Natural rubber (NR)is one of Nature's most exceptional materials and is, therefore, widely used by industry, in particular by the tire industry. In spite of the interest in recycling vulcanized NR, there is no suitable way to do it and most of the tires are discarded in landfills. Here, we examine the use of a Diels-Alder reaction to obtain a NR fully and reversibly crosslinked and with self-repair capacity. NR was crosslinked via Diels-Alder (DA)reactions following a three-step procedure: i)NR was reacted with maleic anhydride; ii)furan moieties were then grafted to the maleated rubber; iii)pending furans were further crosslinked with a bismaleimide, resulting in a thermoreversible bridge which led to a crosslinked NR. The formation of the...
A proof of principle for the use of Diels-Alder (DA) chemistry as a thermoreversible cross-linking t...
Currently, rubber products cannot simply be reprocessed after their product life, due to the irrever...
The property retentions of silica-reinforced natural rubber vulcanizates with various contents of a ...
A proof of principle for the use of Diels-Alder chemistry as a thermoreversible cross-linking tool f...
A method for using Diels Alder thermo-reversible chemistry as cross-linking tool for rubber products...
A proof of principle for the use of Diels–Alder chemistry as a thermoreversible cross-linking tool f...
A proof of principle for the use of Diels-Alder chemistry as a thermoreversible cross-linking tool f...
Cross-linking of rubbers is crucial as it provides good elasticity and high strength. Unfortunately,...
International audienceTo obtain and maintain rubber properties such as elasticity, strength, creep, ...
This review outlines latest developments in the field of self-healing rubbers and elastomers, analyz...
In this work we present a reversible and toughened thermoset system based on the covalent incorporat...
It is impossible to describe the recent progress of our society without considering the role of poly...
A proof of principle for the use of Diels-Alder (DA) chemistry as a thermoreversible cross-linking t...
Currently, rubber products cannot simply be reprocessed after their product life, due to the irrever...
The property retentions of silica-reinforced natural rubber vulcanizates with various contents of a ...
A proof of principle for the use of Diels-Alder chemistry as a thermoreversible cross-linking tool f...
A method for using Diels Alder thermo-reversible chemistry as cross-linking tool for rubber products...
A proof of principle for the use of Diels–Alder chemistry as a thermoreversible cross-linking tool f...
A proof of principle for the use of Diels-Alder chemistry as a thermoreversible cross-linking tool f...
Cross-linking of rubbers is crucial as it provides good elasticity and high strength. Unfortunately,...
International audienceTo obtain and maintain rubber properties such as elasticity, strength, creep, ...
This review outlines latest developments in the field of self-healing rubbers and elastomers, analyz...
In this work we present a reversible and toughened thermoset system based on the covalent incorporat...
It is impossible to describe the recent progress of our society without considering the role of poly...
A proof of principle for the use of Diels-Alder (DA) chemistry as a thermoreversible cross-linking t...
Currently, rubber products cannot simply be reprocessed after their product life, due to the irrever...
The property retentions of silica-reinforced natural rubber vulcanizates with various contents of a ...