Exciplex-enabled high-efficiency, fully stretchable OLEDs
- Authors
- Zhou, Huanyu; Kim, Hyun-Wook; Han, Shin Jung; Zhang, Danzhen; Jeong, Woo Jin; Yu, Haomiao; Tsuchiya, Youichi; Hu, Bin; Huh, June; Zhang, Teng; Cho, Seungyeon; Kim, Joo Sung; Kim, Dong-Hyeok; Yun, Hyung Joong; Park, Jinwoo; Jang, Kyung Yeon; Yoon, Eojin; Harit, Amit Kumar; Sung, Min-Jun; Ahn, Yooseong; Chen, Hao; Zeng, Qingsen; Park, Chan-Yul; Kim, Kwan-Nyeong; Ayuningtias, Landep; Yang, Hoichang; Kim, Jong Chan; Kim, Yun-Hi; Woo, Han Young; Adachi, Chihaya; Gogotsi, Yury; Lee, Tae-Woo
- Issue Date
- Jan-2026
- Publisher
- Nature Publishing Group
- Citation
- Nature, v.649, no.8097, pp 604 - 611
- Pages
- 8
- Indexed
- SCIE
SCOPUS
- Journal Title
- Nature
- Volume
- 649
- Number
- 8097
- Start Page
- 604
- End Page
- 611
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/82122
- DOI
- 10.1038/s41586-025-09904-0
- ISSN
- 0028-0836
1476-4687
- Abstract
- Fully stretchable organic light-emitting diodes (OLEDs), composed entirely of intrinsically stretchable materials, are essential for on-skin displays1, 2–3. However, their low device efficiency has been a persistent barrier to practical applications for more than a decade4. Here we addressed this challenge by incorporating an intrinsically stretchable exciplex-assisted phosphorescent (ExciPh) layer. The elastomer-tolerant triplet-recycling mechanism mitigates exciton energy transfer limitations arising from the insulating elastomer matrix, yielding a light-emitting layer with more than 200% stretchability and an external quantum efficiency (EQE) of 21.7%. To translate this performance to fully stretchable devices, we integrated MXene-contact stretchable electrodes (MCSEs), which feature high mechanical robustness and tunable work function (WF), ensuring efficient hole and electron injection. These advances enable fully stretchable OLEDs with a record EQE of 17.0% and minimal luminescence loss under 60% strain. This approach to designing high-efficiency, mechanically compliant optoelectronics will enable the next-generation wearable and deformable displays.
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