Given the extensive use of polymers in the modern age with applications ranging from aerospace components to microcircuitry, the ability to regain the mechanical and physical characteristics of complex pristine materials after damage is an attractive proposition. This tutorial review focusses upon the key chemical concepts that have been successfully utilised in the design of healable polymeric materials
Recovery of catastrophic damage requires a robust chemistry capable of addressing the complex challe...
This mini-review details the recent development of self-healing and mendable polymeric materials whi...
Repair in composite materials is tending towards autonomic healing systems. This is a technological ...
Given the extensive use of polymers in the modern age with applications ranging from aerospace compo...
Polymeric materials had shown tremendous increment in its properties due to its acceptability in a w...
After millions of years of evolution, nature has developed materials and systems based on the concep...
Covalent reversible chemistries give rise to polymers with reasonable mechanical properties yet requ...
All polymeric materials are subject to thermal, mechanical as well as chemical degradation and destr...
AbstractIntrinsic and extrinsic self-healing strategies can be employed to mitigate the effects of l...
Intrinsic and extrinsic self-healing strategies can be employed to mitigate the effects of local dam...
Mechanical damage to bulk polymers typically begins as a microcrack, which can lead to eventual fail...
Research in the field of smart materials that exhibit self-repair mechanisms has greatly expanded ov...
This chapter details the design, synthesis and evaluation techniques required to produce healable su...
Recent developments in material design have seen an exponential increase of polymers and polymer com...
Heal thyself! : A thermoplastic rubber material has recently been developed that can completely mend...
Recovery of catastrophic damage requires a robust chemistry capable of addressing the complex challe...
This mini-review details the recent development of self-healing and mendable polymeric materials whi...
Repair in composite materials is tending towards autonomic healing systems. This is a technological ...
Given the extensive use of polymers in the modern age with applications ranging from aerospace compo...
Polymeric materials had shown tremendous increment in its properties due to its acceptability in a w...
After millions of years of evolution, nature has developed materials and systems based on the concep...
Covalent reversible chemistries give rise to polymers with reasonable mechanical properties yet requ...
All polymeric materials are subject to thermal, mechanical as well as chemical degradation and destr...
AbstractIntrinsic and extrinsic self-healing strategies can be employed to mitigate the effects of l...
Intrinsic and extrinsic self-healing strategies can be employed to mitigate the effects of local dam...
Mechanical damage to bulk polymers typically begins as a microcrack, which can lead to eventual fail...
Research in the field of smart materials that exhibit self-repair mechanisms has greatly expanded ov...
This chapter details the design, synthesis and evaluation techniques required to produce healable su...
Recent developments in material design have seen an exponential increase of polymers and polymer com...
Heal thyself! : A thermoplastic rubber material has recently been developed that can completely mend...
Recovery of catastrophic damage requires a robust chemistry capable of addressing the complex challe...
This mini-review details the recent development of self-healing and mendable polymeric materials whi...
Repair in composite materials is tending towards autonomic healing systems. This is a technological ...