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内重原子对二芳基乙烯-苝酰亚胺二元体系中可见光诱导环化反应的影响

Internal Heavy-Atom Effect on Visible-Light-Induced Cyclization Reaction in Diarylethene-Perylenebisimide Dyads.

作者信息

Taruno Koya, Ikariko Issei, Taniguchi Taku, Kim Sunnam, Fukaminato Tsuyoshi

机构信息

Department of Applied Chemistry and Biochemistry, Graduate School of Science and Technology, Kumamoto University, 2-39-1 Kurokami, Chuo-ku, Kumamoto 860-8555, Japan.

出版信息

J Phys Chem B. 2024 Jan 11;128(1):273-279. doi: 10.1021/acs.jpcb.3c06746. Epub 2023 Dec 20.

Abstract

All-visible-light switchable diarylethene-perylenebisimide (DAE-PBI) dyads having bromine heavy atoms in the molecule were designed and synthesized. Very recently, we found a unique visible-light-induced cyclization reaction in a DAE-PBI dyad. The dyad exhibited reversible cyclization and cycloreversion reactions upon alternate irradiation with green (500-550 nm) and red (>600 nm) light. From the experimental results, it was suggested that the triplet state of DAE unit was generated via multiplicity conversion based on intramolecular energy transfer from the singlet excited state of PBI unit and that the cyclization reaction of DAE unit proceeded from the triplet state. In addition, it was revealed that the reactivity remarkably increased in a solvent containing heavy atoms such as carbon tetrachloride and iodoethane (i.e., external heavy-atom effect). Based on such results, in this study, we attempted to design and synthesize novel DAE-PBI dyads introducing bromine heavy atoms at different positions in the molecule. The synthesized dyads exhibited higher quantum yields of photocyclization reaction under visible-light irradiation even in a heavy-atom-free solvent compared to the previous dyad having no heavy atoms. The magnitude of enhancement well correlated to the contribution ratio of atomic orbital of bromine to the molecular orbital in LUMOs. These results indicated that the internal heavy atom effectively contributed to the visible-light-induced cyclization reaction in DAE-PBI dyads. Such an internal heavy-atom effect will pave the way for new molecular design to develop all-visible-light-activatable molecular switches.

摘要

设计并合成了分子中含有溴重原子的全可见光可切换二芳基乙烯-苝二酰亚胺(DAE-PBI)二元化合物。最近,我们在一种DAE-PBI二元化合物中发现了一种独特的可见光诱导环化反应。该二元化合物在交替照射绿色(500 - 550 nm)和红色(>600 nm)光时表现出可逆的环化和环化逆转反应。从实验结果推测,DAE单元的三重态是通过基于从PBI单元的单重激发态进行分子内能量转移的多重性转换产生的,并且DAE单元的环化反应从三重态开始。此外,还发现该反应性在含有诸如四氯化碳和碘乙烷等重原子的溶剂中显著增加(即外部重原子效应)。基于这些结果,在本研究中,我们尝试设计并合成在分子中不同位置引入溴重原子的新型DAE-PBI二元化合物。与之前不含重原子的二元化合物相比,所合成的二元化合物即使在无重原子的溶剂中,在可见光照射下也表现出更高的光环化反应量子产率。增强幅度与溴原子轨道对最低未占分子轨道(LUMO)中分子轨道的贡献比例密切相关。这些结果表明,内部重原子有效地促进了DAE-PBI二元化合物中的可见光诱导环化反应。这种内部重原子效应将为开发全可见光可激活分子开关的新分子设计铺平道路。

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