Clar's Aromatic π-Sextet Rule for the Construction of Red Multiple Resonance Emitter

IF 16.1 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Haowen Chen, Mingxu Du, Cheng Qu, Qian Jin, Zequan Tao, Renjie Ji, Guimin Zhao, Tao Zhou, Yuheng Lou, Yueming Sun, Wei Jiang, Lian Duan, Yuewei Zhang
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引用次数: 0

Abstract

Despite the proliferation of multiple resonance (MR) materials in the blue to green spectral ranges, red MR emitters remain scarce in the literature, an area that certainly warrants attention for future applications. Here, through a clever application of classic Clar's aromatic π-sextet rule, we triumphantly constructed the first red MR emitter by substituting the conventional benzene ring core with anthracene (fewer π-sextets). Theoretical studies indicate that the quantity of π-sextets ultimately determines the optical bandgap of a molecule, rather than the number of fused benzene rings. Benefiting from the high photoluminescence quantum yield of ~94% and horizontal dipole ratio of ~90%, the corresponding narrowband red (luminescence wavelength: 608 nm) organic light-emitting diode shows a high external quantum efficiency of 27.3%, with only a slight decrease of 3.7% at an elevated luminance level of 100,000 cd/m2.
用于构建红色多重共振发射器的克拉克芳香族 π-ε 规则
尽管蓝绿光谱范围内的多重共振(MR)材料层出不穷,但红色 MR 发射器在文献中仍然很少见,这无疑是未来应用中值得关注的一个领域。在这里,我们巧妙地应用了经典的克拉芳香π-六次方规则,用蒽取代了传统的苯环核心(π-六次方更少),成功地构建了第一种红色磁共振发射器。理论研究表明,最终决定分子光带隙的是π-六位体的数量,而不是融合苯环的数量。得益于约 94% 的高光量子产率和约 90% 的水平偶极比,相应的窄带红色(发光波长:608 nm)有机发光二极管的外部量子效率高达 27.3%,在 100,000 cd/m2 的高亮度水平下仅略微降低 3.7%。
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来源期刊
CiteScore
26.60
自引率
6.60%
发文量
3549
审稿时长
1.5 months
期刊介绍: Angewandte Chemie, a journal of the German Chemical Society (GDCh), maintains a leading position among scholarly journals in general chemistry with an impressive Impact Factor of 16.6 (2022 Journal Citation Reports, Clarivate, 2023). Published weekly in a reader-friendly format, it features new articles almost every day. Established in 1887, Angewandte Chemie is a prominent chemistry journal, offering a dynamic blend of Review-type articles, Highlights, Communications, and Research Articles on a weekly basis, making it unique in the field.
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