Approaches to the fabrication of surfaces that combine methods for the topographic patterning of soft materials with opportunities for facile, post-fabrication chemical functionalization could contribute significantly to advances in biotechnology and a broad range of other areas. Here, we report methods that can be used to introduce well defined nano- and microscale topographic features to thin films of reactive polymers containing azlactone functionality using nanoimprint lithography (NIL). We demonstrate that NIL can be used to imprint topographic patterns into thin films of poly(2-vinyl-4,4- dimethylazlactone) and a copolymer of methyl methacrylate and 2-vinyl- 4,4-dimethylazlactone using silicon masters having patterns of grooves and ri...
Mimicking the in vivo microenvironment of cells is a challenging task in engineering in vitro cell m...
Mimicking the in vivo microenvironment of cells is a challenging task in engineering in vitro cell m...
Highly layered structures are important to micro- and nanofabrication technologies for understanding...
Approaches to the fabrication of surfaces that combine methods for the topographic patterning of sof...
Laser scanning confocal microscopy (LSCM) and atomic force microscopy (AFM) were used to characteriz...
We report an approach to the design of reactive polymer films that can be functionalized post-fabric...
We report a method for modulating the physicochemical properties of surfaces that is based on the re...
We report a method for modulating the physicochemical properties of surfaces that is based on the re...
We report an approach to the design of reactive polymer films that can be functionalized post-fabric...
We report an approach to the fabrication and selective functionalization of amine-reactive polymer m...
We report an approach to the fabrication and selective functionalization of amine-reactive polymer m...
This work introduces a novel process for the fabrication of polymer cell culture substrates containi...
Mimicking the in vivo microenvironment of cells is a challenging task in engineering in vitro cell m...
Mimicking the in vivo microenvironment of cells is a challenging task in engineering in vitro cell m...
Mimicking the in vivo microenvironment of cells is a challenging task in engineering in vitro cell m...
Mimicking the in vivo microenvironment of cells is a challenging task in engineering in vitro cell m...
Mimicking the in vivo microenvironment of cells is a challenging task in engineering in vitro cell m...
Highly layered structures are important to micro- and nanofabrication technologies for understanding...
Approaches to the fabrication of surfaces that combine methods for the topographic patterning of sof...
Laser scanning confocal microscopy (LSCM) and atomic force microscopy (AFM) were used to characteriz...
We report an approach to the design of reactive polymer films that can be functionalized post-fabric...
We report a method for modulating the physicochemical properties of surfaces that is based on the re...
We report a method for modulating the physicochemical properties of surfaces that is based on the re...
We report an approach to the design of reactive polymer films that can be functionalized post-fabric...
We report an approach to the fabrication and selective functionalization of amine-reactive polymer m...
We report an approach to the fabrication and selective functionalization of amine-reactive polymer m...
This work introduces a novel process for the fabrication of polymer cell culture substrates containi...
Mimicking the in vivo microenvironment of cells is a challenging task in engineering in vitro cell m...
Mimicking the in vivo microenvironment of cells is a challenging task in engineering in vitro cell m...
Mimicking the in vivo microenvironment of cells is a challenging task in engineering in vitro cell m...
Mimicking the in vivo microenvironment of cells is a challenging task in engineering in vitro cell m...
Mimicking the in vivo microenvironment of cells is a challenging task in engineering in vitro cell m...
Highly layered structures are important to micro- and nanofabrication technologies for understanding...