Investigation of the self-accelerating process of ascorbic acid by in-situ circular dichroism spectroelectrochemistry


Autoria(s): Lu YJ; Zhu YC; Cheng GJ; Dong SJ
Data(s)

1999

Resumo

The electrode reaction process of ascorbic (Vc) was studied by in-situ circular dichroic(CD) spectroelectrochemistry with a long optical path thin layer cell on glassy carbon(GC) electrode. The spectroelectrochemical data were analyzed by the double logarithmic method together with nonlinear regression. The results suggested that the mechanism of Ve in pH 7.0 phosphate buffer solution at GC electrode was a two-electron irreversible electrooxidation followed by adsorption of the oxidation product. That is a self-accelerated process. Some kinetic parameters at free and at adsorbed electrode surface, i.e, the formal potentials, E-0' = 0.09 V, E-a(0') = 0.26 +/- 0.02 V; the electron transfer coefficient and number of transfered electron, alpha n = 0.41, alpha(a)n = 0.07;the standard heterogeneous electron transfer rate constant, k(0) = 8.0 x 10(-5) cm.s(-1), k(a)(0) = 1.9 x 10(-4) cm.s(-1) and adsorption constant, beta = 102.6 were also estimated.

Identificador

http://202.98.16.49/handle/322003/21905

http://www.irgrid.ac.cn/handle/1471x/155687

Idioma(s)

中文

Fonte

Lu YJ;Zhu YC;Cheng GJ;Dong SJ.Investigation of the self-accelerating process of ascorbic acid by in-situ circular dichroism spectroelectrochemistry,CHINESE JOURNAL OF ANALYTICAL CHEMISTRY,1999,27(2):153-157

Palavras-Chave #GLASSY-CARBON ELECTRODES #OXIDATION
Tipo

期刊论文