ORGANIC ELECTROLUMINESCENT COMPOUND, A PLURALITY OF HOST MATERIALS, AND ORGANIC ELECTROLUMINESCENT DEVICE COMPRISING THE SAME
The present disclosure relates to an organic electroluminescent compound, a plurality of host materials, and an organic electroluminescent device comprising the same. By comprising the compound according to the present disclosure or by comprising a specific combination of compounds according to the present disclosure as a plurality of host materials, it is possible to produce an organic electroluminescent device having improved driving voltage, luminous efficiency, and/or lifetime properties compared to the conventional organic electroluminescent devices.
1 . An organic electroluminescent compound represented by the following formula 1:
in formula 1,
R 1 to R 5 , each independently, represent a substituted or unsubstituted (C6-C30)aryl, or a substituted or unsubstituted (3- to 30-membered)heteroaryl; with the proviso that at least one of R 1 to R 5 represents -L-Har;
L, each independently, represents a single bond, a substituted or unsubstituted (C6-C30)arylene, or a substituted or unsubstituted (3- to 30-membered)heteroarylene;
Har, each independently, represents a substituted or unsubstituted phenanthrooxazolyl, a substituted or unsubstituted phenanthrothiazolyl, a substituted or unsubstituted phenanthrobenzofuranyl, or a substituted or unsubstituted benzophenanthrothiophenyl;
A represents a substituted or unsubstituted (C6-C30)arentriyl, or a substituted or unsubstituted (3- to 30-membered) heteroarentriyl;
B and E, each independently, represent a substituted or unsubstituted (C6-C30)arylene, or a substituted or unsubstituted (3- to 30-membered)heteroarylene; and
k represents an integer of 1 or 2, and l to n, each independently, represent an integer of 0 or 1; in which if k represents an integer of 2, each of B may be the same or different; and
provided that m+n=1; if n represents an integer of 0, B has the same definition as R 1 , and if m represents an integer of 0, l represents an integer of 0, and A has the same definition as E.
2 . The organic electroluminescent compound according to claim 1 , wherein Har in formula 1, each independently, is represented by the following formula a:
in formula a,
adjacent * is connected to the following formula a-1 or formula a-2;
X 11 , each independently, represents O or S;
any one of R 11 to R 15 is connected with L;
if R 11 is not connected with L, R 11 represents a substituted or unsubstituted (C6-C30)aryl, or a substituted or unsubstituted (3- to 30-membered)heteroaryl;
if R 12 to R 15 are not connected with L, R 12 to R 15 , each independently, represent hydrogen, deuterium, a substituted or unsubstituted (C6-C30)aryl, or a substituted or unsubstituted (3- to 30-membered)heteroaryl; and
a, c and d, each independently, represent an integer of 1 to 4, and b, each independently, represents an integer of 0 to 2; in which if a to d represent an integer of 2 or more, each of R 12 to each of R 15 , may be the same or different.
3 . The organic electroluminescent compound according to claim 2 , wherein Har in formula 1, each independently, is represented by the following formula 1-1 or 1-2:
in formulas 1-1 and 1-2,
a′, each independently, represents an integer of 1 or 2; in which if a′ represents an integer of 2, each of R 12 may be the same or different; and
X 11 , R 11 to R 15 , and b to d are as defined in claim 2 .
4 . The organic electroluminescent compound according to claim 2 , wherein Har in formula 1, each independently, is represented by any one of the following formulas 1-11 to 1-15:
in formulas 1-11 to 1-15,
a′ represents an integer of 1 or 2, in which if a′ represents an integer of 2 or more, each of R12 may be the same or different; and
X 11 , R 11 to R 15 , and a to d are as defined in claim 2 .
5 . The organic electroluminescent compound according to claim 1 , wherein when n represents an integer of 1 and m represents an integer of 0 in the formula 1, at least one of A and B is represented by any one of the following formulas:
in the formulas,
hydrogen may be replaced by deuterium;
R′ 1 to R′ 3 , each independently, represent hydrogen, deuterium, a substituted or unsubstituted (C6-C30)aryl, or a substituted or unsubstituted (3- to 30-membered)heteroaryl;
e to g, each independently, represent an integer of 1 to 4, in which if e to g represent an integer of 2 or more, each of R′ 1 to each of R′ 3 may be the same or different.
6 . The organic electroluminescent compound according to claim 1 , wherein when n represents an integer of 0 and m represents an integer of 1 in the formula 1, A is represented by any one of the following formulas:
in the formulas, hydrogen may be replaced by deuterium.
