Damaged surfaces self-replenish their chemical composition by the spontaneous re-orientation of functional groups chemically bonded to the polymer network. The repair of the surface chemistry leads to the recovery of surface functionality. This self-replenishing approach is suitable to recover many surface-related properties and constitutes a major breakthrough in extending the service life-time of functional material
energy component. For many current engineering applications the performance of materials depends str...
Self-healing functional polymer surfaces, designed with an intrinsic and spontaneous mechanism which...
This chapter deals with aspects to be considered with respect to the self healing of polymer coating...
Damaged surfaces self-replenish their chemical composition by the spontaneous re-orientation of func...
Previously, we reported a self-replenishing polymer surfaces which recover their lowsurface energy (...
During the last decade extensive research has focused on designing functional surfaces, e.g., with s...
During the last decade, extensive research has been carried out on functional coatings with easy-to-...
In light of the sustainable development, demands on polymeric materials with respect to their effici...
Hydrophobic materials hold many properties that are desirable in coatings, e.g. water repellency and...
Research in the field of smart materials that exhibit self-repair mechanisms has greatly expanded ov...
The recent decade brought about new dimensions to materials developments; stimuliresponse materials ...
The implementation of a self-healing functionality into materials has become a prevalent approach fo...
The implementation of a self-healing functionality into materials has become a prevalent approach fo...
The implementation of a self-healing functionality into materials has become a prevalent approach fo...
energy component. For many current engineering applications the performance of materials depends str...
Self-healing functional polymer surfaces, designed with an intrinsic and spontaneous mechanism which...
This chapter deals with aspects to be considered with respect to the self healing of polymer coating...
Damaged surfaces self-replenish their chemical composition by the spontaneous re-orientation of func...
Previously, we reported a self-replenishing polymer surfaces which recover their lowsurface energy (...
During the last decade extensive research has focused on designing functional surfaces, e.g., with s...
During the last decade, extensive research has been carried out on functional coatings with easy-to-...
In light of the sustainable development, demands on polymeric materials with respect to their effici...
Hydrophobic materials hold many properties that are desirable in coatings, e.g. water repellency and...
Research in the field of smart materials that exhibit self-repair mechanisms has greatly expanded ov...
The recent decade brought about new dimensions to materials developments; stimuliresponse materials ...
The implementation of a self-healing functionality into materials has become a prevalent approach fo...
The implementation of a self-healing functionality into materials has become a prevalent approach fo...
The implementation of a self-healing functionality into materials has become a prevalent approach fo...
energy component. For many current engineering applications the performance of materials depends str...
Self-healing functional polymer surfaces, designed with an intrinsic and spontaneous mechanism which...
This chapter deals with aspects to be considered with respect to the self healing of polymer coating...