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通过可交联配体系统的动力学控制设计用于微图案发光二极管的化学稳定有机钙钛矿量子点

Design of Chemically Stable Organic Perovskite Quantum Dots for Micropatterned Light-Emitting Diodes through Kinetic Control of a Cross-Linkable Ligand System.

作者信息

Lee Hanleem, Jeong Ji Won, So Mo Geun, Jung Gun Young, Lee Chang-Lyoul

机构信息

Advanced Photonics Research Institute (APRI), Gwangju Institute of Science and Technology (GIST), Gwangju, 61005, Republic of Korea.

School of Materials Science and Engineering, Gwangju Institute of Science and Technology (GIST), Gwangju, 61005, Republic of Korea.

出版信息

Adv Mater. 2021 Jun;33(23):e2007855. doi: 10.1002/adma.202007855. Epub 2021 May 3.

DOI:10.1002/adma.202007855
PMID:33938035
Abstract

Perovskite quantum dot (QD) light-emitting diodes (PeLEDs) are ideal for next-generation display applications because of their excellent color purity, high efficiency, and cost-effective fabrication. However, developing a technology for high-resolution multicolor patterning of perovskite QDs remains challenging, owing to the chemical instability of these materials. To overcome these issues, in this work, the generation of surface defects is prevented by controlling the ligand-binding kinetics using a stable ligand system (Stable LS). The crystalline reconstruction of perovskite QDs after addition of the Stable LS results in an ≈18% increase in their photoluminescence quantum yield in solution and it also improves the ambient stability of the perovskite QD solution. Moreover, the perovskite QDs with Stable LS can undergo cross-linking under UV irradiation. The tightly bridged perovskite QDs effectively prevent moisture-assisted ligand dissociation in film state due to the increased hydrophobicity and restricted movement of the cross-linked surface ligands. Thus, the cross-linked perovskite QD film shows improved chemical/environmental stability without substantial deterioration in optoelectrical properties. As a result, a white electroluminescent device with high resolution (≈1 μm) is successfully fabricated by inkjet printing using green and red perovskite QDs.

摘要

钙钛矿量子点(QD)发光二极管(PeLEDs)由于其出色的色纯度、高效率和具有成本效益的制造工艺,对于下一代显示应用来说是理想之选。然而,由于这些材料的化学不稳定性,开发一种用于钙钛矿量子点的高分辨率多色图案化技术仍然具有挑战性。为了克服这些问题,在这项工作中,通过使用稳定配体系统(Stable LS)控制配体结合动力学来防止表面缺陷的产生。添加Stable LS后,钙钛矿量子点的晶体结构重建导致其在溶液中的光致发光量子产率提高了约18%,同时也提高了钙钛矿量子点溶液的环境稳定性。此外,具有Stable LS的钙钛矿量子点在紫外线照射下可以发生交联。紧密桥连的钙钛矿量子点由于交联表面配体的疏水性增加和运动受限,有效地防止了薄膜状态下水分辅助的配体解离。因此,交联的钙钛矿量子点薄膜显示出改善的化学/环境稳定性,而光电性能没有实质性下降。结果,通过使用绿色和红色钙钛矿量子点的喷墨打印成功制造出了具有高分辨率(约1μm)的白色电致发光器件。

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