7 . The organic electroluminescent compound according to claim 1 , wherein the substituent(s) of the substituted aryl, the substituted arylene, the substituted heteroaryl, the substituted heteroarylene, the substituted arentriyl, the substituted heteroarentriyl, each independently, are at least one selected from the group consisting of deuterium; a halogen, a cyano; a carboxyl; a nitro; a hydroxyl; a phosphine oxide; a (C1-C30)alkyl; a halo(C1-C30)alkyl; a (C2-C30)alkenyl; a (C2-C30)alkynyl; a (C1-C30)alkoxy; a (C1-C30)alkylthio; a (C3-C30)cycloalkyl; a (C3-C30)cycloalkenyl; a (3- to 7-membered)heterocycloalkyl; a (C6-C30)aryloxy; a (C6-C30)arylthio; a (3- to 30-membered)heteroaryl unsubstituted or substituted with at least one of deuterium and a (C6-C30)aryl(s); a (C6-C30)aryl unsubstituted or substituted with deuterium; a tri(C1-C30)alkylsilyl; a tri(C6-C30)arylsilyl; a di(C1-C30)alkyl(C6-C30)arylsilyl; a (C1-C30)alkyldi(C6-C30)arylsilyl; an amino; a mono- or di- (C1-C30)alkylamino; a mono- or di- (C2-C30)alkenylamino; a mono- or di- (C6-C30)arylamino; a mono- or di- (3- to 30-membered)heteroarylamino; a (C1-C30)alkyl(C2-C30)alkenylamino; a (C1-C30)alkyl(C6-C30)arylamino; a (C1-C30)alkyl(3- to 30-membered)heteroarylamino; a (C2-C30)alkenyl(C6-C30)arylamino; a (02-C30)alkenyl(3- to 30-membered)heteroarylamino; a (C6-C30)aryl(3- to 30-membered)heteroarylamino; a (C1-C30)alkylcarbonyl; a (C1-C30)alkoxycarbonyl; a (C6-C30)arylcarbonyl; a (C6-C30)arylphosphine; a di(C6-C30)arylboronyl; a di(C1-C30)alkylboronyl; a (C1-C30)alkyl(C6-C30)arylboronyl; a (C6-C30)aryl(C1-C30)alkyl; and (C1-C30)alkyl(C6-C30)aryl.
8 . The organic electroluminescent compound according to claim 1 , wherein the compound represented by formula 1 is selected from the group consisting of the following compounds:
9 . A plurality of host materials comprising a first host material comprising the organic electroluminescent compound according to claim 1 and a second host material comprising an organic electroluminescent compound represented by the following formula 2:
in formula 2,
X 1 to X3, each independently, represent CR′ or N; with the proviso that at least two of X 1 to X 3 represent N;
R′ represents hydrogen or deuterium;
L 1 to L 3 , each independently, represent a single bond, a substituted or unsubstituted (C6-C30)arylene, or a substituted or unsubstituted (3- to 30-membered)heteroarylene;
Ar 1 to Ar 3 , each independently, represent a substituted or unsubstituted (C6-C30)aryl, or a substituted or unsubstituted (3- to 30-membered)heteroaryl; and
o to q, each independently, represent an integer of 1 or 2; in which if o to q represent an integer of 2 or more, each of Li to each of L 3 may be the same or different.
10 . The plurality of host materials according to claim 9 , wherein at least one of Ari to Ar 3 in formula 2 is represented by the following formula 2-1:
in formula 2-1,
Y represents O, S, N(R 31 ), or C(R 32 )(R 33 );
R 31 is a position connected to any one of L 1 to L 3 , or a substituted or unsubstituted (C6-C30)aryl;
R 32 and R 33 , each independently, are a position connected to any one of L 1 to L 3 , or represent a substituted or unsubstituted (C1-C30)alkyl, a substituted or unsubstituted (C6-C30)aryl, or a substituted or unsubstituted (3- to 30-membered)heteroaryl;
F represents a benzene ring or a naphthalene ring;
f represents an integer of 4 to 6; and
R 21 to R 25 , each independently, are a position connected to any one of L 1 to L 3 ; or represent hydrogen, deuterium, a halogen, a cyano, a substituted or unsubstituted (C1-C30)alkyl, a substituted or unsubstituted (C6-C30)aryl, a substituted or unsubstituted (3- to 30-membered)heteroaryl, a substituted or unsubstituted (C3-C30)cycloalkyl, a substituted or unsubstituted (C1-C30)alkoxy, a substituted or unsubstituted tri(C1-C30)alkylsilyl, a substituted or unsubstituted di(C1-C30)alkyl(C6-C30)arylsilyl, a substituted or unsubstituted (C1-C30)alkyldi(C6-C30)arylsilyl, a substituted or unsubstituted tri(C6-C30)arylsilyl, or a substituted or unsubstituted fused ring group of a (C3-C30) aliphatic ring(s) and a (C6-C30) aromatic ring(s); or may be linked to an adjacent substituent(s) to form a ring(s).
11 . The plurality of host materials according to claim 9 , wherein Ar 1 to Ar 3 in formula 2, each independently, represent a (C6-C30)aryl unsubstituted or substituted with at least one of deuterium, a (C1-C30)alkyl(s), and a (C6-C30)aryl(s).
12 . The plurality of host materials according to claim 9 , wherein the compound represented by formula 2 is at least one selected from the group consisting of the following compounds:
13 . An organic electroluminescent device comprising the organic electroluminescent compound according to claim 1 .
14 . An organic electroluminescent device comprising an anode, a cathode, and at least one light-emitting layer between the anode and the cathode, wherein the at least one light-emitting layer comprises the plurality of host materials according to claim 9 .