The fabrication of multifunctional surface patterns by employing removable metal barrier nanostructures and site-selective assembly of chemical active monolayers is reported. Latex bead gold projection patterns serve as barrier structures to obtain high-fidelity nanostructures consisting of n-octadecyl/n-thiolundecyl multifunctional self-assembled monolayers (NanoMuSes). Large scale, high resolution, stable and addressable chemically active surface patterns are obtained
Self-assembled monolayers (SAMs) were investigated with regard to their application as templates to ...
The development of new methods for nanopatterning of metal surfaces is discussed. Self-assembled mol...
Nanomaterials have generated intense interest due to their novel properties which open up numerous o...
The fabrication of multifunctional surface patterns by employing removable metal barrier nanostructu...
The fabrication of multifunctional surface patterns by employing removable metal barrier nanostructu...
The fabrication of multifunctional surface patterns by employing removable metal barrier nanostructu...
Self-assembly is an interesting process both for its biological relevance and because it provides a ...
Beyer A, Godt A, Amin I, et al. Fully cross-linked and chemically patterned self-assembled monolayer...
The self-assembly of molecules into structurally organized monolayers ( S A Ms) uses the flexibility...
The understandings and applications of self-assembly have evolved significantly since the adsorption...
This paper describes the generation of reversible patterns of self-assembled monolayers (SAMs) on go...
A method for preparing surfaces with well-defined nanoscale chemical patterns is described. The fabr...
This paper describes the generation of reversible patterns of self-assembled monolayers (SAMs) on go...
The combination of self-, directed, and positional assembly techniques, i.e., “bottom up” fabricatio...
The use of chemically active surface templates to perform chemical reactions and self-assembly on th...
Self-assembled monolayers (SAMs) were investigated with regard to their application as templates to ...
The development of new methods for nanopatterning of metal surfaces is discussed. Self-assembled mol...
Nanomaterials have generated intense interest due to their novel properties which open up numerous o...
The fabrication of multifunctional surface patterns by employing removable metal barrier nanostructu...
The fabrication of multifunctional surface patterns by employing removable metal barrier nanostructu...
The fabrication of multifunctional surface patterns by employing removable metal barrier nanostructu...
Self-assembly is an interesting process both for its biological relevance and because it provides a ...
Beyer A, Godt A, Amin I, et al. Fully cross-linked and chemically patterned self-assembled monolayer...
The self-assembly of molecules into structurally organized monolayers ( S A Ms) uses the flexibility...
The understandings and applications of self-assembly have evolved significantly since the adsorption...
This paper describes the generation of reversible patterns of self-assembled monolayers (SAMs) on go...
A method for preparing surfaces with well-defined nanoscale chemical patterns is described. The fabr...
This paper describes the generation of reversible patterns of self-assembled monolayers (SAMs) on go...
The combination of self-, directed, and positional assembly techniques, i.e., “bottom up” fabricatio...
The use of chemically active surface templates to perform chemical reactions and self-assembly on th...
Self-assembled monolayers (SAMs) were investigated with regard to their application as templates to ...
The development of new methods for nanopatterning of metal surfaces is discussed. Self-assembled mol...
Nanomaterials have generated intense interest due to their novel properties which open up numerous o...