Electrochemical growth of Ag2S on Ag(111) electrodes. Coulometric and X-ray photoelectron spectroscopic analysis of the stepwise formation of the first and second monolayers of Ag2S
Jl. Conyers et Hs. White, Electrochemical growth of Ag2S on Ag(111) electrodes. Coulometric and X-ray photoelectron spectroscopic analysis of the stepwise formation of the first and second monolayers of Ag2S, J PHYS CH B, 103(11), 1999, pp. 1960-1965
Stepwise electrochemical growth of the first and second monolayers of Ag2S
at a Ag(1 1 1) electrode in aqueous hydrosulfide (HS-) solutions is reporte
d. The deposition of the first and second monolayers occurs at different el
ectrode potentials and can be resolved in voltammetric experiments prior to
the formation of a bulk Ag2S layer. Oxidative formation of the first Ag2S
monolayer occurs by a kinetically facile two-electron, two-step mechanism,
involving the one-electron oxidative adsorption of HS- (Ag + HS- right arro
w over left arrow Ag - SH + e(-)) followed by a one-electron oxidative phas
e transition to yield a complete Ag2S monolayer (Ag - SH + Ag + OH- right a
rrow over left arrow Ag2S + H2O + e(-)). An irreversible wave corresponding
to the formation of a second monolayer of Ag2S in a single two-electron st
ep (2Ag + HS- + OH- right arrow over left arrow Ag2S + H2O + 2e(-)) is volt
ammetrically resolved at slow scan rates ( < 25 mV/s). Coulometric analysis
of the voltammetric data demonstrates that the quantity of electricity (si
milar to 164 mu C/cm(2)) consumed during the formation of the first and sec
ond monolayers is identical. X-ray photoelecton spectroscopy is used to mon
itor the surface coverage of sulfur as a function of the electrode potentia
l during the successive deposition of the Ag-SH adlayer, the first Ag2S mon
olayer, and the second Ag2S monolayer.