Unveiling the TADF Emitters with Apparent Negative Singlet‐Triplet Gaps: Implications for Exciton Harvesting and OLED Performance

Author:

Chen Xinrui1,Bagnich Sergey2,Pollice Robert34ORCID,Li Bing1,Zhu Yuanyuan1,Saxena Rishabh2,Yin Yixiao1,Zhu Weiguo1,Aspuru‐Guzik Alan3456,Zysman‐Colman Eli7,Köhler Anna2,Wang Yafei1ORCID

Affiliation:

1. Jiangsu Collaborative Innovation Center of Photovoltaic Science and Engineering Jiangsu Engineering Laboratory of Light‐Electricity‐Heat Energy‐Converting Materials and Applications School of Materials Science & Engineering Changzhou University Changzhou 213164 China

2. Soft Matter Optoelectronics BIMF & BPI University of Bayreuth Universitätsstraße 30 95447 Bayreuth Germany

3. Chemical Physics Theory Group Department of Chemistry University of Toronto 80 St. George St Toronto Ontario M5S 3H6 Canada

4. Department of Computer Science University of Toronto 40 St. George St Ontario M5S 2E4 Canada

5. Vector Institute for Artificial Intelligence 661 University Ave Suite 710 Ontario Toronto M5G 1M1 Canada

6. Lebovic Fellow Canadian Institute for Advanced Research (CIFAR) 661 University Ave Ontario Toronto M5G 1M1 Canada

7. Organic Semiconductor Centre EaStCHEM School of Chemistry Purdie Building North Haugh University of St Andrews St Andrews Fife KY16 9ST UK

Abstract

AbstractIntramolecular through‐space charge transfer thermally activated delayed fluorescence (TSCT‐TADF) has attracted much attention recently as it can achieve both small energy splitting and high emission efficiency. However, the relationship of excited states between TSCT and through‐bond charge transfer (TBCT) remains a challenge in the TSCT‐TADF molecules. Herein, three compounds DPS‐m‐bAc, DPS‐p‐bAc, and DPS‐OAc that possess emissive TSCT and/or TBCT states are prepared. Interestingly, a so‐called inverted energy gap is found for both DPS‐m‐bAc and DPS‐p‐bAc in toluene solution, which results from the different charge transfer states of ICThigh and ICTlow, as proved by the detailed transient photoluminescence and calculated results. Intense emission from blue to yellow associated with high photoluminescence quantum yields of 70–100% are measured in doped polymethyl(methacrylate) (PMMA) films. Notably, compound DPS‐m‐bAc achieves the highest reverse intersystem crossing rate constant (kRISC) of over 107 s−1 in a PMMA film, benefiting from close‐lying TSCT and TBCT states. The solution‐processed device with DPS‐m‐bAc displays a maximum external quantum efficiency of 21.7% and a relatively small efficiency roll‐off (EQE of 20.2% @ 100 cd m−2). Overall, this work demonstrates how with judicious emitter engineering, a synergy between different charge transfer excited states, can be achieved, providing an avenue to achieve highly efficient solution‐processed OLEDs.

Funder

National Natural Science Foundation of China

Government of Jiangsu Province

Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung

Publisher

Wiley

Subject

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

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