A simple method to fabricate a multifunctional patterned platform on the nanometer scale is demonstrated. The platform contains two reactive functional groups on the surface: one is an acetylene group which can be functionalized via click chemistry, and the other is an amine group which can also be functionalized by classic carbodiimide chemistry with N-hydroxysuccinimide (NHS). The click-active and amine surface could be obtained from polymer coating of poly(propargyl methacrylate) (PPMA) via initiated chemical vapor deposition (iCVD) and poly(allylamine) (PAAm) via a plasma polymerization process, respectively, utilizing commercially available monomers. A capillary force lithography (CFL) process was applied on a stacked film of a PPMA la...
The results presented in this thesis demonstrate the ability of SAMs to create functional surfaces t...
Molecular multifMolecular multifunctional materials have potential applications in many fields of te...
An accurate and versatile process for the fabrication of high-resolution 3D nanostructures combining...
Additional resources and features associated with this article are available within the HTML version...
Click-active surfaces patterned at 200 nm resolution are demonstrated using the dual functional poly...
Engineering nanostructures with complete control over the shape, composition, organization of the su...
Engineering nanostructures with complete control over the shape, composition, organization of the su...
Coimmobilization of functional, nanosized assemblies broadens the possibility to engineer dually fun...
<p>Modern patterning and fabrication techniques provide powerful opportunities for the preparation o...
The use of chemically active surface templates to perform chemical reactions and self-assembly on th...
This Article describes the generation of a patterned surface that can be postpolymerization modified...
iv Modern patterning and fabrication techniques provide powerful opportunities for the preparation o...
Nanoimprint lithography (NIL) was used as a tool to pattern self-assembled monolayers (SAMs) on sili...
Coimmobilization of functional, nanosized assemblies broadens the possibility to engineer dually fun...
The ability to modify substrates with thin polymer films allows for the tailoring of surface propert...
The results presented in this thesis demonstrate the ability of SAMs to create functional surfaces t...
Molecular multifMolecular multifunctional materials have potential applications in many fields of te...
An accurate and versatile process for the fabrication of high-resolution 3D nanostructures combining...
Additional resources and features associated with this article are available within the HTML version...
Click-active surfaces patterned at 200 nm resolution are demonstrated using the dual functional poly...
Engineering nanostructures with complete control over the shape, composition, organization of the su...
Engineering nanostructures with complete control over the shape, composition, organization of the su...
Coimmobilization of functional, nanosized assemblies broadens the possibility to engineer dually fun...
<p>Modern patterning and fabrication techniques provide powerful opportunities for the preparation o...
The use of chemically active surface templates to perform chemical reactions and self-assembly on th...
This Article describes the generation of a patterned surface that can be postpolymerization modified...
iv Modern patterning and fabrication techniques provide powerful opportunities for the preparation o...
Nanoimprint lithography (NIL) was used as a tool to pattern self-assembled monolayers (SAMs) on sili...
Coimmobilization of functional, nanosized assemblies broadens the possibility to engineer dually fun...
The ability to modify substrates with thin polymer films allows for the tailoring of surface propert...
The results presented in this thesis demonstrate the ability of SAMs to create functional surfaces t...
Molecular multifMolecular multifunctional materials have potential applications in many fields of te...
An accurate and versatile process for the fabrication of high-resolution 3D nanostructures combining...