The charge transfer kinetics of the oxidation of silver and nickel nanoparticles via particle-electrode impact electrochemistry.
The electro-oxidation of silver and nickel nanoparticles in aqueous solution was studied via their collisions with a carbon electrode. The average charge passed per impact varies with electrode potential and was analysed to determine that AgNPs display an electrochemically fast ("reversible&quo...
Main Authors: | Zhou, Y, Haddou, B, Rees, N, Compton, R |
---|---|
Formato: | Journal article |
Idioma: | English |
Publicado em: |
2012
|
Registos relacionados
-
Determining unknown concentrations of nanoparticles: the particle-impact electrochemistry of nickel and silver
Por: Stuart, E, et al.
Publicado em: (2012) -
Nanoparticle-electrode impacts: the oxidation of copper nanoparticles has slow kinetics.
Por: Haddou, B, et al.
Publicado em: (2012) -
Electrochemistry of nickel nanoparticles is controlled by surface oxide layers.
Por: Zhou, Y, et al.
Publicado em: (2013) -
The inherent electrochemistry of nickel/nickel-oxide nanoparticles
Por: Giovanni, Marcella, et al.
Publicado em: (2013) -
Silver nanoparticle detection in real-world environments via particle impact electrochemistry
Por: Li, X, et al.
Publicado em: (2019)