An approach for the fabrication of functional polymer surface coatings is introduced, where micro-scale structure and surface functionality are obtained by means of self-assembly mechanisms. We illustrate two main applications of micro-patterned polymer surfaces obtained through dewetting of bilayers of thin polymer films. By tuning the physical and chemical properties of the polymer bilayers, micro-patterned surface coatings could be produced that have applications both for the selective attachment and patterning of proteins and cells, with potential applications as biomaterials, and for the collection of water from the atmosphere. In all cases, the aim is to achieve functional coatings using approaches that are simple to realize, use low ...
A simple technique for patterning proteins utilizing dewetted polystyrene (PS) droplets is demonstra...
Two simple approaches to build up micropatterned functionalized polymer films are reported here. Bot...
Design of 2D and 3D micropatterned materials is highly important for printing technology, microfluid...
An approach for the fabrication of functional polymer surface coatings is introduced, where micro-sc...
The pattern evolution processes of thin polystyrene (PS) film on chemically patterned substrates dur...
Vapor-deposition processes and the resulting thin polymer films provide consistent coatings that dec...
The unprecedented triumph of silicon technology in modern high tech applications was and is strongly...
The ability to control protein and cell positioning on a microscopic scale is crucial in many biomed...
Micropatterned surfaces are important in many biomedical and bioengineering applications, such as th...
Controlled dewetting of thin polymer films on physically heterogeneous substrates is employed as a n...
The ability to control protein and cell positioning on a microscopic scale is crucial in many biomed...
Strategies for the utilization of dewetting of polymer thin film to fabricate ordered patterns are r...
Polymer thin films offer a versatile and ubiquitous platform for a wide variety of real-world applic...
In this study, microstructured surfaces are produced by a spatial arrangement of different functiona...
The covalent attachment of proteins and their patterning on surfaces are important in the bio-medica...
A simple technique for patterning proteins utilizing dewetted polystyrene (PS) droplets is demonstra...
Two simple approaches to build up micropatterned functionalized polymer films are reported here. Bot...
Design of 2D and 3D micropatterned materials is highly important for printing technology, microfluid...
An approach for the fabrication of functional polymer surface coatings is introduced, where micro-sc...
The pattern evolution processes of thin polystyrene (PS) film on chemically patterned substrates dur...
Vapor-deposition processes and the resulting thin polymer films provide consistent coatings that dec...
The unprecedented triumph of silicon technology in modern high tech applications was and is strongly...
The ability to control protein and cell positioning on a microscopic scale is crucial in many biomed...
Micropatterned surfaces are important in many biomedical and bioengineering applications, such as th...
Controlled dewetting of thin polymer films on physically heterogeneous substrates is employed as a n...
The ability to control protein and cell positioning on a microscopic scale is crucial in many biomed...
Strategies for the utilization of dewetting of polymer thin film to fabricate ordered patterns are r...
Polymer thin films offer a versatile and ubiquitous platform for a wide variety of real-world applic...
In this study, microstructured surfaces are produced by a spatial arrangement of different functiona...
The covalent attachment of proteins and their patterning on surfaces are important in the bio-medica...
A simple technique for patterning proteins utilizing dewetted polystyrene (PS) droplets is demonstra...
Two simple approaches to build up micropatterned functionalized polymer films are reported here. Bot...
Design of 2D and 3D micropatterned materials is highly important for printing technology, microfluid...