Organically capped metal nanoparticles are an attractive alternative to more conventional oxide-passivated materials, due to the lower reaction temperatures and the possibility of tuning the organic coating. Sonochemical methods have been used to produce small (∼5 nm average size) air-stable aluminum nanoparticles capped with oleic acid. In order to understand the nature of the metal−organic bonding in the nanoparticles, we have used FTIR, XPS, and TOFMS−TPD techniques to study the organic passivation layer and its desorption at elevated temperatures. In the present case we find that the organic layer appears to be attached via Al−O−C bonds with the C atom formerly involved in the carboxylic acid functional group
Results of the comprehensive characterisation of electro-exploded aluminum nanopowders, passivated w...
Aluminum nanoparticles synthesized by titanium (IV) isopropoxide-initiated decomposition of alane ha...
We have produced passivating coatings on 80-nm aluminum particles by plasma-enhanced chemical vapor ...
Using sonochemistry to provide the thermal energy and mixing, we demonstrate the ability to synthesi...
This study offers an remarkable example of the ability to synthesize and tune the reactivity of Alum...
We report here on the synthesis and passivation of small (20−30 nm) aluminum nanoparticles using alk...
Aluminum nanoparticles (AlNPs) have applications in small-scale hydrogen production & high-densi...
Aluminum nanoparticles have been a subject of active investigation in recent years because of their ...
Supplementary information files for 'Synthesis and properties of stable sub-2-nm-thick aluminum nano...
The carboxylation of alumina nanoparticles (NPs), with bifunctional carboxylic acids, provides molec...
Results of DTA-TG-investigations and chemical analysis of electro-exploded aluminum nanopowders, coa...
Aluminum nanoparticles (n-Al) have been considered as promising fuel for incorporation in propellant...
Passivated aluminum nanoparticles are surface functionalized to elucidate their sensitivity against ...
We report on the synthesis of air-stable aluminum nanoparticles (Al NPs) capped with 1,2-epoxy-9-dec...
Spherical shaped nano-size aluminium oxide and its hybrids with indole and indole derivatives have b...
Results of the comprehensive characterisation of electro-exploded aluminum nanopowders, passivated w...
Aluminum nanoparticles synthesized by titanium (IV) isopropoxide-initiated decomposition of alane ha...
We have produced passivating coatings on 80-nm aluminum particles by plasma-enhanced chemical vapor ...
Using sonochemistry to provide the thermal energy and mixing, we demonstrate the ability to synthesi...
This study offers an remarkable example of the ability to synthesize and tune the reactivity of Alum...
We report here on the synthesis and passivation of small (20−30 nm) aluminum nanoparticles using alk...
Aluminum nanoparticles (AlNPs) have applications in small-scale hydrogen production & high-densi...
Aluminum nanoparticles have been a subject of active investigation in recent years because of their ...
Supplementary information files for 'Synthesis and properties of stable sub-2-nm-thick aluminum nano...
The carboxylation of alumina nanoparticles (NPs), with bifunctional carboxylic acids, provides molec...
Results of DTA-TG-investigations and chemical analysis of electro-exploded aluminum nanopowders, coa...
Aluminum nanoparticles (n-Al) have been considered as promising fuel for incorporation in propellant...
Passivated aluminum nanoparticles are surface functionalized to elucidate their sensitivity against ...
We report on the synthesis of air-stable aluminum nanoparticles (Al NPs) capped with 1,2-epoxy-9-dec...
Spherical shaped nano-size aluminium oxide and its hybrids with indole and indole derivatives have b...
Results of the comprehensive characterisation of electro-exploded aluminum nanopowders, passivated w...
Aluminum nanoparticles synthesized by titanium (IV) isopropoxide-initiated decomposition of alane ha...
We have produced passivating coatings on 80-nm aluminum particles by plasma-enhanced chemical vapor ...