Sacrificial chemical bonds have been used effectively to increase the toughness of elastomers because such bonds dissociate at forces significantly below the fracture limit of the primary load-bearing bonds, thereby dissipating local stress. This approach owes much of its success to the ability to adjust the threshold force at which the sacrificial bonds fail at the desired rate, for example, by selecting either covalent or noncovalent sacrificial bonds. Here, we report experimental and computational evidence that a mechanical bond, responsible for the structural integrity of a rotaxane or a catenane, increases the elastomer's fracture strain, stress, and energy as much as a covalent bond of comparable mechanochemical dissociation kinetics....
Current synthetic elastomers suffer from the well-known trade-off between toughness and stiffness. B...
AbstractSacrificial bonds and hidden length in structural molecules and composites have been found t...
Designing sacrificial bonds or networks has emerged as a popular strategy to fabricate high-performa...
Sacrificial chemical bonds have been used effectively to increase the toughness of elastomers becaus...
The fracture of rubbery polymer networks involves a series of molecular events, beginning with confo...
A classic paradigm of soft and extensible polymer materials is the difficulty of combining reversibl...
Elastomers are widely used because of their large-strain reversible deformability. Most unfilled ela...
International audienceElastomers are widely used because of their large-strain reversible deformabil...
AbstractIn the past five years, the field of covalent polymer mechanochemistry has experienced a ren...
We investigated an innovative path to reinforce, both in toughness and stiffness, usually brittle el...
International audienceSacrificial bonds have been observed in several biological materials and struc...
<p>Mechanically induced chemical bond scission underlies the fracture and macroscopic failure of pol...
Incorporating hidden length into polymer chains can improve their mechanical properties, because rel...
Covalent macromolecules tend to fragment under mechanical stress through the mechanochemical scissio...
Large or repeated mechanical loads usually degrade polymers by accelerating fragmentation of their b...
Current synthetic elastomers suffer from the well-known trade-off between toughness and stiffness. B...
AbstractSacrificial bonds and hidden length in structural molecules and composites have been found t...
Designing sacrificial bonds or networks has emerged as a popular strategy to fabricate high-performa...
Sacrificial chemical bonds have been used effectively to increase the toughness of elastomers becaus...
The fracture of rubbery polymer networks involves a series of molecular events, beginning with confo...
A classic paradigm of soft and extensible polymer materials is the difficulty of combining reversibl...
Elastomers are widely used because of their large-strain reversible deformability. Most unfilled ela...
International audienceElastomers are widely used because of their large-strain reversible deformabil...
AbstractIn the past five years, the field of covalent polymer mechanochemistry has experienced a ren...
We investigated an innovative path to reinforce, both in toughness and stiffness, usually brittle el...
International audienceSacrificial bonds have been observed in several biological materials and struc...
<p>Mechanically induced chemical bond scission underlies the fracture and macroscopic failure of pol...
Incorporating hidden length into polymer chains can improve their mechanical properties, because rel...
Covalent macromolecules tend to fragment under mechanical stress through the mechanochemical scissio...
Large or repeated mechanical loads usually degrade polymers by accelerating fragmentation of their b...
Current synthetic elastomers suffer from the well-known trade-off between toughness and stiffness. B...
AbstractSacrificial bonds and hidden length in structural molecules and composites have been found t...
Designing sacrificial bonds or networks has emerged as a popular strategy to fabricate high-performa...