Platinum nanoparticles have here been synthesized via the microemulsion method that isolates the reactive species from the whole medium into compartmentalized nanoreactors. Such synthesized Pt nanoparticles have diam. included in the 2-5 nm range domain with narrow size distribution. It was also shown that, when deposited on Boron-Doped Diamond electrode and stabilized by a Nafion adlayer, microemulsion-synthesized Pt nanoparticles can be activated by OH radicals electrogenerated on BDD at high overpotentials. Activated nanoparticles has exhibited higher activity towards methanol electrooxidn., due to both addnl. cleaning of the surface and participation of the radicals to the oxidn. process. [on SciFinder (R)
Diamond in nanoparticle form is a promising material that can be used as a robust and chemically sta...
A series of Pt/C catalysts with controlled Pt particle sizes is synthesized using a surfactant-free ...
The increasing number of applications for shape-controlled metal nanoparticles (NPs) has led to the ...
Pt nanoparticles were synthesized by the H2O-in-oil (w/o) microemulsion technique and deposited onto...
Metal and metal oxide particles and nanoparticles, differing from each other by their nature and syn...
The preparation of nanostructured diamond electrodes, decorated with Pt nanoparticles is described i...
The preparation of nanostructured diamond electrodes, decorated with Pt nanoparticles is described i...
The electrodeposition of Pt-PrO 2-x nanostructures on boron-doped diamond e...
Nanoporous platinum nanoparticles (NPs) have been proposed as promising electrocatalytic materials. ...
Nanoporous platinum nanoparticles (NPs) have been proposed as promising electrocatalytic materials. ...
Preparation of monodispersed platinum nanoparticles with average size 2.0 nm stabilized by amino-ter...
The electrocatalytic reactivity of Pt nanoparticles supported on high-pressure, high-temperature dia...
Heavily boron-doped diamond electrode has been applied as a robust substrate for Pt based catalyst. ...
Since few decades the search of new catalysts formulations for fuel cell applications has motivated ...
Platinum nanoparticles were deposited on polished smooth, as-grown large grain and small grain diamo...
Diamond in nanoparticle form is a promising material that can be used as a robust and chemically sta...
A series of Pt/C catalysts with controlled Pt particle sizes is synthesized using a surfactant-free ...
The increasing number of applications for shape-controlled metal nanoparticles (NPs) has led to the ...
Pt nanoparticles were synthesized by the H2O-in-oil (w/o) microemulsion technique and deposited onto...
Metal and metal oxide particles and nanoparticles, differing from each other by their nature and syn...
The preparation of nanostructured diamond electrodes, decorated with Pt nanoparticles is described i...
The preparation of nanostructured diamond electrodes, decorated with Pt nanoparticles is described i...
The electrodeposition of Pt-PrO 2-x nanostructures on boron-doped diamond e...
Nanoporous platinum nanoparticles (NPs) have been proposed as promising electrocatalytic materials. ...
Nanoporous platinum nanoparticles (NPs) have been proposed as promising electrocatalytic materials. ...
Preparation of monodispersed platinum nanoparticles with average size 2.0 nm stabilized by amino-ter...
The electrocatalytic reactivity of Pt nanoparticles supported on high-pressure, high-temperature dia...
Heavily boron-doped diamond electrode has been applied as a robust substrate for Pt based catalyst. ...
Since few decades the search of new catalysts formulations for fuel cell applications has motivated ...
Platinum nanoparticles were deposited on polished smooth, as-grown large grain and small grain diamo...
Diamond in nanoparticle form is a promising material that can be used as a robust and chemically sta...
A series of Pt/C catalysts with controlled Pt particle sizes is synthesized using a surfactant-free ...
The increasing number of applications for shape-controlled metal nanoparticles (NPs) has led to the ...