Artículo

El editor solo permite decargar el artículo en su versión post-print desde el repositorio. Por favor, si usted posee dicha versión, enviela a
Consulte el artículo en la página del editor
Consulte la política de Acceso Abierto del editor

Abstract:

A novel methodology for electrode kinetic studies is proposed by altering either the amplitude, ESW, or the frequency, f, of a Square wave voltammetry (SWV) experiment. The apparent standard rate constant, k0, of a surface electrode reaction can be easily determined by using a relationship between the logarithm of the characteristic dimensionless kinetic parameter, k0/2f, and the peak potential separation observed in a SW voltammogram, ΔEP. It is shown that it is possible to relate the function Ωn,α = ln(k0/2f) to the peak separation provided that the number of exchanged electrons, n, and the transfer coefficient, α, involved in the electrochemical reaction are known. Two regions are defined when the dependence of Ωn,α on ESW is analized: the amplitude dependent region, ADR, where │ΔEP│< 0.090 V/n, and the non amplitude dependent region, NAD, for higher │ΔEP│values. A unique function Ωn,α is defined for each one of these regions thus providing an extremely easy way for obtaining the apparent standard surface rate constant. Up to now, the methodology here proposed and the so called “potential-corrected SW voltammograms” method, constitute the alternatives for electro kinetic studies based on the measurement of the peak separation generated by SWV. © 2016

Registro:

Documento: Artículo
Título:Advanced analysis for electrode kinetic studies of surface reactions by applying square-wave voltammetry
Autor:Bonazzola, C.; Gordillo, G.
Filiación:Ciclo Básico Común, Universidad de Buenos Aires, Buenos Aires, Argentina
Departamento de Química Inorgánica, Analítica y Química Física, Facultad de Ciencias Exactas y Naturales, INQUIMAE, Universidad de Buenos Aires, Pabellón 2, Ciudad Universitaria, Buenos Aires, AR-1428, Argentina
Palabras clave:Square-wave Amplitude; Square-wave voltammetry; Standard rate constant; Surface confined electrode reaction; Electrodes; Kinetic theory; Kinetics; Rate constants; Separation; Surface reactions; Electrochemical reactions; Electrode kinetics; Electrode reactions; Square wave voltammetry; Square waves; Standard rate constant; Surface electrode reactions; Transfer coefficient; Voltammetry
Año:2016
Volumen:213
Página de inicio:613
Página de fin:619
DOI: http://dx.doi.org/10.1016/j.electacta.2016.07.137
Título revista:Electrochimica Acta
Título revista abreviado:Electrochim Acta
ISSN:00134686
CODEN:ELCAA
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_00134686_v213_n_p613_Bonazzola

Referencias:

