In this technical note, we demonstrate a squeeze-film based spacer-free method for creating controllable submicrometer hydrogel films on planar substrates that can be used to photolithographically fabricate hydrogel microstructures. This new technique improves the photolithographic resolution and yield by providing a uniform and low-defect hydrogel film. The optimum polymerization initiation time for achieving such a layer was determined to be around 1 min. For patterning, the dried hydrogel film was coated with a parylene-C masking layer. Subsequent etching in oxygen plasma was used to transfer selected patterns of hydrogel to the substrate in a batch scale
We present an innovative and simple, soft UV lithographic method “FIll-Molding In Capillaries&...
Patterned microstructures of hydrogels have attracted significant attention due to an increasing nee...
We present an innovative and simple, soft UV lithographic method “FIll-Molding In Capillaries” (FIMI...
In this technical note, we demonstrate a squeeze-film based spacer-free method for creating controll...
To date, optical lithography has been extensively used for in situ patterning of hydrogel structures...
To date, optical lithography has been extensively used for in situ patterning of hydrogel structures...
We present a fabrication method which enables simple and eproducible photopatterning of micron- size...
Hydrogel micropatterns of poly( ethylene glycol) and polyacrylamide were prepared with a facile phot...
Fabrication of hydrogel microstructures has attracted considerable attention. A large number of appl...
A considerable number of studies have focused on fabrication of hydrogel microstructures due to its ...
Current progress in tissue engineering is focused on the creation of environments in which cultures ...
International audienceA new strategy for the fabrication of micropatterns of surfaceattached hydroge...
Self-organized patterning of mammalian embryonic stem cells on micropatterned surfaces has previousl...
Independent control over phase separation and photo-cross-linking allows the structure and porosity ...
Hydrogels are soft polymers comprising of a three-dimensional network capable of absorbing significa...
We present an innovative and simple, soft UV lithographic method “FIll-Molding In Capillaries&...
Patterned microstructures of hydrogels have attracted significant attention due to an increasing nee...
We present an innovative and simple, soft UV lithographic method “FIll-Molding In Capillaries” (FIMI...
In this technical note, we demonstrate a squeeze-film based spacer-free method for creating controll...
To date, optical lithography has been extensively used for in situ patterning of hydrogel structures...
To date, optical lithography has been extensively used for in situ patterning of hydrogel structures...
We present a fabrication method which enables simple and eproducible photopatterning of micron- size...
Hydrogel micropatterns of poly( ethylene glycol) and polyacrylamide were prepared with a facile phot...
Fabrication of hydrogel microstructures has attracted considerable attention. A large number of appl...
A considerable number of studies have focused on fabrication of hydrogel microstructures due to its ...
Current progress in tissue engineering is focused on the creation of environments in which cultures ...
International audienceA new strategy for the fabrication of micropatterns of surfaceattached hydroge...
Self-organized patterning of mammalian embryonic stem cells on micropatterned surfaces has previousl...
Independent control over phase separation and photo-cross-linking allows the structure and porosity ...
Hydrogels are soft polymers comprising of a three-dimensional network capable of absorbing significa...
We present an innovative and simple, soft UV lithographic method “FIll-Molding In Capillaries&...
Patterned microstructures of hydrogels have attracted significant attention due to an increasing nee...
We present an innovative and simple, soft UV lithographic method “FIll-Molding In Capillaries” (FIMI...