Heavy Atom Effect on Tn (n ≥ 2) Afterglow

IF 18.5 1区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Jiuyang Li, Qianqian Yan, Xiangxiang Zhai, Guangming Wang, Xun Li, Kaka Zhang
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引用次数: 0

Abstract

The properties of higher triplet excited states (Tn, n ≥ 2) are essential for deep understanding of excited state dynamics, but direct observation of Tn phosphorescence remains rare, let alone systematic studies of Tn behaviors based on well‐designed luminescence molecules. Recently, a serendipitous finding of Tn (n ≥ 2) afterglow (phosphorescence lifetime > 0.1 s) in benzophenone‐containing difluoroboron β‐diketonate (BPBF2) system is communicated. Here Cl/Br/I atoms are covalently incorporated into BPBF2 molecules and report the first systematic study of heavy atom effect (HAE) on Tn (n ≥ 2) afterglow. It is known that Cl/Br/I HAE has been widely reported and thoroughly studied in T1 afterglow systems, which shows that Br atom is usually the optimized selection for balancing T1 afterglow efficiency and lifetime. In contrast, the covalent linkage of Br atom to BPBF2 has been found to dramatically suppress Tn (n ≥ 2) afterglow. The experimental emission intensity(T2)/intensity(T1) ratios are positively correlated with kIC(T1−T2)/kIC(T2−T1) × kP(T2)/kP(T1), where kIC and kP refer to the rates of calculated internal conversion and phosphorescence emission. These fundamental studies would be helpful for elucidating the panorama of Perrin‐Jablonski diagram of organic systems and provide intriguing Tn (n ≥ 2) afterglow materials for future applications.
重原子对Tn (n≥2)余辉的影响
高三重态(Tn, n≥2)的性质对于深入理解激发态动力学至关重要,但对Tn磷光的直接观察仍然很少,更不用说基于精心设计的发光分子对Tn行为的系统研究了。最近,偶然发现了Tn (n≥2)余辉(磷光寿命>;0.1 s)在含二苯甲酮的二氟硼β二酮酸酯(bpb2)体系中进行沟通。本文将Cl/Br/I原子共价结合到bpb2分子中,并首次系统地研究了重原子效应(HAE)对Tn (n≥2)余辉的影响。已知Cl/Br/I HAE在T1余辉体系中的应用已经得到了广泛的报道和深入的研究,表明Br原子通常是平衡T1余辉效率和寿命的最佳选择。相反,发现Br原子与bpb2的共价键能显著抑制Tn (n≥2)余辉。实验发射强度(T2)/强度(T1)比值与kIC(T1−T2)/kIC(T2−T1) × kP(T2)/kP(T1)呈正相关,其中kIC和kP为计算的内部转化率和磷光发射率。这些基础研究将有助于阐明有机体系的Perrin - Jablonski图全景,并为未来的应用提供有趣的Tn (n≥2)余辉材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Advanced Functional Materials
Advanced Functional Materials 工程技术-材料科学:综合
CiteScore
29.50
自引率
4.20%
发文量
2086
审稿时长
2.1 months
期刊介绍: Firmly established as a top-tier materials science journal, Advanced Functional Materials reports breakthrough research in all aspects of materials science, including nanotechnology, chemistry, physics, and biology every week. Advanced Functional Materials is known for its rapid and fair peer review, quality content, and high impact, making it the first choice of the international materials science community.
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