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可见吸收共轭低聚物的光物理和光激活杀菌活性。

Photophysics and light-activated biocidal activity of visible-light-absorbing conjugated oligomers.

出版信息

ACS Appl Mater Interfaces. 2013 Jun 12;5(11):4516-20. doi: 10.1021/am400282p. Epub 2013 Mar 15.

Abstract

The photophysical properties of three cationic π-conjugated oligomers were correlated with their visible light activated biocidal activity vs S. aureus. The oligomers contain three arylene units (terthiophene, 4a; thiophene-benzotriazole-thiophene, 4b; thiophene-benzothiadiazole-thiophene, 4c) capped on each end by cationic -(CH2)3NMe3(+) groups. The oligomers absorb in the visible region due to their donor-acceptor-donor electronic structure. Oligomers 4a and 4b have high intersystem crossing and singlet oxygen sensitization efficiency, but 4c has a very low intersystem crossing efficiency and it does not sensitize singlet oxygen. The biocidal activity of the oligomers under visible light varies in the order 4a > 4b ≈ 4c.

摘要

三种阳离子π-共轭齐聚物的光物理性质与其对金黄色葡萄球菌的可见光激活杀菌活性相关。这些齐聚物在每个末端都有三个芳基单元(三亚苯噻吩,4a;噻吩-苯并三唑-噻吩,4b;噻吩-苯并噻二唑-噻吩,4c)被阳离子-(CH2)3NMe3(+)基团封端。由于其供体-受体-供体电子结构,齐聚物在可见光区吸收。齐聚物 4a 和 4b 具有高的系间穿越和单线态氧敏化效率,但 4c 具有非常低的系间穿越效率,并且不能敏化单线态氧。在可见光下,齐聚物的杀菌活性顺序为 4a > 4b ≈ 4c。

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