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  4. Photochromic Torsional Switch (PTS): a Light-Driven Actuator for the Dynamic Tuning of π-Conjugation Extension
 
research article

Photochromic Torsional Switch (PTS): a Light-Driven Actuator for the Dynamic Tuning of π-Conjugation Extension

Maciejewski, Jan
•
Sobczuk, Adam Antoni  
•
Claveau, Alexis
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2016
Chemical Science

Here we present a molecular architecture that can reversibly change the geometric conformation of its π-system backbone via irradiation with two different wavelengths. The proposed ‘molecular actuator’ consists of a photoswitchable azobenzene orthogonally connected to a π-conjugated bithiophene by both direct and aliphatic linker-assisted bonding. Upon exposure to 350 nm light, the trans azobenzene moiety isomerizes to its cis form, causing the bithiophene to assume a semiplanar anti conformation (extended π-conjugation). Exposure to 254 nm light promotes the isomerization of the azobenzene unit back to its initial extended trans conformation, thus forcing the bithiophene fragment to twist out of coplanarity (restricted π-conjugation). The molecular conformation of the bithiophene was characterized using steady-state UV-Vis and nuclear magnetic resonance spectroscopy, as well as ab initio computations. The proposed molecular design could be envisaged as a π-conjugation modulator, which has potential to be incorporated into extended linear π-systems, i.e. via the terminal alfa-thiophene positions, and used to tune their optical and electronic properties.

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Type
research article
DOI
10.1039/C6SC03196J
Web of Science ID

WOS:000391454500040

Author(s)
Maciejewski, Jan
Sobczuk, Adam Antoni  
Claveau, Alexis
Nicolai, Adrien G.  
Petraglia, Riccardo  
Cervini, Luca
Baudat, Emilie
Mieville, Pascal
Fazzi, Daniele
Corminboeuf, Clemence  
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Date Issued

2016

Published in
Chemical Science
Volume

8

Start page

361

End page

365

Subjects

photoswitch

•

molecular electronics

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LCMD  
Available on Infoscience
August 18, 2016
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/128755
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