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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Photochromic properties of diarylethenes having 2,4-diphenylphenyl substituents in the amorphous and PMMA films
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Photochromic properties of diarylethenes having 2,4-diphenylphenyl substituents in the amorphous and PMMA films

机译:在非晶膜和PMMA膜中具有2,4-二苯基苯基取代基的二芳烃的光致变色特性

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1,2-Bis[5-methyl-2-(2,4-diphenyl)phenyl-4-thiazolyl]perfluorocyclopentene 1a and 1,2-bis-[2-methyl-5-(2,4-diphenyl)phenyl-3-thienyl]perfluorocyclopentene 2a were synthesized and their photochromic performance was examined in the bulk amorphous states. Compounds la and 2a formed stable amorphous bulk solid at room temperature and the glass transition temperatures (T(g)s) of them were observed at 77 degrees C. The conversions in the photostationary states were evaluated to be 88% and 90% in the amorphous films prepared from the closed-ring isomers 1b and 2b. The values are higher than that of 1,2-bis[2,4-dimethyl-5-(2,4-diphenyl)phenyl-3-thienyl]perfluorocyclopentene 3 (74%). Photochromic reactions of these compounds were also examined in poly(methyl methacrylate) (PMMA) films. The conversion ratios of 1 and 2 (91% for both compounds) in the PMMA films are also higher than that observed in 3 (80%). The photocyclization quantum yields of 1a, 2a, and 3a are the same, while the photocycloreversion quantum yields of 1b and 2b are lower than that of 3b. The higher conversions of 1 and 2 are attributed to the lower photocycloreversion quantum yields, which were caused by the decrease in the steric hindrance between 4-position of the aryl groups and perfluorocyclopentene ring. (C) 2006 Elsevier B.V. All rights reserved.
机译:1,2-双[5-甲基-2-(2,4-二苯基)苯基-4-噻唑基]全氟环戊烯1a和1,2-双-[2-甲基-5-(2,4-二苯基)苯基-合成了3-噻吩基]全氟环戊烯2a,并研究了其在无定形状态下的光致变色性能。化合物1a和2a在室温下形成稳定的无定形块状固体,并且在77℃下观察到它们的玻璃化转变温度(T(g)s)。在光平稳态下的转化率经评估为88%和90%。由闭环异构体1b和2b制备的无定形膜。该值高于1,2-双[2,4-二甲基-5-(2,4-二苯基)苯基-3-噻吩基]全氟环戊烯3(74%)的值。这些化合物的光致变色反应也在聚甲基丙烯酸甲酯(PMMA)薄膜中进行了检查。 PMMA膜中的1和2的转化率(两种化合物均为91%)也高于3中的转化率(80%)。 1a,2a和3a的光环化量子产率是相同的,而1b和2b的光环还原量子产率却低于3b。 1和2的较高转化率归因于较低的光环还原量子产率,这是由于芳基的4位与全氟环戊烯环之间的空间位阻降低而引起的。 (C)2006 Elsevier B.V.保留所有权利。

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