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최원영

Choe, Wonyoung
Laboratory for Sustainable Future
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Anisotropy-guided interface molecular engineering for stable blue electroluminescence

Author(s)
Hwang, EunhyeJo, UnhyeokKim, JiyeonRoh, Deok-HoKim, Seung ChanKim, MinseokKi, Hyun-ChulChoe, WonyoungLee, Jun YeobKwon, Tae-Hyuk
Issued Date
2025-02
DOI
10.1016/j.chempr.2024.08.019
URI
https://scholarworks.unist.ac.kr/handle/201301/84627
Citation
CHEM, v.11, no.2, pp.102296
Abstract
This work was financially supported by the Korea Institute of Energy Technology Evaluation and Planning (no. 20223030010240), the Technology Innovation Program (20025766-1415187407-Alchemist project), and the Korea Institute for Advancement of Technology grant (P0023703-HRD Program for Industrial Innovation), funded by the Ministry of Trade, Industry & Energy (MOTIE, Korea). This work was also financially supported by the National Research Foundation of Korea (RS-2023-00279793 and RS-2024-00358308) and the UBSI Research Fundof UNIST(1.230069.01). This research benefited from the use of the infrastructure at UNIST Central Research Facilities. We acknowledge the Pohang Accelerator Laboratory (PAL) for the X-ray experiments at 6D beamline (2022-3rd-6D-A010, 2023-1st-6D-A035, and 20232nd-6D-A026). J.K. thanks the support from the NRF grant funded by the Korean Government (2018H1A2A1061391-Global Ph.D. Fellowship Program).
Publisher
CELL PRESS
ISSN
2451-9308
Keyword (Author)
charge balancecrystal engineeringdipole-induced anisotropic interactionorganic light-emitting diodesSDG7: Affordable and clean energytriplet confinementblue electroluminescence

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