Self-healing polymers can significantly extend the service life of materials and structures by autonomously repairing damage. Intrinsic healing holds great promise as a design strategy to mitigate the risks of damage by delaying or preventing catastrophic failure. However, experimentally resolving the microscopic mechanisms of intrinsic repair has proven highly challenging. This work demonstrates how optical micromechanical mapping enables the quantitative imaging of these molecular-scale dynamics with high spatiotemporal resolution. This approach allows disentangling delocalized viscoplastic relaxation and localized cohesion-restoring rebonding processes that occur simultaneously upon damage to a self-healing polymer. Moreover, frequency- ...
Structural heterogeneity defines the properties of many functional polymers and it is often crucial ...
The mechanical failure of polymers remains challenging to understand and predict, as it often involv...
Although the last decade has brought self-healing materials to the forefront of scientific interests...
Self-healing polymers can significantly extend the service life of materials and structures by auton...
Research in the field of smart materials that exhibit self-repair mechanisms has greatly expanded ov...
Self-healing or healable polymers can recuperate their function after physical damage. This process ...
The self-healing ability of self-healing materials is often analyzed using morphologic microscopy im...
Self-healing ability in polymers is typically probed by monitoring restorative properties after loca...
Starting from experimental macro-rheological data, we develop a fitting protocol that succeeded in ...
Self-healing materials are prized for their ability to recover mechanical properties after damage. S...
Over the last few years, several testing methods have been introduced for the detection and quantifi...
A lot of self-healing materials using dynamic bonding systems have been reported, while the focus is...
In these studies we developed fluoro-containing copolymers that for well-defined monomer molar ratio...
The present contribution introduces a phenomenological model for self-healing polymers. Self-healing...
Structural heterogeneity defines the properties of many functional polymers and it is often crucial ...
Structural heterogeneity defines the properties of many functional polymers and it is often crucial ...
The mechanical failure of polymers remains challenging to understand and predict, as it often involv...
Although the last decade has brought self-healing materials to the forefront of scientific interests...
Self-healing polymers can significantly extend the service life of materials and structures by auton...
Research in the field of smart materials that exhibit self-repair mechanisms has greatly expanded ov...
Self-healing or healable polymers can recuperate their function after physical damage. This process ...
The self-healing ability of self-healing materials is often analyzed using morphologic microscopy im...
Self-healing ability in polymers is typically probed by monitoring restorative properties after loca...
Starting from experimental macro-rheological data, we develop a fitting protocol that succeeded in ...
Self-healing materials are prized for their ability to recover mechanical properties after damage. S...
Over the last few years, several testing methods have been introduced for the detection and quantifi...
A lot of self-healing materials using dynamic bonding systems have been reported, while the focus is...
In these studies we developed fluoro-containing copolymers that for well-defined monomer molar ratio...
The present contribution introduces a phenomenological model for self-healing polymers. Self-healing...
Structural heterogeneity defines the properties of many functional polymers and it is often crucial ...
Structural heterogeneity defines the properties of many functional polymers and it is often crucial ...
The mechanical failure of polymers remains challenging to understand and predict, as it often involv...
Although the last decade has brought self-healing materials to the forefront of scientific interests...