Multi-component host material and an organic electroluminescence device comprising the same
The present invention relates to a multi-component host material and an organic electroluminescent device comprising the same. By comprising a specific combination of the multi-component host compounds, the organic electroluminescent device according to the present invention can provide high luminous efficiency and excellent lifespan characteristics.
1. An organic electroluminescent device comprising a hole injection layer, a first hole transport layer, a second hole transport layer and at least one light-emitting layer between an anode and a cathode, wherein the first hole transport layer comprises compounds of a fluorene derivative structure and a mono-amine derivative structure, wherein the light-emitting layer comprises a host and a phosphorescent dopant, the host consists of multi-component host compounds, at least a first host compound of the multi-component host compounds is represented by the following formula 4, 5, or 6, and a second host compound is represented by the following formula 2:
wherein
A 1 and A 2 each independently represent a substituted or unsubstituted (C6-C30) aryl;
L 1 is represented by formula 7:
Xi to XI each independently represent hydrogen or deuterium;
X 1 to X 16 each independently represent hydrogen, or deuterium;
wherein
Ma represents a substituted triazinyl;
La represents a single bond, or one of the following formulae 7 and 8:
Xi to XI each independently represent hydrogen or deuterium;
Xa to Xh each independently represent hydrogen, deuterium, a halogen, a cyano, a substituted or unsubstituted (C1-C30)alkyl, a substituted or unsubstituted (C2-C30)alkenyl, a substituted or unsubstituted (C2-C30)alkynyl, a substituted or unsubstituted (C3-C30) cycloalkyl, a substituted or unsubstituted (C6-C60) aryl, a substituted or unsubstituted (3- to 30-membered) heteroaryl, a substituted or unsubstituted tri(C1-C30)alkylsilyl, a substituted or unsubstituted tri(C6-C30)arylsilyl, a substituted or unsubstituted di(C1-C30)alkyl(C6-C30)arylsilyl, or a substituted or unsubstituted mono- or di-(C6-C30) arylamino; or are linked to an adjacent substituent(s) to form substituted or unsubstituted benzene, a substituted or unsubstituted indole, or a substituted or unsubstituted benzoindole; and
the heteroaryl contains at least one hetero atom selected from B, N, O, S, P(═O), Si, and P.
2. The organic electroluminescent device according to claim 1 , wherein in formula 4, 5, or 6,
A 1 and A 2 each independently are selected from the group consisting of phenyl, biphenyl, terphenyl, naphthyl, fluorenyl, phenanthrenyl, anthracenyl, indenyl, triphenylenyl, pyrenyl, tetracenyl, perylenyl, chrysenyl, and fluoranthenyl.
3. The organic electroluminescent device according to claim 1 , wherein in formula 2,
Xa to Xh each independently represent hydrogen; a cyano; a (C6-C15) aryl unsubstituted or substituted with a tri(C6-C10)arylsilyl; a (10- to 20-membered) heteroaryl unsubstituted or substituted with a (C6-C12) aryl or a cyano (C6-C12) aryl; or an unsubstituted tri(C6-C10)arylsilyl; or are linked to an adjacent substituent(s) to form a substituted or unsubstituted benzene, a substituted or unsubstituted indole, or a substituted or unsubstituted benzoindole.
4. The organic electroluminescent device according to claim 1 , wherein the compound represented by formula 2 is selected from the group consisting of: