Issue 48, 2015

Photoresponsive structure transformation and emission enhancement based on a tapered azobenzene gelator

Abstract

A new low molecular mass organic gelator bearing 1,3,4-oxadiazole and azobenzene groups, namely N-(3,4,5-tributoxyphenyl)-N′-4-[(4-hydroxyphenyl)azophenyl] 1,3,4-oxadiazole (AOB-t4), was designed and synthesized in this work. The organogelator shows a great ability to gel moderate polar solvents and form stable organogels with the critical gelation concentration as low as 2.0 mg mL−1, which thus can be considered as a supergelator. The morphology of xerogels demonstrates a strong dependence on the nature of gelling solvents. Due to the photo-induced isomerization of azobenzene unit, the transformations from fiberous to porous structure in AOB-t4 dichloromethane gel, and from fiber to nanoparticle in ethanol solution have been successfully achieved with UV 365 nm irradiation, respectively. Meanwhile, an enhanced fluorescence via J-aggregate molecular arrangement can be observed with the trans-to-cis photoisomerization in both dichloromethane gel and ethanol solution of AOB-t4, and the emission quantum yield can be increased from 10.7 × 10−5 to 18 × 10−2 in ethanol, corresponding to 1682 times enhancement. The obtained results would be of significance in developing novel photo-controllable luminescence molecular device and broadening the application fields of azobenzene derivatives.

Graphical abstract: Photoresponsive structure transformation and emission enhancement based on a tapered azobenzene gelator

Supplementary files

Article information

Article type
Paper
Submitted
10 Apr 2015
Accepted
22 Apr 2015
First published
22 Apr 2015

RSC Adv., 2015,5, 38283-38289

Author version available

Photoresponsive structure transformation and emission enhancement based on a tapered azobenzene gelator

L. Shi, X. Ran, Y. Li, Q. Li, W. Qiu and L. Guo, RSC Adv., 2015, 5, 38283 DOI: 10.1039/C5RA06456B

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