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Alaitz Rekondo

Publications -  23
Citations -  1704

Alaitz Rekondo is an academic researcher. The author has contributed to research in topics: Epoxy & Thermosetting polymer. The author has an hindex of 10, co-authored 17 publications receiving 1209 citations.

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Catalyst-free room-temperature self-healing elastomers based on aromatic disulfide metathesis

TL;DR: In this article, bis(4-aminophenyl) disulfide is used as a dynamic crosslinker for the design of self-healing poly(urea-urethane) elastomers, which show quantitative healing efficiency at room-temperature.
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Epoxy resin with exchangeable disulfide crosslinks to obtain reprocessable, repairable and recyclable fiber-reinforced thermoset composites

TL;DR: Fiber-reinforced polymer composites (FRPCs) made of a "dynamic" epoxy resin possess good mechanical properties, while showing reprocessability, reparability and recyclability.
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The processability of a poly(urea-urethane) elastomer reversibly crosslinked with aromatic disulfide bridges

TL;DR: In this article, the self-healing ability of polyurea-urethane elastomer reversibly cured with aromatic disulfide bridges was shown, and although being chemically crosslinked, such materials can be easily reprocessed by applying heat and pressure to obtain any desired form.
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Reprocessable and recyclable crosslinked poly(urea-urethane)s based on dynamic amine/urea exchange

TL;DR: In this paper, a reprocessable and recyclable crosslinked poly (urea-urethane) vitrimer elastomer containing aromatic ureas and amines on its structure is presented.
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Room temperature self-healing power of silicone elastomers having silver nanoparticles as crosslinkers

TL;DR: Thiol-functionalised silicone-oils were crosslinked with silver nanoparticles to give mechanically consistent elastomers with high self-healing power to observe a complete macroscopic healing and a quantitative recovery of compression-stress and strain.