Cononsolvency in the ‘drunken’ state: the thermoresponsiveness of a new acrylamide copolymer in water–alcohol mixtures
文献信息
Niklas Lucht, Steffen Eggers
Stimuli-responsive ‘smart’ polymers are a promising class of materials for switchable devices. In this work, we present poly[N-acryloylpiperidine-random-N-acryloylpyrrolidine] (poly[APi-r-APy]) as a novel thermoresponsive copolymer which was synthesised by reversible addition–fragmentation chain transfer (RAFT) polymerisation in a controlled manner. One of its attractive features is that the lower critical solution temperature (LCST) in aqueous solution, i.e. the temperature at which the polymer instantaneously becomes insoluble, can be freely adjusted between 3 °C and 47 °C. This adjustment is indeed extremely straightforward because the LCST of the copolymer is linearly dependent on the copolymer composition. We furthermore discuss the influence of the addition of a second ‘good’ solvent to polymer–water solutions on the thermoresponsiveness of the system. Depending on the nature of the additive, the cloud point can be shifted both upwards and downwards. Our research is focused on alcoholic additives, with systematic variation of the chemical structure of the alcohol, which resulted in the occurrence of remarkable cononsolvency effects. The results are discussed in terms of polymer–additive as well as additive–water interactions and help to gain a more detailed understanding of water interactions with amphiphilic additives and, hence, of cononsolvency phenomena. This work moreover contributes to the systematic design of switchable systems with tailored phase transition properties.
期刊推荐

Journal of Physics and Chemistry of Solids

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Planta Medica

Helvetica Chimica Acta

Journal of Organometallic Chemistry

Nature

Journal of Medicinal Chemistry

Molecular Pharmacology

Proceedings of the National Academy of Sciences of the United States of America

Kinetics and Catalysis
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Polymer Chemistry

Polymer Chemistry welcomes submissions in all areas of polymer science that have a strong focus on macromolecular chemistry. Manuscripts may cover a broad range of fields, yet no direct application focus is required.


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