Lamellar patterns resulting from the adsorption of <i>p</i>-dialkoxybenzene derivatives on HOPG have been investigated as molecular templates for directing the assembly of thiol-capped gold nanoparticles (AuNP). STM characterization at the liquid–solid interface reveals the periodic arrangement of AuNP on top of the self-assembled molecular network (SAMN), spanning hundreds of nanometers. The resulting superlattices are notably different from the close-packed structures formed by spherical nanoparticles during evaporative drying. The templating effect is based on van der Waals interactions of the alkyl chains of the SAMN and AuNP, and the assembly efficiency is greatest when these chains are of similar length
Size-selective organization of ∼2 nm dodecanethiol stabilized gold nanoparticles (AuNPs) into period...
The kinetics and mechanism for the solution-phase adsorption of n-alkanethiols onto gold to form sel...
The authors have investigated the formation of 2-D and 3-D superlattices of Au nanoclusters synthesi...
The ability to assemble nanoparticles (NPs) into desired patterns in a controlled fashion is crucial...
We demonstrate a universal approach to assemble gold nanoparticles (AuNPs) into ordered robust nanos...
Active research of supramolecular chemistry on surfaces started together with the invention of the s...
This article describes a simple method for controlling the assembly of gold nanoparticles (Au NPs) i...
Gold nanoparticles stabilized by two novel bifunctional fluorenyl thiols, generated in situ from 9,9...
We present results from a study of the deposition of synthesized dodecanethiol capped gold clusters ...
Pd(II) pincer adsorbate molecules () were inserted into self-assembled monolayers (SAMs) of alkaneth...
We prepare and investigate two-dimensional (2D) single-layer arrays and multilayered networks of gol...
Controlled assembly is the key to harness the nanoscale properties of nanoparticles in most technolo...
Thiol molecules adsorbed on gold became a model system for molecular self-assembly on metal substrat...
An interesting formation of linear assembly of hexadecanethiol coated gold nanoparticles is demonstr...
International audienceSelf-Assembled Monolayers (SAM) on Au(111) are able to control the functionali...
Size-selective organization of ∼2 nm dodecanethiol stabilized gold nanoparticles (AuNPs) into period...
The kinetics and mechanism for the solution-phase adsorption of n-alkanethiols onto gold to form sel...
The authors have investigated the formation of 2-D and 3-D superlattices of Au nanoclusters synthesi...
The ability to assemble nanoparticles (NPs) into desired patterns in a controlled fashion is crucial...
We demonstrate a universal approach to assemble gold nanoparticles (AuNPs) into ordered robust nanos...
Active research of supramolecular chemistry on surfaces started together with the invention of the s...
This article describes a simple method for controlling the assembly of gold nanoparticles (Au NPs) i...
Gold nanoparticles stabilized by two novel bifunctional fluorenyl thiols, generated in situ from 9,9...
We present results from a study of the deposition of synthesized dodecanethiol capped gold clusters ...
Pd(II) pincer adsorbate molecules () were inserted into self-assembled monolayers (SAMs) of alkaneth...
We prepare and investigate two-dimensional (2D) single-layer arrays and multilayered networks of gol...
Controlled assembly is the key to harness the nanoscale properties of nanoparticles in most technolo...
Thiol molecules adsorbed on gold became a model system for molecular self-assembly on metal substrat...
An interesting formation of linear assembly of hexadecanethiol coated gold nanoparticles is demonstr...
International audienceSelf-Assembled Monolayers (SAM) on Au(111) are able to control the functionali...
Size-selective organization of ∼2 nm dodecanethiol stabilized gold nanoparticles (AuNPs) into period...
The kinetics and mechanism for the solution-phase adsorption of n-alkanethiols onto gold to form sel...
The authors have investigated the formation of 2-D and 3-D superlattices of Au nanoclusters synthesi...