Functionalized gold and silver nanoparticles have been prepared and characterized by means of spectroscopic and morphological techniques together focused on electrical measurements on cast deposited films. The Au and Ag nanoparticles have been functionalized with a on purpose prepared conjugated dithiol, 9,9-didodecyl-2,7-bis-thiofluorene (FL), giving rise to organic solvents soluble AuNPs-FL and AgNPs-FL samples, respectively. In the case of AuNPs-FL, well separated nanoparticles, with an average size of about 4 nm, assembled into bidimensionally monolayer network and with regular spatial distributions have been observed by TEM. Synchrotron radiation-XPS data support the observed network formation, showing that all bifunctional ligands end...
Gold–thiol self-assembly is a widely employed strategy for engineering electronic devices using mole...
Over the years many techniques have been proposed for the purpose of the formation of electrically c...
Gold, silver, and other nanoclusters protected by a monolayer of monothiolate or dithiolate ligand c...
Functionalized gold and silver nanoparticles have been prepared and characterized by means of spectr...
In this work gold and silver nanoparticles (AuNPs and AgNPs) , functionalized w...
For the development of new generation portable electronic devices, the realization of thin and flexi...
Organic materials and blends have received a great deal of interests for application in large area, ...
Gold nanoparticles may be used as an element in fabricating numerous nanoelectronic devices. In this...
In this work commercially available bifunctional organic dithiols, 4,4′-dithiol-biphenyl (BI), 4,4′-...
Gold nanoparticles stabilized by two novel bifunctional fluorenyl thiols, generated in situ from 9,9...
Gold nanoparticles stabilized by two novel bifunctional fluorenyl thiols, generated in situ from 9,9...
Assemblies of gold nanoparticles (nominal 20 nm in diameter) and poly-(diallyldimethylammonium chlor...
International audienceSurface-modified nanoparticles are increasingly studied for their potential ap...
International audienceTwo new thiol compounds with σ−π−σ structure were synthesized and self-assembl...
Short time immobilization of densely packed tetraoctylammonium bromide (TOAB) stabilized gold nanopa...
Gold–thiol self-assembly is a widely employed strategy for engineering electronic devices using mole...
Over the years many techniques have been proposed for the purpose of the formation of electrically c...
Gold, silver, and other nanoclusters protected by a monolayer of monothiolate or dithiolate ligand c...
Functionalized gold and silver nanoparticles have been prepared and characterized by means of spectr...
In this work gold and silver nanoparticles (AuNPs and AgNPs) , functionalized w...
For the development of new generation portable electronic devices, the realization of thin and flexi...
Organic materials and blends have received a great deal of interests for application in large area, ...
Gold nanoparticles may be used as an element in fabricating numerous nanoelectronic devices. In this...
In this work commercially available bifunctional organic dithiols, 4,4′-dithiol-biphenyl (BI), 4,4′-...
Gold nanoparticles stabilized by two novel bifunctional fluorenyl thiols, generated in situ from 9,9...
Gold nanoparticles stabilized by two novel bifunctional fluorenyl thiols, generated in situ from 9,9...
Assemblies of gold nanoparticles (nominal 20 nm in diameter) and poly-(diallyldimethylammonium chlor...
International audienceSurface-modified nanoparticles are increasingly studied for their potential ap...
International audienceTwo new thiol compounds with σ−π−σ structure were synthesized and self-assembl...
Short time immobilization of densely packed tetraoctylammonium bromide (TOAB) stabilized gold nanopa...
Gold–thiol self-assembly is a widely employed strategy for engineering electronic devices using mole...
Over the years many techniques have been proposed for the purpose of the formation of electrically c...
Gold, silver, and other nanoclusters protected by a monolayer of monothiolate or dithiolate ligand c...