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通过稳定其八面体结构来制造红色发光钙钛矿 LED。

Fabrication of red-emitting perovskite LEDs by stabilizing their octahedral structure.

机构信息

Key Laboratory of Advanced Display and System Applications of Ministry of Education, Shanghai University, Shanghai, China.

Cavendish Laboratory, University of Cambridge, Cambridge, UK.

出版信息

Nature. 2024 Jul;631(8019):73-79. doi: 10.1038/s41586-024-07531-9. Epub 2024 Jun 12.

Abstract

Light-emitting diodes (LEDs) based on metal halide perovskites (PeLEDs) with high colour quality and facile solution processing are promising candidates for full-colour and high-definition displays. Despite the great success achieved in green PeLEDs with lead bromide perovskites, it is still challenging to realize pure-red (620-650 nm) LEDs using iodine-based counterparts, as they are constrained by the low intrinsic bandgap. Here we report efficient and colour-stable PeLEDs across the entire pure-red region, with a peak external quantum efficiency reaching 28.7% at 638 nm, enabled by incorporating a double-end anchored ligand molecule into pure-iodine perovskites. We demonstrate that a key function of the organic intercalating cation is to stabilize the lead iodine octahedron through coordination with exposed lead ions and enhanced hydrogen bonding with iodine. The molecule synergistically facilitates spectral modulation, promotes charge transfer between perovskite quantum wells and reduces iodine migration under electrical bias. We realize continuously tunable emission wavelengths for iodine-based perovskite films with suppressed energy loss due to the decrease in bond energy of lead iodine in ionic perovskites as the bandgap increases. Importantly, the resultant devices show outstanding spectral stability and a half-lifetime of more than 7,600 min at an initial luminance of 100 cd m.

摘要

基于金属卤化物钙钛矿(PeLED)的发光二极管(LED)具有高质量的色彩和简便的溶液处理工艺,是全彩和高清显示器的理想候选材料。尽管溴化铅钙钛矿的绿色 PeLED 取得了巨大成功,但使用碘基对应物实现纯红光(620-650nm)LED 仍然具有挑战性,因为它们受到固有带隙低的限制。在这里,我们通过在纯碘钙钛矿中引入双端锚定配体分子,报告了整个纯红光区域内高效且颜色稳定的 PeLED,其峰值外量子效率在 638nm 时达到 28.7%。我们证明了有机插层阳离子的一个关键功能是通过与暴露的铅离子配位以及与碘的增强氢键来稳定铅碘八面体。该分子协同促进光谱调制,促进钙钛矿量子阱之间的电荷转移,并在电偏压下减少碘迁移。我们实现了基于碘的钙钛矿薄膜的连续可调发射波长,由于离子钙钛矿中铅碘键能随着带隙的增加而降低,因此能量损失得到抑制。重要的是,所得器件表现出出色的光谱稳定性和超过 7600 分钟的半衰期,初始亮度为 100cd/m。

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