Reversible crosslinking is a design paradigm for polymeric materials, wherein they are microscopically reinforced with chemical species that form transient crosslinks between the polymer chains. Besides the potential for self-healing, recent experimental work suggests that freely diffusing reversible crosslinks in polymer networks, such as gels, can enhance the toughness of the material without substantial change in elasticity. This presents the opportunity for making highly elastic materials that can be strained to a large extent before rupturing. Here, we employ Gaussian chain theory, molecular simulation, and polymer self-consistent field theory for networks to construct an equilibrium picture for how reversible crosslinks can toughen a ...
\u3cp\u3eA lattice model based on polymer self-consistent field theory is developed to predict the e...
Biological materials combine stress relaxation and self-healing with non-linear stress-strain respon...
A lattice model based on polymer self-consistent field theory is developed to predict the equilibriu...
Reversible crosslinking is a design paradigm for polymeric materials, wherein they are microscopical...
Reversible crosslinking is a design paradigm for polymeric materials, wherein they are microscopical...
Reversible crosslinking is a design paradigm for polymeric materials, wherein they are microscopical...
Cross-linked polymer networks are stress supporting structures that represent an important class of ...
The development of high-performance polymeric materials typically involves a trade-off between desir...
The development of high-performance polymeric materials typically involves a trade-off between desir...
The development of high-performance polymeric materials typically involves a trade-off between desir...
The development of high-performance polymeric materials typically involves a trade-off between desir...
The development of high-performance polymeric materials typically involves a trade-off between desir...
Cross-linked polymer networks are stress supporting structures that represent an important class of ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2019Cataloged from P...
A lattice model based on polymer self-consistent field theory is developed to predict the equilibriu...
\u3cp\u3eA lattice model based on polymer self-consistent field theory is developed to predict the e...
Biological materials combine stress relaxation and self-healing with non-linear stress-strain respon...
A lattice model based on polymer self-consistent field theory is developed to predict the equilibriu...
Reversible crosslinking is a design paradigm for polymeric materials, wherein they are microscopical...
Reversible crosslinking is a design paradigm for polymeric materials, wherein they are microscopical...
Reversible crosslinking is a design paradigm for polymeric materials, wherein they are microscopical...
Cross-linked polymer networks are stress supporting structures that represent an important class of ...
The development of high-performance polymeric materials typically involves a trade-off between desir...
The development of high-performance polymeric materials typically involves a trade-off between desir...
The development of high-performance polymeric materials typically involves a trade-off between desir...
The development of high-performance polymeric materials typically involves a trade-off between desir...
The development of high-performance polymeric materials typically involves a trade-off between desir...
Cross-linked polymer networks are stress supporting structures that represent an important class of ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemistry, 2019Cataloged from P...
A lattice model based on polymer self-consistent field theory is developed to predict the equilibriu...
\u3cp\u3eA lattice model based on polymer self-consistent field theory is developed to predict the e...
Biological materials combine stress relaxation and self-healing with non-linear stress-strain respon...
A lattice model based on polymer self-consistent field theory is developed to predict the equilibriu...