1 |
Partial Modification of Electron-withdrawing Groups in Thermally-activated Delayed Fluorescence Materials Aimed to Improve Efficiency and Stability Yokoyama M, Tsuchiya Y, Nakanotani H, Adachi C Chemistry Letters, 49(10), 1189, 2020 |
2 |
Noble phenoxaphosphine-based bipolar hosts for blue OLEDs using thermally-activated delayed fluorescence Lee SW, Kim YS Molecular Crystals and Liquid Crystals, 707(1), 1, 2020 |
3 |
Highly Efficient Thermally Activated Delayed Fluorescence with Slow Reverse Intersystem Crossing Noda H, Nakanotani H, Adachi C Chemistry Letters, 48(2), 126, 2019 |
4 |
High-triplet-energy Bipolar Host Materials Based on Phosphine Oxide Derivatives for Efficient Sky-blue Thermally Activated Delayed Fluorescence Organic Light-emitting Diodes with Reduced Roll-off Kim JU, Wong MY, Kumar S, Hayes OG, Duncan F, Chan CY, Wong BYW, Ye H, Cui LS, Nakanotani H, Zysman-Colman E, Adachi C Chemistry Letters, 48(10), 1225, 2019 |
5 |
Theoretical study of diphenylsulfone derivatives for blue thermally activated delayed fluorescence emitters Lee DE, Choi DH, Kim YS Molecular Crystals and Liquid Crystals, 687(1), 40, 2019 |
6 |
Thermally activated delayed fluorescence host materials based on triphenylphosphine oxide derivatives Choi DH, Kim YS Molecular Crystals and Liquid Crystals, 685(1), 71, 2019 |
7 |
Molecular Design for Blue Thermal Activated Delayed Fluorescence Materials: Substitution Position Effect Geng Y, Cui LS, Kim JU, Nakanotani H, Adachi C Chemistry Letters, 46(10), 1490, 2017 |
8 |
Theoretical study of triazine-based thermally activated delayed fluorescence emitter Lee GH, Kim YS Molecular Crystals and Liquid Crystals, 653(1), 267, 2017 |
9 |
Theoretical study of thioxanthene derivatives for blue thermally activated delayed fluorescence emitters Lee GH, Kim YS Molecular Crystals and Liquid Crystals, 659(1), 134, 2017 |
10 |
Thermally Activated Delayed Fluorescence from Pentacarbazorylbenzonitrile Tanimoto S, Suzuki T, Nakanotani H, Adachi C Chemistry Letters, 45(7), 770, 2016 |