Intrinsically stretchable organic solar cells with efficiencies of over 11% J Noh, GU Kim, S Han, SJ Oh, Y Jeon, D Jeong, SW Kim, TS Kim, BJ Kim, ... ACS Energy Letters 6 (7), 2512-2518, 2021 | 109 | 2021 |
Intrinsically‐stretchable, efficient organic solar cells achieved by high‐molecular‐weight, electro‐active polymer acceptor additives JW Lee, GU Kim, DJ Kim, Y Jeon, S Li, TS Kim, JY Lee, BJ Kim Advanced Energy Materials 12 (28), 2200887, 2022 | 69 | 2022 |
Intrinsically stretchable and non‐halogenated solvent processed polymer solar cells enabled by hydrophilic spacer‐incorporated polymers JW Lee, C Lim, SW Lee, Y Jeon, S Lee, TS Kim, JY Lee, BJ Kim Advanced Energy Materials 12 (46), 2202224, 2022 | 58 | 2022 |
Flexible Transparent Crystalline-ITO/Ag Nanowire Hybrid Electrode with High Stability for Organic Optoelectronics HG Im*, J Jang*, Y Jeon*, J Noh, J Jin, JY Lee, BS Bae ACS Applied Materials & Interfaces 12 (50), 56462-56469, 2020 | 39 | 2020 |
Intrinsically Stretchable Organic Solar Cells without Cracks under 40% Strain S Lee*, Y Jeon*, SY Lee*, BS Ma, M Song, D Jeong, J Jo, GU Kim, J Lee, ... Advanced Energy Materials, 2300533, 0 | 22* | |
Important role of additive in morphology of stretchable electrode for highly intrinsically stable organic photovoltaics EY Shin, SH Park, Y Jeon, K Kim, G Lee, JY Lee, HJ Son ACS Applied Energy Materials 6 (17), 8729-8737, 2023 | 9 | 2023 |
Facile Synthesis Route for Halide Perovskite Nanoparticles Using Ultrasonic Spray for Optoelectronic Devices DJ Kim, B Choi, Y Jeon, JY Lee ACS Applied Nano Materials 7 (12), 14185-14192, 2024 | 1 | 2024 |