Heterocyclic compound, and organic light-emitting device using same
The present application provides a hetero-cyclic compound capable of significantly enhancing lifespan, efficiency, electrochemical stability and thermal stability of an organic light emitting device, and an organic light emitting device containing the hetero-cyclic compound in an organic compound layer.
1. A hetero-cyclic compound represented by the following Chemical Formula 1 or Chemical Formula 2:
wherein, in Chemical Formulae 1 and 2,
L is a direct bond; a phenylene group unsubstituted or substituted with one or more substituents selected from the group consisting of a pyridine group, a pyrimidine group, a quinoline group, a phenanthroline group, an anthracene group, a benzoquinoline group, a naphthyl group, a phenyl group, a triazine group, a dibenzofuran group, a dibenzothiophene group and a carbazole group; an anthracene group unsubstituted or substituted with one or more substituents selected from the group consisting of a phenyl group, a naphthyl group, a pyridine group and a quinoline group; a biphenylene group; a naphthylene group; a phenalene group; a phenanthrene group; or a pyrene group,
Z is selected from the group consisting of a substituted or unsubstituted biphenyl group;
a substituted or unsubstituted naphthyl group; a substituted or unsubstituted anthracene group; a substituted or unsubstituted triphenylene group; a substituted or unsubstituted pyrene group; a substituted or unsubstituted phenanthrene group; a substituted or unsubstituted perylene group; a substituted or unsubstituted triazine group; a substituted or unsubstituted pyrimidine group; a substituted or unsubstituted quinoline group; a substituted or unsubstituted phenanthroline group; a substituted or unsubstituted benzimidazole group; a substituted or unsubstituted dibenzothiophene group; a substituted or unsubstituted dibenzofuran group; and a substituted and unsubstituted carbazole group,
m is an integer of 1 to 4;
n is an integer of 1 to 4;
R1 and R16, are the same as or different from each other, and each independently selected from the group consisting of hydrogen; deuterium; a halogen group; —CN; a substituted or unsubstituted C 1 to C 60 alkyl group; a substituted or unsubstituted C 2 to C 60 alkenyl group; a substituted or unsubstituted C 2 to C 60 alkynyl group; a substituted or unsubstituted C 1 to C 60 alkoxy group; a substituted or unsubstituted C 3 to C 60 cycloalkyl group; a substituted or unsubstituted C 2 to C 60 heterocycloalkyl group; a substituted or unsubstituted C 6 to C 60 aryl group; a substituted or unsubstituted C 2 to C 60 heteroaryl group; —SiRR′R″; —P(═O)RR′; and an amine group unsubstituted or substituted with a C 1 to C 20 alkyl group, a C 6 to C 60 aryl group or a C 2 to C 60 heteroaryl group, or two or more groups adjacent to each other bond to each other to form a substituted or unsubstituted aliphatic or aromatic hydrocarbon ring;
R2 to R15 are hydrogen; or deuterium,
wherein “substituted or unsubstituted” means being (a) substituted with one or more substituents selected from the group consisting a C 1 to C 60 alkyl group; a C 6 to C 60 aryl group; and a C 2 to C 60 heteroaryl group, or being unsubstituted, or (b) being substituted with a substituent bonding two or more of the above-mentioned substituents, or being unsubstituted, or (c) being substituted with a substituent linking two or more substituents selected from among the above-mentioned substituents, or being unsubstituted,
in chemical formula 1, L is a phenylene group unsubstituted or substituted with one or more substituents selected from the group consisting of a pyridine group, a pyrimidine group, a quinoline group, a phenanthroline group, an anthracene group, a benzoquinoline group, a naphthyl group, a phenyl group, a triazine group, a dibenzofuran group, a dibenzothiophene group and a carbazole group; an anthracene group unsubstituted or substituted with one or more substituents selected from the group consisting of a phenyl group, a naphthyl group, a pyridine group and a quinoline group; a biphenylene group; a naphthylene group; a phenalene group; a phenanthrene group; or a pyrene group, when Z is a unsubstituted phenanthroline group; or a unsubstituted quinoline group,
in chemical formula 2, L is direct bond; a phenylene group unsubstituted or substituted with one or more substituents selected from the group consisting of a pyridine group, a pyrimidine group, a quinoline group, a phenanthroline group, an anthracene group, a benzoquinoline group, a naphthyl group, a phenyl group, a triazine group, a dibenzofuran group, a dibenzothiophene group and a carbazole group; an anthracene group unsubstituted or substituted with one or more substituents selected from the group consisting of a phenyl group, a naphthyl group, a pyridine group and a quinoline group; a biphenylene group; a naphthylene group; a phenalene group; a phenanthrene group; or a pyrene group,
in chemical formula 2, m is integer of 2 to 4, when L is a phenylene group unsubstituted or substituted by a benzoquinoline group, and
R, R′ and R″ are the same as or different from each other, and each independently hydrogen; deuterium; —CN; a substituted or unsubstituted C 1 to C 60 alkyl group; a substituted or unsubstituted C 3 to C 60 cycloalkyl group; a substituted or unsubstituted C 6 to C 60 aryl group; or a substituted or unsubstituted C 2 to C 60 heteroaryl group.
2. An organic light emitting device comprising:
an anode;
a cathode; and
one or more organic material layers provided between the anode and the cathode,
wherein one or more layers of the organic material layers comprise the hetero-cyclic compound of claim 1 .
3. The organic light emitting device of claim 2 , wherein the organic material layer comprises at least one of a hole blocking layer, an electron injection layer and an electron transfer layer, and at least one of the hole blocking layer, the electron injection layer and the electron transfer layer comprises the hetero-cyclic compound.
4. The organic light emitting device of claim 2 , wherein the organic material layer comprises a light emitting layer, and the light emitting layer comprises the hetero-cyclic compound.
5. The organic light emitting device of claim 2 , wherein the organic material layer comprises one or more of a hole injection layer, a hole transfer layer, and a layer carrying out hole injection and hole transfer at the same time, and one of the above-mentioned layers comprises the hetero-cyclic compound.
6. The organic light emitting device of claim 2 , wherein the organic material layer comprises a charge generation layer, and the charge generation layer comprises the hetero-cyclic compound.
7. The organic light emitting device of claim 2 , comprising:
an anode;
a first stack provided on the anode and comprising a first light emitting layer;
a charge generation layer provided on the first stack;
a second stack provided on the charge generation layer and comprising a second light emitting layer; and
a cathode provided on the second stack.
8. A hetero-cyclic compound represented by any one of the following compounds: