Li Ruiji, Fang Qi, Chen Minghui, Yamada Mihoko, Tsuji Yugo, Kugai Yusuke, Li Wei, Kawai Tsuyoshi
School of Pharmacy, Jining Medical University, Rizhao, Shandong, 276826, P. R. China.
Division of Materials Science, Nara Institute of Science and Technology (NAIST), Ikoma, Nara, 630-0192, Japan.
Chemistry. 2023 Dec 22;29(72):e202302693. doi: 10.1002/chem.202302693. Epub 2023 Nov 6.
Photoinduced tuning of aromaticity and correlative molecular properties has attracted enormous interest in recent years both for modulating photochromism properties and designing novel photochromic materials. Here, we report the synthesis and photochemical characterization of diaryl[5]helicene-based diarylethene molecular switches. 3,4-Bis(2,4-dimethyl-5-phenylthiophen-3-yl)dibenzo[c,g]phenanthrene derivative 1 a showed no photochromic reaction, whereas 3,4-bis(2-methyl-5-phenylthiophen-3-yl)dibenzo[c,g]phenanthrene derivative 2 a and 3,4-bis(5-methyl-2-phenylthiazol-4-yl)dibenzo[c,g]phenanthrene derivative 3 a exhibited reversible photochromism in different aprotic solvents with specific light irradiation. Meanwhile, the diarylethene compounds 2 a and 3 a underwent turn-off mode fluorescence photoswitching together with photoisomerization upon light irradiation. Remarkably, the photoinduced changes in the aromaticity of [5]helicene as a central ethene bridge along with the relative smaller activation energy and higher frequency factor facilitated the thermal bleaching rates of diarylethene switches 2 and 3 in solution. This research provides new insight for designing aromatic diarylethene photoswitches for reversible fluorescence switching, photoinduced changes in aromaticity and further fast thermal back reactions.
近年来,光致调节芳香性及相关分子性质在调控光致变色性质和设计新型光致变色材料方面都引起了极大的关注。在此,我们报道了基于二芳基[5]螺旋烯的二芳基乙烯分子开关的合成及光化学表征。3,4-双(2,4-二甲基-5-苯基噻吩-3-基)二苯并[c,g]菲衍生物1 a未表现出光致变色反应,而3,4-双(2-甲基-5-苯基噻吩-3-基)二苯并[c,g]菲衍生物2 a和3,4-双(5-甲基-2-苯基噻唑-4-基)二苯并[c,g]菲衍生物3 a在不同的非质子溶剂中经特定光照射后表现出可逆的光致变色现象。同时,二芳基乙烯化合物2 a和3 a在光照下发生光异构化的同时还经历了关断模式荧光光开关过程。值得注意的是,作为中心乙烯桥的[5]螺旋烯芳香性的光致变化以及相对较小的活化能和较高的频率因子促进了二芳基乙烯开关2和3在溶液中的热漂白速率。该研究为设计用于可逆荧光开关、光致芳香性变化及进一步快速热逆反应的芳香二芳基乙烯光开关提供了新的见解。