A new self-healing multiphase polymer is developed in which a pervasive network of dynamic metal–ligand (zinc–imidazole) interactions are programmed in the soft matrix of a hard/soft two-phase brush copolymer system. The mechanical and dynamic properties of the materials can be tuned by varying a number of molecular parameters (e.g., backbone/brush degree of polymerization and brush density) as well as the ligand/metal ratio. Following mechanical damage, these thermoplastic elastomers show excellent self-healing ability under ambient conditions without any intervention
Self-healing polymers capable of recovering from physical damages are promising materials for advanc...
Tremendous synthetic advances in the fields of organic and polymer chemistry have created new opport...
In the last decade several intrinsic self-healing materials have been developed in which the healing...
Engineering transient interactions is a powerful method that can be used to encode structure and fun...
"Heal thyself!": A thermoplastic rubber material has recently been developed that can completely men...
In the last decade several intrinsic self-healing materials have been developed in which the healing...
Drawing on inspiration from nature, transient, dynamic interactions can encode function into synthet...
Herein, an intrinsic autonomous self-healing polymer system has been developed and explored leading ...
The development of polymers that possess superb mechanical properties and at the same time are capab...
The development of self-healing polymers with tunable mechanical performances is an enormous challen...
All polymeric materials are subject to thermal, mechanical as well as chemical degradation and destr...
A supramolecular material exhibiting self-healing properties was studied in this work. The material ...
In the last decade several intrinsic self-healing materials have been developed in which the healing...
When introducing self-healing properties to elastomers, it is often difficult to balance their abili...
In this work, an innovative TPE material architecture with excellent shape memory and self-healing p...
Self-healing polymers capable of recovering from physical damages are promising materials for advanc...
Tremendous synthetic advances in the fields of organic and polymer chemistry have created new opport...
In the last decade several intrinsic self-healing materials have been developed in which the healing...
Engineering transient interactions is a powerful method that can be used to encode structure and fun...
"Heal thyself!": A thermoplastic rubber material has recently been developed that can completely men...
In the last decade several intrinsic self-healing materials have been developed in which the healing...
Drawing on inspiration from nature, transient, dynamic interactions can encode function into synthet...
Herein, an intrinsic autonomous self-healing polymer system has been developed and explored leading ...
The development of polymers that possess superb mechanical properties and at the same time are capab...
The development of self-healing polymers with tunable mechanical performances is an enormous challen...
All polymeric materials are subject to thermal, mechanical as well as chemical degradation and destr...
A supramolecular material exhibiting self-healing properties was studied in this work. The material ...
In the last decade several intrinsic self-healing materials have been developed in which the healing...
When introducing self-healing properties to elastomers, it is often difficult to balance their abili...
In this work, an innovative TPE material architecture with excellent shape memory and self-healing p...
Self-healing polymers capable of recovering from physical damages are promising materials for advanc...
Tremendous synthetic advances in the fields of organic and polymer chemistry have created new opport...
In the last decade several intrinsic self-healing materials have been developed in which the healing...