Materials Science

A. Rekondo, Roberto Martín, A. Luzuriaga, G. Cabañero, H. Grande, I. Odriozola

2014.2.10Materials Horizons

DOI: 10.1039/c3mh00061c

Resumen de tlooto

Self-healing elastomers designed using aromatic disulfide metathesis chemistry exhibit quantitative healing efficiency at room temperature without catalyst or external intervention.

Resumen

Aromatic disulfide metathesis has been reported as one of the very few dynamic covalent chemistries undergone at room-temperature. Here, bis(4-aminophenyl) disulfide is effectively used as a dynamic crosslinker for the design of self-healing poly(urea–urethane) elastomers, which show quantitative healing efficiency at room-temperature, without the need for any catalyst or external intervention.

Formato de cita

REKONDO, A., et al. Catalyst-free room-temperature self-healing elastomers based on aromatic disulfide metathesis. Materials Horizons, 2014, 1: 237–240.