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State of adsorption and coverage by overpotential-deposited H in the H2 evolution reaction at Au and Pt

โœ Scribed by B.E. Conway; L. Bai


Publisher
Elsevier Science
Year
1986
Tongue
English
Weight
931 KB
Volume
31
Category
Article
ISSN
0013-4686

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โœฆ Synopsis


By means of potential decay measurements using a digital data acquisition and computer processing system, accurate values of overpotential decay rates, drt/dt, may be obtained from which the pseudocapacitance and coverage behaviour of overpotential-deposited (OPD) H species in the cathodic Hs evolution reaction (HER) at Au electrodes may be quantitatively derived as a function of n. The behaviour of the HER at Au is of interest in that an unusual Tafel slope value of 2.3RT/F is exhibited in acid solution while the value for alkaline solutions is the more familiar value of co 2.32RT/F. Analysis of the overpotential relaxation behaviour on open-circuit, following interruption of cathodic polarization currents, gives an almost constant and small interfacial capacitance corresponding to a doublelayer capacitance. Steady-state OPD H coverage (0) is hence quite small (9, -c 0.3 %). The Tafel slope value of 2.3RTjF requires, however, a potential-dependent H coverage determined by an H electrosorption step almost at equilibrium but with 13, small. The rate-determining step is suggested to be surface diffusion to preferred desorption sites.

Comparative results are presented for the HER at activated Pt where, contrary to the hehaviour of Au, a large pseudocapacitance for OPD H is derived that may be associated with some surface hydride formation, the possibility of readsorption of H from a boundary layer supersaturated with H, having been minimized by electrode rotation at a sufficiently high rate of 3600 rpm.


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