We have used directed two-component self-assembly to "pattern" organic monolayers on the nanometer scale at the liquid/solid interface. The ability of the scanning tunneling microscope to investigate structural details in these adlayers was used to gain insight into the two-component two-dimensional phase behavior. The components are symmetrically alkylated bisurea derivatives (R1-urea-spacer-urea-R2; R1, R2=alkyl, spacer=alkyl or bisthiophene). The bisthiophene unit acts as a marker and its bisurea derivative (T2) is a component in all the mixtures investigated. By varying the position of the hydrogen-bond forming urea groups along the molecule and the length of the alkyl chains of the other components, the effect of 1) hydrogen bonding, 2...
The self-organization of an angular bis(uracil-ethynyl) benzene derivative is investigated on Ag(111...
Supramolecular 2D networks are attracting considerable interest as highly ordered functional materia...
The thesis describes bottom-up approaches towards molecular patterning at the solid-liquid interface...
We have used directed two-component self-assembly to "pattern" organic monolayers on the nanometer s...
We have used directed two-component self-assembly to "pattern" organic monolayers on the nanometer s...
Physisorbed monolayer films of small alkyl-substituted bisurea derivatives based on the structure R1...
In this contribution we report on a structural investigation of the two-dimensional (2D) supramolecu...
Molecules self-assemble on surfaces forming a variety of patterns that depend on the relative streng...
The study of molecular assemblies through the use of SPM is well documented. This thesis examines as...
International audienceThe control over 2-D multi-component molecular orderings on surfaces is a key ...
International audienceIt is of interest to develop two-component systems for added flexibility in th...
The two-dimensional pattern formation of hydrogen bonding isophthalic acid derivatives at the liquid...
In this contribution we report on a structural investigation of the two-dimensional (2D) supramolecu...
We study the formation of four supramolecular bicomponent networks based on four linear modules (lin...
Scanning tunneling microscopy has been used to demonstrate phase segregation in varied composition, ...
The self-organization of an angular bis(uracil-ethynyl) benzene derivative is investigated on Ag(111...
Supramolecular 2D networks are attracting considerable interest as highly ordered functional materia...
The thesis describes bottom-up approaches towards molecular patterning at the solid-liquid interface...
We have used directed two-component self-assembly to "pattern" organic monolayers on the nanometer s...
We have used directed two-component self-assembly to "pattern" organic monolayers on the nanometer s...
Physisorbed monolayer films of small alkyl-substituted bisurea derivatives based on the structure R1...
In this contribution we report on a structural investigation of the two-dimensional (2D) supramolecu...
Molecules self-assemble on surfaces forming a variety of patterns that depend on the relative streng...
The study of molecular assemblies through the use of SPM is well documented. This thesis examines as...
International audienceThe control over 2-D multi-component molecular orderings on surfaces is a key ...
International audienceIt is of interest to develop two-component systems for added flexibility in th...
The two-dimensional pattern formation of hydrogen bonding isophthalic acid derivatives at the liquid...
In this contribution we report on a structural investigation of the two-dimensional (2D) supramolecu...
We study the formation of four supramolecular bicomponent networks based on four linear modules (lin...
Scanning tunneling microscopy has been used to demonstrate phase segregation in varied composition, ...
The self-organization of an angular bis(uracil-ethynyl) benzene derivative is investigated on Ag(111...
Supramolecular 2D networks are attracting considerable interest as highly ordered functional materia...
The thesis describes bottom-up approaches towards molecular patterning at the solid-liquid interface...