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Fundamental harmonic a.c. polarography with irreversible dimerization following the charge transfer step

Identifieur interne : 004953 ( Main/Merge ); précédent : 004952; suivant : 004954

Fundamental harmonic a.c. polarography with irreversible dimerization following the charge transfer step

Auteurs : John W. Hayes [États-Unis] ; Ivica Rui [États-Unis] ; Donald E. Smith [États-Unis] ; Glenn L. Booman [États-Unis] ; Joseph R. Delmastro [États-Unis]

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RBID : ISTEX:3243D3CB9010B609ECA468A925AD58C5AE7A5970

Abstract

A theoretical and experimental study is presented for the small amplitude fundamental harmonic a.c. polarographic response with systems involving dimerization following the charge transfer step. The theoretical derivation invokes the procedure recently presented for the disproportionation case, which combines numerical methods with conventional functional analysis procedures. Computer programs were developed which provide the option of calculating the a.c. polarographic response on the basis of various commonly-used models for the DME, including the expanding sphere model. The electrode reduction of benzaldehyde in alkaline aqueous ethanol is employed as a model system in an experimental evaluation of the theoretical equations. Excellent agreement is obtained between predictions of the theoretical a.c. polarographic rate law and experimental results.

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DOI: 10.1016/S0022-0728(74)80244-5

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ISTEX:3243D3CB9010B609ECA468A925AD58C5AE7A5970

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<div type="abstract" xml:lang="en">A theoretical and experimental study is presented for the small amplitude fundamental harmonic a.c. polarographic response with systems involving dimerization following the charge transfer step. The theoretical derivation invokes the procedure recently presented for the disproportionation case, which combines numerical methods with conventional functional analysis procedures. Computer programs were developed which provide the option of calculating the a.c. polarographic response on the basis of various commonly-used models for the DME, including the expanding sphere model. The electrode reduction of benzaldehyde in alkaline aqueous ethanol is employed as a model system in an experimental evaluation of the theoretical equations. Excellent agreement is obtained between predictions of the theoretical a.c. polarographic rate law and experimental results.</div>
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