We present an approach where biomolecular self-assembly is used in combination with lithography to produce patterns of metallic nanoparticles on a silicon substrate. This is achieved through a two-step method, resulting in attachment of nanoparticles on desired sites on the sample surfaces, which allowed a detailed characterization. First, a genetically modified hydrophobin protein, NCysHFBI, was attached by self-assembly on a hydrophobic surface or a surface patterned with hydrophobic and hydrophilic domains. The next step was to label the protein layers with 17.8 nm gold nanoparticles, to allow microscopic characterization of the films. Kinetics and extent of attachment of nanoparticles were characterized by UV−vis spectroscopy and transm...
Directed assembly of the DsRed FT protein is demonstrated on self-assembled monolayers (SAMs) on sil...
Biologically relevant nanopatterns are useful platforms to address fundamental questions, for exampl...
Protein-based scaffolds enable flexible and sustainable approaches to produce and manipulate materi...
We present an approach where biomolecular self-assembly is used in combination with lithography to p...
The recent decade has seen a rapid expansion in the ability to create and study nanometer scale obje...
Aims: The applicability of particle lithography with monodisperse mesospheres is tested with various...
A simple and efficient principle for nanopatterning with wide applicability in the sub-50 nanometer ...
Cells bind to their surroundings via proteins displayed on the cell surface. These interactions supp...
Directed assembly of the DsRed FT protein is demonstrated on self-assembled monolayers (SAMs) on sil...
Directed assembly of the DsRed FT protein is demonstrated on self-assembled monolayers (SAMs) on sil...
Directed assembly of the DsRed FT protein is demonstrated on self-assembled monolayers (SAMs) on sil...
Biologically relevant nanopatterns are useful platforms to address fundamental questions, for exampl...
Controlled patterning of surfaces with different chemistries and structures at nanoscale length scal...
Arrays of protein nanostructures can be formed on surfaces such as mica(0001) and Au(111) using lith...
Biologically relevant nanopatterns are useful platforms to address fundamental questions, for exampl...
Directed assembly of the DsRed FT protein is demonstrated on self-assembled monolayers (SAMs) on sil...
Biologically relevant nanopatterns are useful platforms to address fundamental questions, for exampl...
Protein-based scaffolds enable flexible and sustainable approaches to produce and manipulate materi...
We present an approach where biomolecular self-assembly is used in combination with lithography to p...
The recent decade has seen a rapid expansion in the ability to create and study nanometer scale obje...
Aims: The applicability of particle lithography with monodisperse mesospheres is tested with various...
A simple and efficient principle for nanopatterning with wide applicability in the sub-50 nanometer ...
Cells bind to their surroundings via proteins displayed on the cell surface. These interactions supp...
Directed assembly of the DsRed FT protein is demonstrated on self-assembled monolayers (SAMs) on sil...
Directed assembly of the DsRed FT protein is demonstrated on self-assembled monolayers (SAMs) on sil...
Directed assembly of the DsRed FT protein is demonstrated on self-assembled monolayers (SAMs) on sil...
Biologically relevant nanopatterns are useful platforms to address fundamental questions, for exampl...
Controlled patterning of surfaces with different chemistries and structures at nanoscale length scal...
Arrays of protein nanostructures can be formed on surfaces such as mica(0001) and Au(111) using lith...
Biologically relevant nanopatterns are useful platforms to address fundamental questions, for exampl...
Directed assembly of the DsRed FT protein is demonstrated on self-assembled monolayers (SAMs) on sil...
Biologically relevant nanopatterns are useful platforms to address fundamental questions, for exampl...
Protein-based scaffolds enable flexible and sustainable approaches to produce and manipulate materi...