Ultrasonic Studies of Solid Azobenzene-Decorated Polymer Thin Films
Author(s) -
Mohammed Moniruzzaman,
Paraskevi Christogianni,
Ranko M. Vrcelj,
Philip P. Gill
Publication year - 2018
Publication title -
acs omega
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.779
H-Index - 40
ISSN - 2470-1343
DOI - 10.1021/acsomega.8b02048
Subject(s) - azobenzene , isomerization , chromophore , polymer , photochemistry , materials science , methyl methacrylate , cis–trans isomerism , irradiation , ultraviolet , kinetics , activation energy , copolymer , polymer chemistry , chemistry , catalysis , organic chemistry , optoelectronics , composite material , physics , quantum mechanics , nuclear physics
This work investigates the effect of ultrasound on switching of cis azobenzene isomers to their trans counterparts in solid films of methyl methacrylate and methacryloyloxyazobenzene copolymers [P(MMA/MOAB)]. Ultraviolet-visible and 1 H nuclear magnetic resonance spectroscopies demonstrate that 46% of the cis isomer converts to the trans form purely by ultrasonic agitation and 46% converts to the trans isomer by localized ultrasound-induced heating effects. Comparative studies of isomerization by ultrasound wave, heat, and visible irradiation show that ultrasound exposure requires a longer time to switch the cis-to-trans conformation. The estimated activation energy for the cis-to-trans conversion in solid polymer films is shown to be comparable to previous values of azobenzene isomerization, indicating that incorporation of the chromophore in a polymeric system affects the kinetics of transition but not the barriers to conformational change.
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