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含3-吲哚基俘精酸酐/吲哚基俘精酰亚胺的光致变色共聚物:在甲苯中及制成薄膜后的合成与光化学性质

Photochromic copolymers containing 3-indolylfulgides/indolylfulgimides: synthesis and photochemical properties in toluene and as films.

作者信息

Islamova Nadezhda I, Chen Xi, Fan Changjun, Andino Richard S, Lees Watson J

机构信息

Department of Chemistry and Biochemistry, Florida International University, Miami, Florida 33199, United States.

出版信息

Polym Degrad Stab. 2013 Sep 1;98(9):1662-1670. doi: 10.1016/j.polymdegradstab.2013.06.014.

Abstract

Photochromic indolylfulgimides covalently attached to polymers have beneficial properties for optical switching. A 3-indolylfulgide and two 3-indolylfulgimides with one or two polymerizable styrene groups attached on the nitrogen atom(s) were synthesized. Copolymerization with methyl methacrylate (MMA) provided linear copolymers (one styrene group) or a cross-linked copolymer (two styrene groups). The properties of the monomers and copolymers in toluene or as thin films were characterized. The new copolymers were photochromic (reversible -to- isomerization), absorbed visible light, and revealed good thermal and photochemical stability. At room temperature, all copolymer films showed no loss of absorbance after 5 weeks. At 80 °C in either toluene or as films, the -forms copolymers were less stable than the -form copolymers, which showed little or no degradation after 400 h. The degradation rate due to repeated ring-closing - ring opening cycles was less than 3% per 100 cycles. The cross-linked copolymer showed photochemical stability comparable to monomeric fulgides in toluene, <1% per 100 cycles. In general, the properties of the linear and cross-linked copolymers were similar to the corresponding monomers in toluene. In films, the conformations of the -form were restricted due to the matrix indicating that the preparation of films from the -form is advantageous.

摘要

共价连接到聚合物上的光致变色吲哚基俘精酰亚胺具有用于光开关的有益特性。合成了一种3-吲哚基俘精酸酐以及两种在氮原子上连接有一个或两个可聚合苯乙烯基团的3-吲哚基俘精酰亚胺。与甲基丙烯酸甲酯(MMA)共聚得到线性共聚物(一个苯乙烯基团)或交联共聚物(两个苯乙烯基团)。对单体和共聚物在甲苯中或作为薄膜时的性质进行了表征。新的共聚物具有光致变色性(可逆异构化),吸收可见光,并显示出良好的热稳定性和光化学稳定性。在室温下,所有共聚物薄膜在5周后吸光度没有损失。在80℃下,无论是在甲苯中还是作为薄膜,α-型共聚物比β-型共聚物稳定性差,β-型共聚物在400小时后几乎没有降解或没有降解。由于重复的闭环-开环循环导致的降解率每100次循环小于3%。交联共聚物在甲苯中的光化学稳定性与单体俘精酸酐相当,每100次循环<1%。一般来说,线性和交联共聚物的性质与甲苯中相应的单体相似。在薄膜中,β-型的构象由于基质而受到限制,这表明由β-型制备薄膜是有利的。

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