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光致变色软材料:掺入普朗尼克F-127水凝胶基质中的黄酮化合物。

Photochromic soft materials: flavylium compounds incorporated into pluronic F-127 hydrogel matrixes.

作者信息

Pina Fernando, Hatton T Alan

机构信息

Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

Langmuir. 2008 Mar 18;24(6):2356-64. doi: 10.1021/la702733d. Epub 2008 Feb 22.

DOI:10.1021/la702733d
PMID:18290679
Abstract

The performance of flavylium-based photochromic systems is increased by their incorporation into Pluronic F-127 matrixes, which switch from polymeric solutions to micelles to gels with changes in temperature depending on copolymer concentration. Two flavylium compounds, 7,4'-dihydroxyflavylium and 7-(N,N-diethylamino)-4-hydroxyflavylium, both exhibiting a small thermal cis-trans isomerization barrier in water were investigated. In the first system the flavylium in the gel photoswitches from the colorless trans-chalcone (Ct) species to the yellow flavylium cation (AH+) with quantum yield Phi=0.04 (25 degrees C) at pH 2.2 or to the orange quinoidal base (A) with quantum yield Phi=0.015 (25 degrees C) at pH 5.2. The photoproducts revert back to their initial form by a thermal process characterized by first-order kinetics; the rate constants exhibit a bell shape variation with pH, with a maximum at pH 4.3 (lifetime 4.2 min). The second system, 7-(N,N-diethylamino)-4-hydroxyflavylium, does not exhibit photochemistry in water but, when incorporated into the Pluronic F-127 gel, switches from yellow to red with a quantum yield of Phi=0.01 at pH 4.9. The respective thermal back reaction takes place with a lifetime of 66.7 min1. The flavylium network of chemical reactions is a good sensor for the detection of not only the critical micelle temperature but also the gelation temperature of Pluronic and like solutions and, in some instances, the exposure to UV and visible radiation.

摘要

基于黄酮鎓的光致变色体系通过掺入普朗尼克F - 127基质而性能增强,普朗尼克F - 127基质会根据共聚物浓度随温度变化从聚合物溶液转变为胶束再转变为凝胶。研究了两种黄酮鎓化合物,7,4'-二羟基黄酮鎓和7-(N,N - 二乙氨基)-4 - 羟基黄酮鎓,它们在水中均表现出较小的热顺反异构化势垒。在第一个体系中,凝胶中的黄酮鎓在pH 2.2时以量子产率Phi = 0.04(25℃)从无色反式查耳酮(Ct)物种光开关转变为黄色黄酮鎓阳离子(AH +),或在pH 5.2时以量子产率Phi = 0.015(25℃)转变为橙色醌式碱(A)。光产物通过以一级动力学为特征的热过程恢复到其初始形式;速率常数随pH呈钟形变化,在pH 4.3时达到最大值(寿命4.2分钟)。第二个体系,7-(N,N - 二乙氨基)-4 - 羟基黄酮鎓,在水中不表现光化学性质,但当掺入普朗尼克F - 127凝胶中时,在pH 4.9时以量子产率Phi = 0.01从黄色转变为红色。相应的热逆反应发生的寿命为66.7分钟。黄酮鎓化学反应网络不仅是检测普朗尼克及类似溶液的临界胶束温度和凝胶化温度的良好传感器,在某些情况下,也是检测紫外线和可见光辐射暴露的良好传感器。

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