Nanoscale structural cavities in ionomer membrane films were used as templates for the facile synthesis of small aluminum nanoparticles via catalytic decomposition of an alane precursor. The loading of reactive aluminum in the composite film could be varied, up to more than half of the film weight. While the embedded nanoparticles were protected by the membrane structure from any significant oxidation for the composite films to exhibit surprising stability in ambient air, they could be fully accessed in base water for the hydrogen production quantitatively. The templated synthesis may represent a new route for stable aluminum nanoparticles and related energetic nanomaterials
The development of technologies that would lead toward the adoption of a hydrogen economy requires r...
A method is described for activation of the reaction of room temperature water with micron-scale alu...
A mechanochemical synthesis process has been used to synthesise aluminium nanoparticles. The alumini...
Nanoscale structural cavities in ionomer membrane films were used as templates for the facile synthe...
This study offers an remarkable example of the ability to synthesize and tune the reactivity of Alum...
The wet-chemical synthesis of aluminum nanoparticles was investigated systematically by using dimeth...
Copper contamination is a serious ecological and human health hazard. Therefore, a multifunctional/s...
© 2017 Hydrogen Energy Publications LLC. Aluminium hydride (AlH3) is a promising hydrogen storage ma...
Aerosols are facile and convenient methods for preparing many types of materials. Ultrasonic spray p...
Aluminum nanoparticles (AlNPs) have applications in small-scale hydrogen production & high-densi...
Abstract only availableEnergetic materials are defined as substances in which fuel and oxidizer reac...
The effect of the method of aluminum nanopowder production on the aluminum products with water react...
The synthesis of THF coordinated aluminium nanoparticles by the solvated metal atom dispersion (SMAD...
We report on the synthesis of air-stable aluminum nanoparticles (Al NPs) capped with 1,2-epoxy-9-dec...
The synthesis of THF coordinated aluminium nanoparticles by the solvated metal atom dispersion (SMAD...
The development of technologies that would lead toward the adoption of a hydrogen economy requires r...
A method is described for activation of the reaction of room temperature water with micron-scale alu...
A mechanochemical synthesis process has been used to synthesise aluminium nanoparticles. The alumini...
Nanoscale structural cavities in ionomer membrane films were used as templates for the facile synthe...
This study offers an remarkable example of the ability to synthesize and tune the reactivity of Alum...
The wet-chemical synthesis of aluminum nanoparticles was investigated systematically by using dimeth...
Copper contamination is a serious ecological and human health hazard. Therefore, a multifunctional/s...
© 2017 Hydrogen Energy Publications LLC. Aluminium hydride (AlH3) is a promising hydrogen storage ma...
Aerosols are facile and convenient methods for preparing many types of materials. Ultrasonic spray p...
Aluminum nanoparticles (AlNPs) have applications in small-scale hydrogen production & high-densi...
Abstract only availableEnergetic materials are defined as substances in which fuel and oxidizer reac...
The effect of the method of aluminum nanopowder production on the aluminum products with water react...
The synthesis of THF coordinated aluminium nanoparticles by the solvated metal atom dispersion (SMAD...
We report on the synthesis of air-stable aluminum nanoparticles (Al NPs) capped with 1,2-epoxy-9-dec...
The synthesis of THF coordinated aluminium nanoparticles by the solvated metal atom dispersion (SMAD...
The development of technologies that would lead toward the adoption of a hydrogen economy requires r...
A method is described for activation of the reaction of room temperature water with micron-scale alu...
A mechanochemical synthesis process has been used to synthesise aluminium nanoparticles. The alumini...