René Steinbrecher, Peiran Zhang, Christine M. Papadakis, Peter Müller-Buschbaum, Andreas Taubert and André Laschewsky
{"title":"偶氮染料功能化聚丙烯酰胺水相行为的反直觉光调制。","authors":"René Steinbrecher, Peiran Zhang, Christine M. Papadakis, Peter Müller-Buschbaum, Andreas Taubert and André Laschewsky","doi":"10.1039/D5SM00200A","DOIUrl":null,"url":null,"abstract":"<p >Three sets of water-soluble non-ionic polymers, which are thermo- as well as photo-responsive, are synthesized by statistical copolymerization of hydrophilic substituted acrylamides with varying amounts of a polymerizable azobenzene dye. Their coil-to-globule phase transition of the lower critical solution (LCST) type in aqueous solution is investigated with respect to the nature of the <em>N</em>-substituents and the content of azo dye. The phase transition temperatures <em>T</em><small><sub>CP</sub></small> drop from >100 °C to <0 °C with increasing dye content. Irradiation of the copolymers with UV-vis light at 365 nm induces the <em>E</em>-to-<em>Z</em> (“<em>trans</em>–<em>cis</em>”) isomerization of the azobenzenes, reaching an <em>E </em>: <em>Z</em> ratio of 21 : 79 in the photo stationary state, while three isosbestic points in the spectra suggest a clean interconversion. The thermal back reaction to the <em>E</em>-isomer is relatively slow, with a half-life of the order of 12 h. For the copolymers with a small azo dye content, the <em>E</em>-to-<em>Z</em> photo-isomerization induces an increase of the phase transition temperature <em>T</em><small><sub>CP</sub></small>, as it is expected due to the enhanced dipole moment of the <em>Z</em>-isomer. In contrast, the copolymers with higher azo dye contents behave counter-intuitively, <em>i.e.</em>, their <em>T</em><small><sub>CP</sub></small> values markedly lower upon UV-irradiation. Possible reasons, <em>e.g.</em> chromophore aggregation, are discussed. In addition, DLS reveals that, at all temperatures and in both the <em>E</em>- and the <em>Z</em>-state, small clusters are formed by the polymer chains, probably mediated by the hydrophobic azobenzene side groups. These coexist with large associates.</p>","PeriodicalId":103,"journal":{"name":"Soft Matter","volume":" 21","pages":" 4220-4232"},"PeriodicalIF":2.9000,"publicationDate":"2025-05-08","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Counter-intuitive photo-modulation of the aqueous phase behavior of azo dye-functionalized polyacrylamides†\",\"authors\":\"René Steinbrecher, Peiran Zhang, Christine M. Papadakis, Peter Müller-Buschbaum, Andreas Taubert and André Laschewsky\",\"doi\":\"10.1039/D5SM00200A\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p >Three sets of water-soluble non-ionic polymers, which are thermo- as well as photo-responsive, are synthesized by statistical copolymerization of hydrophilic substituted acrylamides with varying amounts of a polymerizable azobenzene dye. Their coil-to-globule phase transition of the lower critical solution (LCST) type in aqueous solution is investigated with respect to the nature of the <em>N</em>-substituents and the content of azo dye. The phase transition temperatures <em>T</em><small><sub>CP</sub></small> drop from >100 °C to <0 °C with increasing dye content. Irradiation of the copolymers with UV-vis light at 365 nm induces the <em>E</em>-to-<em>Z</em> (“<em>trans</em>–<em>cis</em>”) isomerization of the azobenzenes, reaching an <em>E </em>: <em>Z</em> ratio of 21 : 79 in the photo stationary state, while three isosbestic points in the spectra suggest a clean interconversion. The thermal back reaction to the <em>E</em>-isomer is relatively slow, with a half-life of the order of 12 h. For the copolymers with a small azo dye content, the <em>E</em>-to-<em>Z</em> photo-isomerization induces an increase of the phase transition temperature <em>T</em><small><sub>CP</sub></small>, as it is expected due to the enhanced dipole moment of the <em>Z</em>-isomer. In contrast, the copolymers with higher azo dye contents behave counter-intuitively, <em>i.e.</em>, their <em>T</em><small><sub>CP</sub></small> values markedly lower upon UV-irradiation. Possible reasons, <em>e.g.</em> chromophore aggregation, are discussed. In addition, DLS reveals that, at all temperatures and in both the <em>E</em>- and the <em>Z</em>-state, small clusters are formed by the polymer chains, probably mediated by the hydrophobic azobenzene side groups. 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Counter-intuitive photo-modulation of the aqueous phase behavior of azo dye-functionalized polyacrylamides†
Three sets of water-soluble non-ionic polymers, which are thermo- as well as photo-responsive, are synthesized by statistical copolymerization of hydrophilic substituted acrylamides with varying amounts of a polymerizable azobenzene dye. Their coil-to-globule phase transition of the lower critical solution (LCST) type in aqueous solution is investigated with respect to the nature of the N-substituents and the content of azo dye. The phase transition temperatures TCP drop from >100 °C to <0 °C with increasing dye content. Irradiation of the copolymers with UV-vis light at 365 nm induces the E-to-Z (“trans–cis”) isomerization of the azobenzenes, reaching an E : Z ratio of 21 : 79 in the photo stationary state, while three isosbestic points in the spectra suggest a clean interconversion. The thermal back reaction to the E-isomer is relatively slow, with a half-life of the order of 12 h. For the copolymers with a small azo dye content, the E-to-Z photo-isomerization induces an increase of the phase transition temperature TCP, as it is expected due to the enhanced dipole moment of the Z-isomer. In contrast, the copolymers with higher azo dye contents behave counter-intuitively, i.e., their TCP values markedly lower upon UV-irradiation. Possible reasons, e.g. chromophore aggregation, are discussed. In addition, DLS reveals that, at all temperatures and in both the E- and the Z-state, small clusters are formed by the polymer chains, probably mediated by the hydrophobic azobenzene side groups. These coexist with large associates.
期刊介绍:
Soft Matter is an international journal published by the Royal Society of Chemistry using Engineering-Materials Science: A Synthesis as its research focus. It publishes original research articles, review articles, and synthesis articles related to this field, reporting the latest discoveries in the relevant theoretical, practical, and applied disciplines in a timely manner, and aims to promote the rapid exchange of scientific information in this subject area. The journal is an open access journal. The journal is an open access journal and has not been placed on the alert list in the last three years.