具有杂化局部特性和电荷转移特性的不对称深蓝色四氟苯桥接荧光团,可用于效率滚降较低的高效有机发光二极管†。

IF 6 2区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Shengnan Wang, Haoyuan Qi, Hao Huang, Jie Li, Yuchao Liu, Shanfeng Xue, Shian Ying, Changsheng Shi and Shouke Yan
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引用次数: 0

摘要

高动态范围技术对有机发光二极管(OLED)显示器提出了更高的要求,尤其是蓝色发光体,在满足宽色域 BT.2100 标准和实现高亮度下的高效率方面面临着巨大挑战。在此,我们提出了一种设计策略,通过将不对称的供体-受体-供体(D-A-D′)型结构与新型四氟苯受体相结合,构建双极深蓝材料。由此产生的分子具有典型的杂化局部和电荷转移态特征,振荡器强度高,实现了超过 80% 的高荧光效率和超过 6 × 108 s-1 的快速辐射率。因此,掺杂器件能发出色坐标为(0.159, 0.048)的深蓝色光,最大外部量子效率(EQE)为 6.35%,在 500 和 1000 cd m-2 时效率分别保持在 5.95% 和 5.61%。值得注意的是,无掺杂 OLED 的 EQE 高达 7.44%,即使在 1000 cd m-2 时也能保持令人印象深刻的 6.99%,在亮度达到 10 000 cd m-2 时仍能保持 6.19% 的高水平,显示出极小的效率衰减。这些发现凸显了基于四氟苯的 D-A-D′ 型分子设计策略在开发高效蓝色材料及其光电应用方面的巨大潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Asymmetric deep-blue tetrafluorobenzene-bridged fluorophores with hybridized local and charge-transfer characteristics for efficient OLEDs with low efficiency roll-off†

Asymmetric deep-blue tetrafluorobenzene-bridged fluorophores with hybridized local and charge-transfer characteristics for efficient OLEDs with low efficiency roll-off†

High dynamic range technology places greater demands on organic light-emitting diode (OLED) displays, particularly blue emitters, which face significant challenges in meeting the wide-color-gamut BT.2100 standard and achieving high efficiency at high brightness. Here, we propose a design strategy for constructing bipolar deep-blue materials by combining an asymmetric donor–acceptor–donor′ (D–A–D′) type structure with a novel tetrafluorobenzene acceptor. The resulting molecules feature typical hybridized local and charge-transfer state characteristics, with high oscillator strengths, achieving high fluorescence efficiencies exceeding 80% and fast radiative rates that surpass 6 × 108 s−1. Consequently, the doped device emits a deep-blue light with color coordinates of (0.159, 0.048), and demonstrates a maximum external quantum efficiency (EQE) of 6.35%, maintaining efficiencies of 5.95% and 5.61% at 500 and 1000 cd m−2, respectively. Remarkably, the non-doped OLED boasts a superior EQE of 7.44%, retaining an impressive 6.99% even at 1000 cd m−2 and maintaining a high 6.19% up to a brightness of 10 000 cd m−2, demonstrating minimal efficiency roll-off. These findings underscore the great potential of the tetrafluorobenzene-based D–A–D′ type molecular design strategy in developing efficient blue materials and their optoelectronic applications.

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来源期刊
Materials Chemistry Frontiers
Materials Chemistry Frontiers Materials Science-Materials Chemistry
CiteScore
12.00
自引率
2.90%
发文量
313
期刊介绍: Materials Chemistry Frontiers focuses on the synthesis and chemistry of exciting new materials, and the development of improved fabrication techniques. Characterisation and fundamental studies that are of broad appeal are also welcome. This is the ideal home for studies of a significant nature that further the development of organic, inorganic, composite and nano-materials.
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