-epitaxial relationship.
2. The organic light-emitting device of claim 1 , wherein the at least two crystalline organic materials are single crystal organic materials.
3. The organic light-emitting device of claim 1 , wherein the surface energies of the at least two thin film layers are within ±15% of each other.
4. The organic light-emitting device of claim 1 , wherein the at least two crystalline organic materials comprise a transport/barrier material and an emissive material pair.
5. The organic light-emitting device of claim 1 , wherein the emissive material layer comprises a plurality of discontinuous islands between the non-emissive material layers.
6. The organic light-emitting device of claim 5 , wherein the at least two crystalline organic materials are single crystal organic materials.
7. The organic light-emitting device of claim 4 , wherein the transport/barrier material and the emissive material pair is anthracene and tetracene pair, tetracene and rubrene pair, or anthracene and rubrene pair.
8. The organic light-emitting device of claim 4 , wherein the at least two crystalline organic materials are single crystal organic materials.
9. The organic light-emitting device of claim 4 , wherein the surface energies of the at least two thin film layers are within ±15% of each other.
10. The organic light-emitting device of claim 5 , wherein the surface energies of the at least two thin film layers are within ±15% of each other.