Au(I)‐TADF Emitters for High Efficiency Full‐Color Vacuum‐Deposited OLEDs and TADF‐Sensitized Fluorescent OLEDs with Ultrahigh Brightness and Prolonged Operational Lifetime

Author:

Tang Rui12,Xu Shuo1,Du Lili13,Hung Faan‐Fung14,Lam Tsz‐Lung14ORCID,Cheng Gang145ORCID,Low Kam‐Hung1,Wan Qingyun1,Wu Siping1,Chen Yong6,Che Chi‐Ming145ORCID

Affiliation:

1. Department of Chemistry State Key Laboratory of Synthetic Chemistry CAS‐HKU Joint Laboratory on New Materials The University of Hong Kong Pokfulam Road Hong Kong P. R. China

2. Department of Chemistry Southern University of Science and Technology Shenzhen Guangdong 518055 P. R. China

3. School of Life Science Jiangsu University Zhejiang 212013 P. R. China

4. Hong Kong Quantum AI Lab Limited Units 909–915, Building 17 W, 17 Science Park West Avenue, Hong Kong Science Park, Pak Shek Kok Hong Kong P. R. China

5. HKU Shenzhen Institute of Research and Innovation Shenzhen Guangdong 518057 P. R. China

6. Key Laboratory of Photochemical Conversion and Optoelectronic Materials and CAS‐HKU Joint Laboratory on New Materials Technical Institute of Physics and Chemistry Chinese Academy of Sciences Beijing 100190 P. R. China

Abstract

AbstractHerein a class of structurally simple and operationally stable Au(I)‐TADF (TADF = thermally activated delayed fluorescence) materials, based on a carbene–metal–amide (CMA) molecular scaffold comprised of sterically bulky N‐heterocyclic carbene ligands with N‐heterocyclic π‐annulation, are reported. These CMA(Au) emitters are thermally stable, adopt coplanar or orthogonal geometry between the carbene and amide ligands, and show strong blue to deep red TADF emissions (466–666 nm) from thermally equilibrated singlet ligand‐to‐ligand‐charge‐transfer excited states with emission quantum yields of 0.63–0.99 and radiative decay rate constants of 0.68–3.2 × 106 s−1 in thin film samples at room temperature. The effects of increasing π‐extension and orthogonal molecular geometry are similarly manifested in the reduction of both singlet–triplet energy gap and S1 transition dipole moment. The vacuum‐deposited Au(I) organic light‐emitting diodes (OLEDs) display superior electroluminescence characterized by ultrahigh brightness up to 300 000 cd m−2 and external quantum efficiencies (EQEs) up to 26.2% with roll‐offs down to 2.6% at 1000 cd m−2 alongside record‐setting device lifetimes (LT95) up to 2082 h. Ultrapure‐green TADF‐sensitized fluorescent OLEDs employing the CMA(Au) emitter as sensitizer and a multiresonance terminal emitter achieve EQEs of up to 25.3%.

Funder

Innovation and Technology Fund

Publisher

Wiley

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

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