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On the electrochemical behavior of the Pt(1 0 0) vicinal surfaces in bromide solutions

On the electrochemical behavior of the Pt(1 0 0) vicinal surfaces in bromide solutions
On the electrochemical behavior of the Pt(1 0 0) vicinal surfaces in bromide solutions
The electrochemical behavior of the stepped electrodes vicinal to the Pt(1 0 0) surface in bromide containing solutions has been studied by cyclic voltammetry, STM and the CO displacement method. The studied electrodes belong to the [0 1 1?] and [0 0 1] zones, which nominally have n atom-wide terraces with (1 0 0) symmetry and (1 1 1) or (1 0 0) monoatomic steps, respectively. The voltammetric behavior of these electrodes indicates that the processes on the terrace sites, namely hydrogen and bromide competitive adsorption/desorption take place in a peak centered at 0.19 V, whereas the processes on the step sites occur at potentials below 0.15 V. The STM images obtained after the flame annealing treatment indicate that the electrodes with (1 1 1) steps have a surface topography that corresponds to the nominal structure. On the other hand, the electrodes with (1 0 0) steps appear to be reconstructed, with terrace edges having a zigzag shape. The adsorbed bromide arranges in a c(2 × 2) structure on the (1 0 0) terraces. The CO displacement method has allowed estimating the pztc (potential of zero total charge) for the surfaces. The variation of the pztc is much smaller than that found in other electrolyte solutions, due to the high pseudocapacity of the hydrogen/bromide adsorption processes on the terrace. The total charge at different potentials has been compared to the values predicted from the hard-sphere model. For the electrodes with (1 1 1) steps, the experimental values agree with the model, which facilitates the understanding of the general behavior of these surfaces.
0039-6028
269-284
Garcia-Araez, Nuria
9358a0f9-309c-495e-b6bf-da985ad81c37
Climent, Vı́ctor
ceaa44b0-d965-4ae2-a1f9-31c1613230f7
Herrero, Enrique
96568627-6e11-4e5a-9021-e9dcc45b80c2
Feliu, Juan M.
f2a5301a-2886-4f27-b614-99a74a0a9a28
Garcia-Araez, Nuria
9358a0f9-309c-495e-b6bf-da985ad81c37
Climent, Vı́ctor
ceaa44b0-d965-4ae2-a1f9-31c1613230f7
Herrero, Enrique
96568627-6e11-4e5a-9021-e9dcc45b80c2
Feliu, Juan M.
f2a5301a-2886-4f27-b614-99a74a0a9a28

Garcia-Araez, Nuria, Climent, Vı́ctor, Herrero, Enrique and Feliu, Juan M. (2004) On the electrochemical behavior of the Pt(1 0 0) vicinal surfaces in bromide solutions. Surface Science, 560 (1-3), 269-284. (doi:10.1016/j.susc.2004.04.051).

Record type: Article

Abstract

The electrochemical behavior of the stepped electrodes vicinal to the Pt(1 0 0) surface in bromide containing solutions has been studied by cyclic voltammetry, STM and the CO displacement method. The studied electrodes belong to the [0 1 1?] and [0 0 1] zones, which nominally have n atom-wide terraces with (1 0 0) symmetry and (1 1 1) or (1 0 0) monoatomic steps, respectively. The voltammetric behavior of these electrodes indicates that the processes on the terrace sites, namely hydrogen and bromide competitive adsorption/desorption take place in a peak centered at 0.19 V, whereas the processes on the step sites occur at potentials below 0.15 V. The STM images obtained after the flame annealing treatment indicate that the electrodes with (1 1 1) steps have a surface topography that corresponds to the nominal structure. On the other hand, the electrodes with (1 0 0) steps appear to be reconstructed, with terrace edges having a zigzag shape. The adsorbed bromide arranges in a c(2 × 2) structure on the (1 0 0) terraces. The CO displacement method has allowed estimating the pztc (potential of zero total charge) for the surfaces. The variation of the pztc is much smaller than that found in other electrolyte solutions, due to the high pseudocapacity of the hydrogen/bromide adsorption processes on the terrace. The total charge at different potentials has been compared to the values predicted from the hard-sphere model. For the electrodes with (1 1 1) steps, the experimental values agree with the model, which facilitates the understanding of the general behavior of these surfaces.

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Published date: 1 July 2004
Organisations: Electrochemistry

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Local EPrints ID: 346021
URI: http://eprints.soton.ac.uk/id/eprint/346021
ISSN: 0039-6028
PURE UUID: bebb9a29-ebc8-4164-a3ae-655b530b4169
ORCID for Nuria Garcia-Araez: ORCID iD orcid.org/0000-0001-9095-2379

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Date deposited: 07 Dec 2012 15:11
Last modified: 15 Mar 2024 03:46

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Author: Vı́ctor Climent
Author: Enrique Herrero
Author: Juan M. Feliu

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