Tough and self-healing hydrogels can be developed by incorporating non-covalent dynamic bonds in the polymer network as reversible sacrificial bonds to dissipate energy. However, the dynamic nature of the non-covalent bonds results in strong strain rate dependency of the materials. In most applications, strain-rate independent mechanical performances are required. Developing tough self-healing hydrogels showing strain rate-independency is a challenge. In this study, we realize this by adopting the thixotropic hydrogel of an oligomeric electrolyte gelator as a brittle, though self-healing, sacrificial network of tough double network (DN) hydrogels. The hydrogels, synthesized via a facile one-pot approach, show specific features of typical do...
Dynamic and reversible polymer networks capable of self-healing, i.e., restoring their mechanical pr...
Given their durability and long-term stability, self-healable hydrogels have, in the past few years,...
Recoverable hydrogels with high stretch and toughness have been synthesized by a one-step radical po...
Tough and self-healing hydrogels can be developed by incorporating non-covalent dynamic bonds in the...
Double network (DN) hydrogels with two strong asymmetric networks being chemically linked have demon...
Hydrogels are polymeric materials that have a relatively high capacity for holding water. Recently, ...
This brief review attempts to summarize research advances in the mechanical toughness and structures...
Macroscopic hydrogel fibers are highly desirable for smart textiles, but the fabrication of self-hea...
AbstractThe double network (DN) technique, developed by authors’ group, provides an innovative and u...
Biological soft tissues are intrinsically viscoelastic materials which play a significant role in af...
A series of physical double-network hydrogels is synthesized based on an amphiphilic triblock copoly...
In this paper, a micro-mechanically based constitutive model is presented to describe stress softeni...
Double network (DN) gels, consisting of a brittle first and flexible second network, have been known...
As one of the highly researched materials, hydrogel can be described as three-dimensional network of...
Chemically linked double network (DN) hydrogels display extraordinary mechanical attributes but most...
Dynamic and reversible polymer networks capable of self-healing, i.e., restoring their mechanical pr...
Given their durability and long-term stability, self-healable hydrogels have, in the past few years,...
Recoverable hydrogels with high stretch and toughness have been synthesized by a one-step radical po...
Tough and self-healing hydrogels can be developed by incorporating non-covalent dynamic bonds in the...
Double network (DN) hydrogels with two strong asymmetric networks being chemically linked have demon...
Hydrogels are polymeric materials that have a relatively high capacity for holding water. Recently, ...
This brief review attempts to summarize research advances in the mechanical toughness and structures...
Macroscopic hydrogel fibers are highly desirable for smart textiles, but the fabrication of self-hea...
AbstractThe double network (DN) technique, developed by authors’ group, provides an innovative and u...
Biological soft tissues are intrinsically viscoelastic materials which play a significant role in af...
A series of physical double-network hydrogels is synthesized based on an amphiphilic triblock copoly...
In this paper, a micro-mechanically based constitutive model is presented to describe stress softeni...
Double network (DN) gels, consisting of a brittle first and flexible second network, have been known...
As one of the highly researched materials, hydrogel can be described as three-dimensional network of...
Chemically linked double network (DN) hydrogels display extraordinary mechanical attributes but most...
Dynamic and reversible polymer networks capable of self-healing, i.e., restoring their mechanical pr...
Given their durability and long-term stability, self-healable hydrogels have, in the past few years,...
Recoverable hydrogels with high stretch and toughness have been synthesized by a one-step radical po...