High-efficiency organic light-emitting diodes with fluorescent emitters

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作者
Hajime Nakanotani
Takahiro Higuchi
Taro Furukawa
Kensuke Masui
Kei Morimoto
Masaki Numata
Hiroyuki Tanaka
Yuta Sagara
Takuma Yasuda
Chihaya Adachi
机构
[1] Center for Organic Photonics and Electronics Research (OPERA),
[2] Kyushu University,undefined
[3] 744 Motooka,undefined
[4] Nishi,undefined
[5] Innovative Organic Device Laboratory,undefined
[6] Institute of Systems,undefined
[7] Information Technologies and Nanotechnologies (ISIT),undefined
[8] 744 Motooka,undefined
[9] Nishi,undefined
[10] Advanced Research Laboratories,undefined
[11] Fujifilm Co.,undefined
[12] 577 Ushijima,undefined
[13] Kaisei,undefined
[14] Ashigarakami,undefined
[15] International Institute for Carbon Neutral Energy Research (WPI-I2CNER),undefined
[16] Kyushu University,undefined
[17] 744 Motooka,undefined
[18] Nishi,undefined
来源
Nature Communications | / 5卷
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摘要
Fluorescence-based organic light-emitting diodes have continued to attract interest because of their long operational lifetimes, high colour purity of electroluminescence and potential to be manufactured at low cost in next-generation full-colour display and lighting applications. In fluorescent molecules, however, the exciton production efficiency is limited to 25% due to the deactivation of triplet excitons. Here we report fluorescence-based organic light-emitting diodes that realize external quantum efficiencies as high as 13.4–18% for blue, green, yellow and red emission, indicating that the exciton production efficiency reached nearly 100%. The high performance is enabled by utilization of thermally activated delayed fluorescence molecules as assistant dopants that permit efficient transfer of all electrically generated singlet and triplet excitons from the assistant dopants to the fluorescent emitters. Organic light-emitting diodes employing this exciton harvesting process provide freedom for the selection of emitters from a wide variety of conventional fluorescent molecules.
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