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- W4225535783 abstract "As commercially and environmentally attractive alternatives to chemically cross-linked elastomers, thermoplastic elastomers (TPEs) combine the elasticity of conventional elastomers with the melt processability of thermoplastics to yield materials that can be recycled or used for diverse purposes in various technologies. In this chapter, we first provide an overview of TPEs with regard to chemical classifications and contemporary applications. Focusing on styrenic TPEs that are commonly available as triblock copolymers, we next address the thermodynamic considerations responsible for controlling phase behavior and mesoscopic/molecular network formation. The properties of these materials can be precisely tuned through the physical incorporation of a midblock-selective oil intended to reduce the modulus, as well as alter the relative contributions of cross-links and entanglements to the modulus. These TPE gels are suitable for use in electroactive, microfluidics and ballistics media, as well as flexible electronics and sensors. In addition, premade styrenic TPEs can be chemically modified so that the resulting designer materials can serve as rubber-toughening and compatibilizing agents in the presence of other (bio)polymers. Moreover, these copolymers can be postfunctionalized with charged species to impart amphiphilicity, which introduces new opportunities for this class of materials, yielding organic photovoltaics, electroresponsive composites, gas-separation membranes, and self-disinfecting coatings. Technological advances such as these physical and chemical modifications capable of generating application-specific TPEs are discussed in this chapter." @default.
- W4225535783 created "2022-05-05" @default.
- W4225535783 creator A5091058818 @default.
- W4225535783 creator A5091772994 @default.
- W4225535783 date "2022-01-01" @default.
- W4225535783 modified "2023-09-30" @default.
- W4225535783 title "Advances in stimuli-responsive and functional thermoplastic elastomers" @default.
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