Organic electroluminescent materials and devices
Provided is a new class of phosphorescent emitters. The inventive emitters feature a benzimidazole phenoxide ligand, which is connected via “top linkers” to form novel tetradentate ligands. These phosphorescent emitters are Pt tetradentate complexes when used in OLEDs as emitters improves device external quantum efficiency (EQE) and operational lifetimes.
1 . A compound comprising a first ligand L A of
wherein:
rings A, B, C, D, E, and F are each independently a 5-membered or 6-membered carbocyclic or heterocyclic ring;
Z 1 -Z 12 are each independently C or N;
X 1 -X 4 are each independently C or N;
Y 1 is selected from the group consisting of a direct bond, O, S, NR, and CRR′;
Y 2 is selected from the group consisting of a direct bond, O, S, NR, and CRR′;
at least one of Y 1 and Y 2 is not a direct bond;
each R A , R B , R C , R D , R E , R F , and R G independently represents mono to the maximum allowable number of substitutions, or no substitution;
each R, R′, R A , R B , R C , R D , R E , R F , and R G is independently a hydrogen or a substituent selected from the group consisting of deuterium, halogen, alkyl, cycloalkyl, heteroalkyl, heterocycloalkyl, arylalkyl, alkoxy, aryloxy, amino, silyl, germyl, alkenyl, cycloalkenyl, heteroalkenyl, alkynyl, aryl, heteroaryl, acyl, carboxylic acid, ether, ester, nitrile, isonitrile, sulfanyl, selenyl, sulfinyl, sulfonyl, phosphino, boryl, and combinations thereof;
L A is complexed to a metal M;
M can be Pd or Pt;
M can be coordinated to other ligands;
the ligand L A can be linked with other ligands to form a pentadentate or hexadentate ligand; and
any two of R, R′, R A , R B , R C , R D , R E , R F , and R G can be joined or fused together to form a ring.
2 . The compound of claim 1 , wherein each R, R′, R A , R B , R C , R D , R E , R F , and R G is independently a hydrogen or a substituent selected from the group consisting of deuterium, fluorine, alkyl, cycloalkyl, heteroalkyl, alkoxy, aryloxy, amino, silyl, boryl, alkenyl, cycloalkenyl, heteroalkenyl, aryl, heteroaryl, nitrile, isonitrile, sulfanyl, and combinations thereof.
3 . The compound of claim 1 , wherein each of X 1 -X 4 is C.
4 . The compound of claim 1 , wherein at least one of Y 1 and Y 2 is O.
5 . The compound of claim 1 , wherein at least one of rings A, C, and D is a 5-membered heterocyclic ring.
6 . The compound of claim 1 , wherein Z 1 , Z 6 , and Z 7 can independently be N.
7 . The compound of claim 1 , wherein R F comprises at least one phenyl; and R G can independently comprise at least one isopropyl group.
8 . The compound of claim 1 , wherein the ligand LA is selected from the group consisting of
wherein:
Y 1 and Y 2 are independently selected from S, O or NR or a bond, at least one of Y 1 or Y 2 is not a bond;
X, Y and W are independently selected from O, S, NR or CR W 2 ;
R W is an alkyl, aryl, or cycloalkyl group;
T 1 -T 7 are independently selected from C or N; and
R A , R B , R C , R D , R E , R f , and R G are defined as above.
9 . The compound of claim 1 , wherein the ligand L A has a structure of
wherein X and Y are each independently O, S, or CR′; and
each R and R′ is independently a hydrogen or a substituent selected from the group consisting of deuterium, halogen, alkyl, cycloalkyl, heteroalkyl, heterocycloalkyl, arylalkyl, alkoxy, aryloxy, amino, silyl, germyl, alkenyl, cycloalkenyl, heteroalkenyl, alkynyl, aryl, heteroaryl, acyl, carboxylic acid, ether, ester, nitrile, isonitrile, sulfanyl, selenyl, sulfinyl, sulfonyl, phosphino, boryl, and combinations thereof.
