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Filler effects inspired high performance polyurethane elastomer design: segment arrangement control

Jiaxin Shi, Tianze Zheng, Zhiqi Wang, Pujin Wang, Hong-Kun Yang, Jinjing Guo, Dong Wang, Baohua Guo, Jun Xu

2024Materials Horizons56 citationsDOI

Abstract

Elastomers with high strength and toughness are in great demand. Previous research on elastomers focused mainly on the design of new chemical structures, but their complicated synthesis process and expensive monomers have restricted the practical application of these materials. Inspired by general filler effects, a strategy is proposed to remarkably enhance the mechanical properties of thermoplastic polyurethane (TPU) elastomers by designing the arrangement of hard/soft segments using traditional chemical compositions. By utilizing the synergetic effect of weak hard segments, normal TPU elastomers are upgraded into advanced elastomers. Combining experiments and simulations, it is demonstrated that a suitable sequence length can achieve considerably enhanced strength and toughness by maximizing the relative surface area of hard domains. Mixing the obtained elastomer with an ionic liquid can result in a durable ionogel sensor with balanced mechanical strength and ionic conductivity. This easy-to-implement strategy offers a new dimension for the development of high-performance elastomers.

Topics & Concepts

PolyurethaneElastomerMaterials scienceFiller (materials)Composite materialPolymer composites and self-healingPolymer Nanocomposites and PropertiesSilicone and Siloxane Chemistry
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