Issue 14, 2006

Photo-induced electrical switching through a mainchain polymer

Abstract

A copolymer of diarylethene and trimethylsilyl-substituted p-phenylene vinylene (TPV) was synthesized to achieve photo-induced electrical change in a solid medium. The photo-isomerization of the polymer was induced by incorporating a 2,3-bis(2-methylbenzo[b]thiophen-3-yl)hexafluorocyclopentene (BTF) unit, while TPV units directly connected to BTF allowed the extension of π-electron delocalization. The conductivity of the polymer was significantly increased when the BTF unit was converted to a closed form (colored) using UV light. The conductivity switching was reversible by using UV and visible-light sources. The neat polymer film showed higher conductivity, while the doped polymer film with a BTF-TPV content of 10 wt% showed conductivity that was 10 times smaller than that of the neat polymer film, as estimated by the IV plot on a photocell structured as Au/polymer/ITO. This shows the importance of π-electron connectivity through a mainchain polymer.

Graphical abstract: Photo-induced electrical switching through a mainchain polymer

Article information

Article type
Paper
Submitted
05 Dec 2005
Accepted
11 Jan 2006
First published
24 Jan 2006

J. Mater. Chem., 2006,16, 1384-1389

Photo-induced electrical switching through a mainchain polymer

E. Kim and H. W. Lee, J. Mater. Chem., 2006, 16, 1384 DOI: 10.1039/B517175J

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