10 . The compound of claim 9 , wherein each R and R′ is independently a hydrogen or a substituent selected from the group consisting of deuterium, fluorine, alkyl, cycloalkyl, heteroalkyl, alkoxy, aryloxy, amino, silyl, boryl, alkenyl, cycloalkenyl, heteroalkenyl, aryl, heteroaryl, nitrile, isonitrile, sulfanyl, and combinations thereof.
11 . The compound of claim 9 , wherein X and Y are both O; or X and Y are both S.
12 . The compound of claim 9 , wherein the compound is selected from the group consisting of:
13 . The compound of claim 1 , wherein the ligand L A has a structure of
wherein each X is independently O, S, NR′ or CR′; and
each R and R′ is independently a hydrogen or a substituent selected from the group consisting of deuterium, halogen, alkyl, cycloalkyl, heteroalkyl, heterocycloalkyl, arylalkyl, alkoxy, aryloxy, amino, silyl, germyl, boryl, alkenyl, cycloalkenyl, heteroalkenyl, alkynyl, aryl, heteroaryl, acyl, carboxylic acid, ether, ester, nitrile, isonitrile, sulfanyl, selenyl, sulfinyl, sulfonyl, phosphino, boryl, and combinations thereof.
14 . The compound of claim 13 , wherein R′ in CR′ is dimethyl, and R′ in NR′ is phenyl.
15 . The compound of claim 13 , wherein both Xs are O; or both Xs are S.
16 . The compound of claim 13 , wherein the compound is selected from the group consisting of:
17 . An organic light emitting device (OLED) comprising:
an anode;
a cathode; and
an organic layer disposed between the anode and the cathode, wherein the organic layer comprises a compound according to any one of claims 1-16 .
18 . The OLED of claim 17 , wherein the organic layer further comprises a host, wherein host comprises at least one chemical moiety selected from the group consisting of triphenylene, carbazole, indolocarbazole, dibenzothiophene, dibenzofuran, dibenzoselenophene, 5,9-dioxa-13b-boranaphtho[3,2,1-de]anthracene, aza-triphenylene, aza-carbazole, aza-indolocarbazole, aza-dibenzothiophene, aza-dibenzofuran, aza-dibenzoselenophene, and aza-(5,9-dioxa-13b-boranaphtho[3,2,1-de]anthracene).
19 . The OLED of claim 17 , wherein the organic layer further comprises a host wherein the host is selected from the group consisting of:
and combinations thereof.
20 . A consumer product comprising an organic light-emitting device comprising:
an anode;
a cathode; and
an organic layer disposed between the anode and the cathode, wherein the organic layer comprises a compound comprising a first ligand L A of
wherein:
rings A, B, C, D, E, and F are each independently a 5-membered or 6-membered carbocyclic or heterocyclic ring;
Z 1 -Z 12 are each independently C or N;
X 1 -X 4 are each independently C or N;
Y 1 is selected from the group consisting of a direct bond, O, S, NR, and CRR′;
Y 2 is selected from the group consisting of a direct bond, O, S, NR, and CRR′;
at least one of Y 1 and Y 2 is not a direct bond;
each R A , R B , R C , R D , R E , R F , and R G independently represents mono to the maximum allowable number of substitutions, or no substitution;
each R, R′, R A , R B , R C , R D , R E , R F , and R G is independently a hydrogen or a substituent selected from the group consisting of deuterium, halogen, alkyl, cycloalkyl, heteroalkyl, heterocycloalkyl, arylalkyl, alkoxy, aryloxy, amino, silyl, germyl, alkenyl, cycloalkenyl, heteroalkenyl, alkynyl, aryl, heteroaryl, acyl, carboxylic acid, ether, ester, nitrile, isonitrile, sulfanyl, selenyl, sulfinyl, sulfonyl, phosphino, boryl, and combinations thereof;
L A is complexed to a metal M;
M can be Pd or Pt;
M can be coordinated to other ligands;
the ligand L A can be linked with other ligands to form a pentadentate or hexadentate ligand; and
any two of R, R′, R A , R B , R C , R D , R E , R F , and R G can be joined or fused together to form a ring.