具有强自旋轨道耦合和超越 El-Sayed 规则的高效高衬逆系间交叉的蒽衍生物

IF 10.7 2区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Ki Ju Kim, Jaesung Kim, Jong Tae Lim, Jinyeong Heo, Bum Jun Park, Hyewon Nam, Hyeonwoo Choi, Seung Soo Yoon, Woojae Kim, Sunwoo Kang and Taekyung Kim
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引用次数: 0

摘要

具有热激子通道和三重-三重融合(TTF)介导的高位反向系统间交叉(hRISC)的材料,因其能够将非辐射 "暗 "三重子转换为辐射单激子而备受关注。这种自旋转换过程可产生超过理论极限的高激子利用效率(EUE)。值得注意的是,从高位激发的三重态到单重态的这种自旋转换过程是由受 El-Sayed 规则支配的正交轨道转换效应促成的。本研究合成并分析了具有茚并喹啉取代基的蒽衍生物--7,7-二甲基-9-(10-(4-(萘-1-基)苯基)蒽-9-基)-7H-茚并[1,2-f]喹啉(2MIQ-NPA),以研究即使不遵循 El-Sayed 规则,这些分子中是否也会发生 hRISC 过程。通过 DFT 计算和实验全面揭示了发光体的 hRISC 通道,并利用瞬态电致发光测量对其进行了定量细分。结果表明,2MIQ-NPA 不遵循 El-Sayed 规则,其高位三重态 T4 和最低单重态 S1 之间的自旋轨道耦合矩阵元素相对较强,为 0.116 cm-1,它能有效地将三重激子转化为单重激子,EUE 为 64.3%,其中直接热激子通道为 19.2%,TTF 介导的热激子通道为 15.1%。尽管外耦合效率较低,但采用 2MIQ-NPA 的非掺杂器件实现了出色的器件性能,外部量子效率达到 7.0%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Anthracene derivatives with strong spin–orbit coupling and efficient high-lying reverse intersystem crossing beyond the El-Sayed rule†

Anthracene derivatives with strong spin–orbit coupling and efficient high-lying reverse intersystem crossing beyond the El-Sayed rule†

The attention to materials with hot exciton channel and triplet–triplet fusion (TTF) mediated high-lying reverse intersystem crossing (hRISC) has been raised for their ability to convert non-emissive ‘dark’ triplets into radiative singlet excitons. This spin conversion process results in high exciton utilization efficiency (EUE) that exceeds the theoretical limits. Notably, it is known that such spin conversion processes from the high-lying excited triplet to the singlet state are facilitated by the orthogonal orbital transition effect governed by the El-Sayed's rule. In this study, an anthracene derivative with indenoquinoline substituent 7,7-dimethyl-9-(10-(4-(naphthalen-1-yl)phenyl)anthracen-9-yl)-7H-indeno[1,2-f]quinoline (2MIQ-NPA) was synthesized and analyzed to investigate whether the hRISC process occurs in these molecules, even when the El-Sayed's rule is not followed. The hRISC channels of the emitter were fully unraveled through DFT calculations and experiments, which were quantitatively subdivided using transient electroluminescence measurements. The results showed that 2MIQ-NPA, which does not follow the El-Sayed's rule and has a relatively strong spin–orbit coupling matrix element of 0.116 cm−1 between the high-lying triplet state of T4 and the lowest singlet state of S1, effectively converted triplet excitons into singlet excitons with an EUE of 64.3%, contributed by a direct hot exciton channel of 19.2% and a TTF-mediated hot exciton channel of 15.1%. Despite the low outcoupling efficiency, the non-doped device with 2MIQ-NPA achieved an excellent device performance with an external quantum efficiency of 7.0%.

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来源期刊
Materials Horizons
Materials Horizons CHEMISTRY, MULTIDISCIPLINARY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
18.90
自引率
2.30%
发文量
306
审稿时长
1.3 months
期刊介绍: Materials Horizons is a leading journal in materials science that focuses on publishing exceptionally high-quality and innovative research. The journal prioritizes original research that introduces new concepts or ways of thinking, rather than solely reporting technological advancements. However, groundbreaking articles featuring record-breaking material performance may also be published. To be considered for publication, the work must be of significant interest to our community-spanning readership. Starting from 2021, all articles published in Materials Horizons will be indexed in MEDLINE©. The journal publishes various types of articles, including Communications, Reviews, Opinion pieces, Focus articles, and Comments. It serves as a core journal for researchers from academia, government, and industry across all areas of materials research. Materials Horizons is a Transformative Journal and compliant with Plan S. It has an impact factor of 13.3 and is indexed in MEDLINE.
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