Dinuclear Pt II Complexes with Strong Blue Phosphorescence for Operationally Stable Organic Light‐Emitting Diodes with EQE up to 23 % at 1000 cd m −2
Here we describe the synthesis and characterization of a new class of dinuclear Pt II complexes with blue phosphorescence. Bulky N ‐heterocyclic carbene and tethered bridging ligands were employed to suppress photo‐induced structural changes and to improve thermal stability of the complexes. These c...
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Veröffentlicht in: | Angewandte Chemie 2022-03, Vol.134 (10) |
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creator | Lo, Kar‐Wai Tong, Glenna So Ming Cheng, Gang Low, Kam‐Hung Che, Chi‐Ming |
description | Here we describe the synthesis and characterization of a new class of dinuclear Pt
II
complexes with blue phosphorescence. Bulky
N
‐heterocyclic carbene and tethered bridging ligands were employed to suppress photo‐induced structural changes and to improve thermal stability of the complexes. These complexes show mixed
3
IL/
3
MLCT blue emission (≈460 nm) with emission quantum yields of up to 0.95, emission lifetimes of as low as 1.3 μs and radiative decay rate constants of up to 7.3×10
5
s
−1
in 4 wt % doped PMMA films; the latter is attributed to a
1
MLCT excited state having high metal character (resulting in a large SOC) and a large transition dipole moment, based on DFT calculations. Phosphor‐sensitized blue hyper‐OLEDs with Commission Internationale de L'Eclairage (CIE) coordinates of (0.13, 0.12) showed a maximum EQE of 23.4 % with a full‐width‐at‐half‐maximum of 18 nm and a LT
50
>250 h at an
L
0
of 1000 cd m
−2
. |
doi_str_mv | 10.1002/ange.202115515 |
format | Article |
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II
complexes with blue phosphorescence. Bulky
N
‐heterocyclic carbene and tethered bridging ligands were employed to suppress photo‐induced structural changes and to improve thermal stability of the complexes. These complexes show mixed
3
IL/
3
MLCT blue emission (≈460 nm) with emission quantum yields of up to 0.95, emission lifetimes of as low as 1.3 μs and radiative decay rate constants of up to 7.3×10
5
s
−1
in 4 wt % doped PMMA films; the latter is attributed to a
1
MLCT excited state having high metal character (resulting in a large SOC) and a large transition dipole moment, based on DFT calculations. Phosphor‐sensitized blue hyper‐OLEDs with Commission Internationale de L'Eclairage (CIE) coordinates of (0.13, 0.12) showed a maximum EQE of 23.4 % with a full‐width‐at‐half‐maximum of 18 nm and a LT
50
>250 h at an
L
0
of 1000 cd m
−2
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II
complexes with blue phosphorescence. Bulky
N
‐heterocyclic carbene and tethered bridging ligands were employed to suppress photo‐induced structural changes and to improve thermal stability of the complexes. These complexes show mixed
3
IL/
3
MLCT blue emission (≈460 nm) with emission quantum yields of up to 0.95, emission lifetimes of as low as 1.3 μs and radiative decay rate constants of up to 7.3×10
5
s
−1
in 4 wt % doped PMMA films; the latter is attributed to a
1
MLCT excited state having high metal character (resulting in a large SOC) and a large transition dipole moment, based on DFT calculations. Phosphor‐sensitized blue hyper‐OLEDs with Commission Internationale de L'Eclairage (CIE) coordinates of (0.13, 0.12) showed a maximum EQE of 23.4 % with a full‐width‐at‐half‐maximum of 18 nm and a LT
50
>250 h at an
L
0
of 1000 cd m
−2
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II
complexes with blue phosphorescence. Bulky
N
‐heterocyclic carbene and tethered bridging ligands were employed to suppress photo‐induced structural changes and to improve thermal stability of the complexes. These complexes show mixed
3
IL/
3
MLCT blue emission (≈460 nm) with emission quantum yields of up to 0.95, emission lifetimes of as low as 1.3 μs and radiative decay rate constants of up to 7.3×10
5
s
−1
in 4 wt % doped PMMA films; the latter is attributed to a
1
MLCT excited state having high metal character (resulting in a large SOC) and a large transition dipole moment, based on DFT calculations. Phosphor‐sensitized blue hyper‐OLEDs with Commission Internationale de L'Eclairage (CIE) coordinates of (0.13, 0.12) showed a maximum EQE of 23.4 % with a full‐width‐at‐half‐maximum of 18 nm and a LT
50
>250 h at an
L
0
of 1000 cd m
−2
.</abstract><doi>10.1002/ange.202115515</doi><orcidid>https://orcid.org/0000-0002-2554-7219</orcidid></addata></record> |
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title | Dinuclear Pt II Complexes with Strong Blue Phosphorescence for Operationally Stable Organic Light‐Emitting Diodes with EQE up to 23 % at 1000 cd m −2 |
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