Organic electroluminescent device
View Patent ↗Disclosed is an organic electroluminescent device including a substrate, a first and second electrode formed on the substrate, and a light-emitting layer formed between the first electrode and the second electrode. The light-emitting layer includes a plurality of materials which is a green luminescent material using a following chemical formula as a dopant. In this case, at least one of A 1 and A 2 is selected from a substituted or non-substituted aromatic group, a heterocyclic group, an aliphatic group, and hydrogen.
1. An organic electroluminescent device, comprising:
a substrate;
first and second electrodes formed on the substrate; and
a light-emitting layer formed between the first electrode and the second electrode, the light-emitting layer containing a green luminescent material represented by using a chemical formula 1 as a dopant:
wherein, A1 and A2 are selected from a substituted or non-substituted aromatic group, a substituted or non-substituted heterocyclic group,
wherein the light-emitting layer further contains a host material represented by a chemical formula 2:
B1-X-B2 [Chemical formula 2]
wherein the X is selected from the group consisting of anthracene, and pyrene and B1 and B2 are individually selected from a group consisting of aryl, pyridyl, quinolyl, and isoquinolyl; and
wherein the host material is one of following formulas:
2. The organic electroluminescent device of claim 1 , wherein wt. % of the material of the chemical formula 1 is 0.1-49.9 wt. % of a total weight of the light-emitting layer.
3. The organic electroluminescent device of claim 1 , wherein the B1 and B2 are selected from the group consisting of pyridyl, naphthyl, phenanthryl, quinolyl, isoquinolyl, and fluorenyl.
4. The organic electroluminescent device of claim 1 , wherein at least one of the A1 and A2 is selected from phenyl, biphenyl, pyridyl, naphthyl, quinolyl, isoquinolyl, fluorenyl, terphenyl, methyl, ethyl, propyl, i-propyl, and t-butyl.
5. The organic electroluminescent device of claim 1 , wherein a substituent of each substituted A1 and A2 is at least one selected from the group consisting of alkyl, aryl, alkoxy, alkylamino, halogen, aryloxy, arylamino, alkylsilyl, arylsilyl and hydrogen.
6. The organic electroluminescent device of claim 5 , wherein the substituent is one selected from methyl, ethyl, propyl, i-propyl, t-butyl, cyclohexyl, methoxy, ethoxy, propoxy, butoxy, dimethylamino, trimethylsilyl, fluorine, chlorine, phenoxy, tolyloxy, dimethylamino, diethylamino, diphenylamino, and triphenylsilyl.
7. The organic electroluminescentdeviceof claim 1 , wherein one of the A1 and A2 is one of following chemical formulas:
8. The organic electroluminescent device of claim 1 , wherein the green luminescent material is at least one of following chemical formulas:
9. An organic electroluminescent device, comprising:
a substrate;
first and second electrodes formed on the substrate; and a light-emitting layer formed between the first electrode and the second electrode, the light-emitting layer containing a green luminescent material represented by using a chemical formula 1 as a dopant:
wherein, A1 and A2 are selected from a substituted or non˜substitutedaromatic group, a substituted or non-substituted heterocyclic group,
wherein the light-emitting layer further contains a host material represented by a chemical formula 2:
B1-X˜B2 [Chemical formula 2]
wherein the X is selected from the group consisting of anthracene, and pyrene and B1 and B2 are individually selected from a group consisting of aryl, pyridyl, quinolyl, and isoquinolyl; and
wherein the green luminescent material is at least one of following chemical formulas: