| Literature DB >> 29780535 |
Wen-Cheng Chen1, Yi Yuan2, Ze-Lin Zhu1, Zuo-Quan Jiang2, Shi-Jian Su3, Liang-Sheng Liao2, Chun-Sing Lee1.
Abstract
Two novel D-σ-A host materials 11,11-bis(9-phenyl-9H-carbazol-3-yl)-11H-benzo[4,5]imidazo[1,2-a]indole (BII-BCz) and 4,4'-(11H-benzo[4,5]imidazo[1,2-a]indole-11,11-diyl)bis(N,N-diphenylaniline) (BII-TPA) are synthesized by using the sp3 carbon attached to a newly designed 11H-benzo[4,5]imidazo[1,2-a]indole building block to link two electron-donating groups. The resulting materials feature high triplet energy levels, good thermal properties and suitable photophysical properties as universal hosts for full-color phosphorescent organic light-emitting diodes (OLEDs). Both BII-BCz and BII-TPA reveal excellent performances in blue, green, yellow, orange and red phosphorescent OLEDs with the same device structure. The employment of the new D-σ-A materials as single hosts in white OLEDs with a simple device structure allows us to achieve state-of-the-art performances. A single-emissive-layer white device based on BII-BCz demonstrates the highest performance with an external quantum efficiency up to 28.2% at 1000 cd m-2. Furthermore, this device displays extremely stable emission spectra, with a ΔCIE of only (0.009, 0.005) from 1000 to 10 000 cd m-2.Entities:
Year: 2018 PMID: 29780535 PMCID: PMC5935058 DOI: 10.1039/c8sc00282g
Source DB: PubMed Journal: Chem Sci ISSN: 2041-6520 Impact factor: 9.825
Fig. 1Absorption (Abs) and fluorescence (FL) spectra in CH2Cl2 at room temperature and phosphorescence (Phos) spectra in 2-methyltetrahydrofuran at 77 K of the new materials. Inset: chemical structures of BII–BCz and BII–TPA.
Summary of the physical data of BII–BCz and BII–TPA
| Compd |
|
| HOMO | LUMO |
|
|
| ||
| Solution | Film | Solution | Film | ||||||
| BII–BCz | 438 | 177 | –5.70 | –2.26 | 3.44/2.98 | 247, 286, 298, 332, 334 | 248, 298 | 356, 371 | 362, 375 |
| BII–TPA | 412 | 133 | –5.34 | –1.90 | 3.44/2.95 | 261, 307 | 263, 313 | 378 | 370 |
5% weight loss temperature.
Glass transition temperature.
Measured by cyclic voltammetry.
Calculated from LUMO = HOMO + Eg.
Estimated from the absorption onset in films.
Measured in 2-methyltetrahydrofuran at 77 K.
Fig. 2Spatial distributions of the molecular orbitals in BII–BCz and BII–TPA.
Fig. 3Device structures and the energy levels of the materials used in the devices.
Key performance data of the BII–BCz and the BII–TPA based PhOLEDs
| Device | Host | Voltage | CIE | CE | PE | EQE |
| B1 | BII–BCz | 3.1, 3.6, 4.2 | (0.16, 0.33) | 59.1, 57.2 | 53.0, 48.6 | 29.4, 28.2 |
| B2 | BII–TPA | 3.1, 3.6, 4.2 | (0.17, 0.34) | 45.2, 35.7 | 40.6, 26.2 | 21.2, 16.5 |
| G1 | BII–BCz | 2.9, 3.3, 3.8 | (0.35, 0.61) | 95.2, 92.9 | 96.2, 76.1 | 27.8, 25.8 |
| G2 | BII–TPA | 2.8, 3.2, 3.7 | (0.34, 0.62) | 96.3, 94.4 | 94.9, 76.7 | 26.4, 25.9 |
| Y1 | BII–BCz | 2.9, 3.6, 4.4 | (0.53, 0.47) | 59.3, 57.2 | 50.6, 41.1 | 23.4, 22.6 |
| Y2 | BII–TPA | 2.6, 3.1, 3.6 | (0.52, 0.48) | 80.3, 77.6 | 79.9, 63.1 | 29.7, 28.0 |
| O1 | BII–BCz | 3.4, 4.8, 6.5 | (0.58, 0.41) | 38.1, 29.7 | 34.2, 15.6 | 20.5, 15.6 |
| O2 | BII–TPA | 3.4, 4.2, 5.3 | (0.58, 0.42) | 33.4, 30.2 | 28.3, 18.9 | 17.1, 15.9 |
| R1 | BII–BCz | 3.3, 4.6, 6.8 | (0.68, 0.31) | 15.8, 8.9 | 16.5, 4.1 | 22.7, 13.4 |
| R2 | BII–TPA | 2.8, 3.4, 4.8 | (0.68, 0.31) | 15.0, 12.1 | 15.1, 7.6 | 22.1, 17.9 |
| WD1 | BII–BCz | 3.3, 3.7, 4.2 | (0.30, 0.42) | 52.0, 51.6 | 40.9, 38.2 | 20.3, 20.2 |
| WD2 | BII–BCz | 3.2, 3.6, 4.1 | (0.33, 0.43) | 65.5, 65.1 | 53.0, 47.9 | 25.0, 24.6 |
| WD3 | BII–BCz | 3.2, 3.6, 4.1 | (0.34, 0.44) | 66.6, 66.1 | 53.5, 47.6 | 25.2, 25.0 |
| WD4 | BII–TPA | 3.2, 3.8, 4.7 | (0.23, 0.37) | 53.2, 48.4 | 44.1, 32.3 | 23.7, 21.2 |
| WD5 | BII–TPA | 3.2, 3.7, 4.6 | (0.29, 0.40) | 56.7, 54.1 | 45.2, 36.7 | 23.6, 21.1 |
| WD6 | BII–TPA | 3.2, 3.7, 4.7 | (0.30, 0.40) | 49.5, 47.1 | 40.0, 30.9 | 20.0, 18.6 |
| WS | BII–BCz | 3.1, 3.6, 4.2 | (0.39, 0.46) | 81.6, 79.1 | 71.1, 58.2 | 29.0, 28.2 |
Voltage at 1, 100, and 1000 cd m–2, respectively.
Measured at 1000 cd m–2.
Device performances corresponding to the value at maximum and 1000 cd m–2, respectively.
Fig. 4Performances of the monochrome PhOLEDs: EQE–luminance curves of (a) the BII–BCz and (b) the BII–TPA based devices; PE–luminance curves of (c) the BII–BCz and (d) the BII–TPA based devices.
Fig. 5EQE–brightness–PE curves of the dual-EML white devices based on (a) BII–BCz and (b) BII–TPA.
Fig. 6EQE–brightness–PE curves of the single-EML white device based on BII–BCz.