The surface topography of materials is the local deviations of a surface from a perfectly flat plane. This chapter proposes the use of liquid crystal (LC) networks to induce the formation of surface topographies. The driving principle is the light‐triggered trans‐to‐cis isomerization of a copolymerized azobenzene molecule added in a relatively low concentration to the network. An additional advantage of the use of photopolymerized LC networks is that one can chose between a variety of alignment strategies, which leads to the formation of preprogrammed surface structures. The principle of photoactivated deformation of LC network films has many parallels with the deformation induced by heating of structured LC network films. In this case, a c...
Coating of liquid crystal (LC) networks modified with azobenzene moieties as crosslinks was reviewed...
Based on liquid crystal networks we developed 'smart' coatings with responsive surface topographies....
Based on liquid crystal networks we developed 'smart' coatings with responsive surface topographies....
The surface topography of materials is the local deviations of a surface from a perfectly flat plane...
The surface topography of materials is the local deviations of a surface from a perfectly flat plane...
The surface topography of materials is the local deviations of a surface from a perfectly flat plane...
The surface topography of materials is the local deviations of a surface from a perfectly flat plane...
The surface topography of materials is the local deviations of a surface from a perfectly flat plane...
The topography of the surface is the local deviations of a surface from a perfectly flat plane. Topo...
The topography of the surface is the local deviations of a surface from a perfectly flat plane. Topo...
Coating of liquid crystal (LC) networks modified with azobenzene moieties as crosslinks was reviewed...
Coating of liquid crystal (LC) networks modified with azobenzene moieties as crosslinks was reviewed...
Coating of liquid crystal (LC) networks modified with azobenzene moieties as crosslinks was reviewed...
Coating of liquid crystal (LC) networks modified with azobenzene moieties as crosslinks was reviewed...
Coating of liquid crystal (LC) networks modified with azobenzene moieties as crosslinks was reviewed...
Coating of liquid crystal (LC) networks modified with azobenzene moieties as crosslinks was reviewed...
Based on liquid crystal networks we developed 'smart' coatings with responsive surface topographies....
Based on liquid crystal networks we developed 'smart' coatings with responsive surface topographies....
The surface topography of materials is the local deviations of a surface from a perfectly flat plane...
The surface topography of materials is the local deviations of a surface from a perfectly flat plane...
The surface topography of materials is the local deviations of a surface from a perfectly flat plane...
The surface topography of materials is the local deviations of a surface from a perfectly flat plane...
The surface topography of materials is the local deviations of a surface from a perfectly flat plane...
The topography of the surface is the local deviations of a surface from a perfectly flat plane. Topo...
The topography of the surface is the local deviations of a surface from a perfectly flat plane. Topo...
Coating of liquid crystal (LC) networks modified with azobenzene moieties as crosslinks was reviewed...
Coating of liquid crystal (LC) networks modified with azobenzene moieties as crosslinks was reviewed...
Coating of liquid crystal (LC) networks modified with azobenzene moieties as crosslinks was reviewed...
Coating of liquid crystal (LC) networks modified with azobenzene moieties as crosslinks was reviewed...
Coating of liquid crystal (LC) networks modified with azobenzene moieties as crosslinks was reviewed...
Coating of liquid crystal (LC) networks modified with azobenzene moieties as crosslinks was reviewed...
Based on liquid crystal networks we developed 'smart' coatings with responsive surface topographies....
Based on liquid crystal networks we developed 'smart' coatings with responsive surface topographies....