Bipolar nanoimpact transients: Controlling the redox potential of nanoparticles in solution
In the bulk solution phase the electrical potential of a single metallic nanoparticle can be controlled by its local chemical environment. In this work it is demonstrated how this nanoparticle “redox” potential determines—in the case of platinum—the surface functionality of the nanomaterial. Specifi...
Κύριοι συγγραφείς: | Markham, J, Young, NP, Batchelor-McAuley, C, Compton, RG |
---|---|
Μορφή: | Journal article |
Γλώσσα: | English |
Έκδοση: |
American Chemical Society
2020
|
Παρόμοια τεκμήρια
-
Diffusional Nanoimpacts: The Stochastic Limit
ανά: Eloul, S, κ.ά.
Έκδοση: (2015) -
A Critical Evaluation of the Interpretation of Electrocatalytic Nanoimpacts
ανά: Ly, L, κ.ά.
Έκδοση: (2014) -
Quantifying single-carbon nanotube-electrode contact via the nanoimpact method
ανά: Li, X, κ.ά.
Έκδοση: (2017) -
Nanoimpacts reveal the electron-transfer kinetics of the ferrocene/ferrocenium couple immobilised on graphene nanoplatelets
ανά: Wu, H, κ.ά.
Έκδοση: (2016) -
Substrate mediated dissolution of redox active nanoparticles; electron transfer over long distances
ανά: Xie, R-C, κ.ά.
Έκδοση: (2021)