  • Carvalho, A.M., Goncalves, L.M., Valente, I.M., Rodrigues, J.A., Barros, A.A., (2012) Phytochem. Anal., 23 (4), pp. 396-399
  • Komorsky-Lovric, S., Novak, I.J., (2011) Food Sci., 76 (6), pp. C916-C920
  • Guziejewski, D., Skrzypek, S., Ciesielski, W., (2012) Food Anal. Method., 5 (3), pp. 373-380
  • Tian, X., Cheng, C., Yuan, H., Du, J., Xiao, D., Xie, S., Choi, M.M., (2012) Talanta, 93, pp. 79-85
  • Amare, M., Admassie, S., (2012) Talanta, 93, pp. 122-128
  • Guzman-Vazquez de Prada, A., Loaiza, O.A., Serra, B., Morales, D., Martinez-Ruiz, P., Reviejo, A.J., Pingarron, J.M., (2007) Anal. Bioanal. Chem., 388 (1), pp. 227-234
  • Galeano-Diaz, T., Guiberteau-Gabanillas, A., Espinoza-Mansilla, A., Lopez-Soto, M.D., (2008) Anal. Chim. Acta, 618 (2), pp. 131-139
  • Jia, L., Zhang, X.-H., Li, Q., Wang, S.-F.J., (2007) Anal. Chem., 62 (3), pp. 266-269
  • Dogan-Topal, B., Ozkan, S.A., Uslu, B., (2010) The Open Chemical and Biomedical Methods Journal, 3, pp. 56-73
  • Mirceski, V., Komorsky-Lovric, S., Lovric, M., Square-waveVoltammetry: Theory and Applications (2007), F. Scholz Springer Heidelberg; Laborda, E., Molina, A., Li, Q., Batchelor-McAuley, C., Compton, R.G., (2012) Phys. Chem. Chem. Phys., 14 (23), pp. 8319-8327
  • Molina, A., Gonzalez, J., Laborda, E., Wang, Y., Compton, R.G., (2011) Phys. Chem. Chem. Phys., 13 (37), pp. 16748-16755
  • Gonzalez, J., Molina, A., Martinez Ortiz, F., Laborda, E.J., (2012) Phys. Chem. C, 116 (20), pp. 11206-11215
  • Molina, A., Laborda, E., Martinez-Ortiz, F., Bradley, D.F., Schiffrin, D.J., Compton, R.G.J., (2011) Electroanal. Chem., 659 (1), pp. 12-24
  • Wang, Y., Laborda, E., Henstridge, M.C., Martinez-Ortiz, F., Molina, A., Compton, R.G.J., (2012) Electroanal. Chem., 668, pp. 7-12
  • Mirceski, V., Hocevar, S.B., Ogorevc, B., Gulaboski, R., Drangov, I., (2012) Anal. Chem., 84 (10), pp. 4429-4436
  • Komorsky-Lovric, S., Lovric, M., (2012) Electrochim. Acta, 69, pp. 60-64
  • Komorsky-Lovric, S., Lovric, M.J., (2011) Electroanal. Chem., 660, pp. 22-25
  • Gulaboski, R.J., (2009) Solid State Electrochem., 13 (7), pp. 1015-1024
  • Mirceski, V., Quentel, F., L'Her, M., Elleouet, C.J., (2007) Phys. Chem. C, 111 (23), pp. 8283-8290
  • Mirceski, V., Skrzypek, S., Lovric, M., (2009) Electroanalysis, 21 (1), pp. 87-95
  • Bond, A.M., Hill, H.A.O., Komorsky-Lovric, S., Lovric, M., McCarthy, M.E., Psalti, I.S.M., Walton, N.J.J., (1992) Phys. Chem., 96 (20), pp. 8100-8105
  • Lovric, M., Komorsky-Lovric, S., Bond, A.M.J., (1991) Electroanal. Chem., 319, pp. 1-18
  • Komorsky-Lovric, S., Lovric, M., Bond, A.M., (1992) Anal. Chim. Acta, 258 (2), pp. 299-305
  • Wang, L., Chen, H., Huang, X., Nan, J., (2009) Electroanalysis, 21 (6), pp. 755-761
  • Gulaboski, R., Lovric, M., Mirceski, V., Bogeski, I., Hoth, M., (2008) Biophys. Chem., 137 (1), pp. 49-57
  • Catunda, F.E.A., Jr., de Araujo, M.F., Granero, A.M., Arevalo, F.J., de Carvalho, M.G., Zon, M.A., Fernandez, H., (2011) Electrochim. Acta, 56 (27), pp. 9707-9713
  • Deng, H., Huang, X., Wang, L., Tang, A., (2009) Electrochem. Commun., 11 (6), pp. 1333-1336
  • Mirceski, V., Guziejewski, D., Lisichkov, K., (2013) Electrochimica Acta, 114, pp. 667-673
  • Mirceski, V., Lovric, M., (1997) Electroanalysis, 9 (16), pp. 1283-1287
  • KomorskyLovric, S., Nigovic, B., (2005) Croatica Chemica Acta, 78 (1), pp. 85-90
  • Reeves, J.H., Song, S., Bowden, E.F., (1993) Anal. Chem., 65, pp. 683-688
  • Bonazzola, C., Gordillo, G., (2007) Journal of Electroanalytical Chemistry, 599, pp. 356-366
  • Chambers, J.Q., In The Chemistry of the Quinonoid Compounds (1974), S. Patai John Wiley New York; Laviron, E., (1984) J. Electroanal. Chem., 164, pp. 213-227
  • Gordillo, G.J., Schiffrin, D.J., (1994) J. Chem. Soc. Faraday Trans., 90 (13), pp. 1913-1922
  • Molina, A., González, J., Pulse Voltammetry in Physical Electrochemistry and Electroanalysis, Theory and Applications (2016), F. Scholz Springer International Publishing Switzerland; Mirceski, V., Laborda, E., Guziejewski, D., Compton, R.G., (2013) Anal. Chem., 85, pp. 5586-5594
  • Mirceski, V., Gulaboski, R., Lovric, M., Bogeski, I., Kappl, R., Hoth, M., (2013) Electroanalysis, 25 (11), pp. 2411-2422

Citas:

---------- APA ----------
Bonazzola, C. & Gordillo, G. (2016) . Advanced analysis for electrode kinetic studies of surface reactions by applying square-wave voltammetry. Electrochimica Acta, 213, 613-619.
http://dx.doi.org/10.1016/j.electacta.2016.07.137
---------- CHICAGO ----------
Bonazzola, C., Gordillo, G. "Advanced analysis for electrode kinetic studies of surface reactions by applying square-wave voltammetry" . Electrochimica Acta 213 (2016) : 613-619.
http://dx.doi.org/10.1016/j.electacta.2016.07.137
---------- MLA ----------
Bonazzola, C., Gordillo, G. "Advanced analysis for electrode kinetic studies of surface reactions by applying square-wave voltammetry" . Electrochimica Acta, vol. 213, 2016, pp. 613-619.
http://dx.doi.org/10.1016/j.electacta.2016.07.137
---------- VANCOUVER ----------
Bonazzola, C., Gordillo, G. Advanced analysis for electrode kinetic studies of surface reactions by applying square-wave voltammetry. Electrochim Acta. 2016;213:613-619.
http://dx.doi.org/10.1016/j.electacta.2016.07.137