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Article Dans Une Revue Polymer Degradation and Stability Année : 2022

Influence of photooxidation on ionic reversible interactions of ionic poly(ether urethane)/silica hybrids

S. Barrau

Résumé

Although organic-inorganic hybrids that leverage the reversible nature of electrostatic interactions present in ionic systems with the reinforcement ability of nanoparticles in nanocomposites have the potential to revolutionize a wide spectrum of technologies, the prediction of their service lifetime under photooxidative conditions has remained elusive. Herein, the accelerated environmental ageing of ionic hybrid materials made by combining imidazolium-functionalized poly(ethylene glycol)-based polyurethane (im-PU) and surfacemodified sulfonate silica nanoparticles (SiO 2-SO 3 H) is addressed. Since the resulting ionic nanocomposites are dynamic, the present contribution aims to elucidate their temporal behavior and precisely distinguish the contribution of the nanoparticles addition to the photochemical behavior. Although the addition of SiO 2-SO 3 H nanoparticles within im-PU matrix led to faster photooxidative degradation, the ionic imidazolium-sulfonate crosslinks are thought to be sustained under photooxidative conditions. Overall, the present investigation suggests that the silica nanoparticles addition is responsible for the prodegradant effect rather than the presence of reversible ionic interactions in the system. The present work thus provides a deeper understanding about the crucial role of the incorporation of dynamic linkages within ionic nanocomposites during photochemical ageing and can aid the future design and use of these systems.
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Dates et versions

hal-03759845 , version 1 (24-08-2022)

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Citer

J.-E. Potaufeux, G. Rapp, S. Barrau, G. Liu, C. Zhang, et al.. Influence of photooxidation on ionic reversible interactions of ionic poly(ether urethane)/silica hybrids. Polymer Degradation and Stability, 2022, Polymer Degradation and Stability, 197, pp.109872. ⟨10.1016/j.polymdegradstab.2022.109872⟩. ⟨hal-03759845⟩
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