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  4. Solvation Dynamics of Thermoresponsive Polymer Films: The Influence of Salt Series in Water and Mixed Water/Methanol Atmosphere
 
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2025
Journal Article
Title

Solvation Dynamics of Thermoresponsive Polymer Films: The Influence of Salt Series in Water and Mixed Water/Methanol Atmosphere

Abstract
Understanding the salt effects on solvation behaviors of thermoresponsive polymers is crucial for designing and optimizing responsive systems suitable for diverse environments. In this work, the effect of potassium salts (CH3COOK, KCl, KBr, KI, and KNO3) on solvation dynamics of poly(4-(N-(3'-methacrylamidopropyl)-N,N-dimethylammonio) butane-1-sulfonate) (PSBP), poly(N-isopropylmethacrylamide) (PNIPMAM), and PSBP-b-PNIPMAM films is investigated under saturated water and mixed water/methanol vapor via advanced in situ neutron/optical characterization techniques. These findings reveal that potassium salts enhance the films' hygroscopicity or methanol-induced swellability. Interestingly, the anions effects do not mirror the empirical Hofmeister series, which describes the salting-in effects for such polymers in dilute aqueous solution, particularly evident in PSBP films with an approximately inverted order. PNIPMAM and PSBP-b-PNIPMAM exhibit pronounced deviations from such an inverted correlation and vary somewhat for water-rich and methanol-rich atmospheres. Molecular dynamics (MD) simulations suggest that the observed orders of solvation result from the accessibility of the hydrated solvation shells close to the PSBP-b-PNIPMAM chains.
Author(s)
Wang, Peixi
Zheng, Tianle
Reitenbach, Julija
Wegener, Simon A.
Huber, Linus F.
Kreuzer, Lucas P.
Liang, Suzhe
Cubitt, Robert
Cheng, Ya‐Jun
Xu, Tonghui
Hildebrand, Viet
Laschewsky, Andre  
Fraunhofer-Institut für Angewandte Polymerforschung IAP  
Papadakis, Christine M.
Müller‐Buschbaum, Peter
Journal
Advanced science  
Open Access
DOI
10.1002/advs.202408073
10.24406/publica-4438
File(s)
Advanced Science - 2025 - Wang - Solvation Dynamics of Thermoresponsive Polymer Films The Influence of Salt Series in.pdf (5 MB)
Rights
CC BY 4.0: Creative Commons Attribution
Language
English
Fraunhofer-Institut für Angewandte Polymerforschung IAP  
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