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Reversible Photoreduction as a Trigger for Photoresponsive Gels
Author(s) -
Emily R. Draper,
Ralf Schweins,
Riaz Akhtar,
Philip Groves,
Victor Chechik,
Martijn A. Zwijnenburg,
Dave J. Adams
Publication year - 2016
Publication title -
chemistry of materials
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.741
H-Index - 375
eISSN - 1520-5002
pISSN - 0897-4756
DOI - 10.1021/acs.chemmater.6b02677
Subject(s) - perylene , photochemistry , rheology , irradiation , ion , materials science , radical , polymer chemistry , chemistry , chemical engineering , molecule , organic chemistry , composite material , physics , nuclear physics , engineering
We present here a new type of photoresponsive, reversible low molecular weight gel. All previous examples rely on a photoisomerisation, ring-closing or dimerization. We show that photoreduction of a perylene bisimide gelator results in the formation of a stable radical anion. The formation of the radical anion results in a change in the packing of the perylene bisimides in the self-assembled aggregates, leading to a change in fibrous network and an increase in the rheological properties of the gels. An increase in the rheological properties is extremely rare for a photoresponsive gel; normally, irradiation results in a gel-to-sol transition, and the gel falling apart. As the radical anion decays, which takes several hours in air, the original gel properties are restored. This photoreduction can be cycled many times. Finally, we show that the mechanical properties are different between irradiated and nonirradiated sections in a patterned gel.

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