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South African Journal of Chemistry

versión On-line ISSN 1996-840X
versión impresa ISSN 0379-4350

S.Afr.j.chem. (Online) vol.62  Durban  2009

 

RESEARCH ARTICLE

 

Glass electrode calibration for use in the voltammetric determination of stability constants under extreme acidic conditions

 

 

Caren BillingI; Ignacy CukrowskiII

ISchool of Chemistry, University of the Witwatersrand, P. O. Wits, Johannesburg 2050, South Africa
IIDepartment of Chemistry, University of Pretoria, Pretoria 0002, South Africa

 

 


ABSTRACT

A glass electrode (GE) can be successfully employed to measure pH in the study of metal-ligand equilibria by voltammetry at extremely low pH (between 0 and 2); two consecutive strong acid-strong base titrations involving different base concentrations (recommended to avoid corrosion of the GE in very basic solutions) are best suited to establish the response parameters of a GE. A novel approach of using a combined linear and binomial GE calibration was developed; this procedure allows measurements between pH 0 and 2 with uncertainty better than ±0.01 pH unit. From an extensive error analysis, it has been established that the uncertainties of about ±0.5 mV in the response slope and ±1.3 mV in E°' might result in an absolute error in pH of about 0.02 which should not generate errors larger than 0.3 % in optimized stability constants (as log K values) determined by voltammetry at extremely low pH. A test of GE suitability for the study of metal complexes by voltammetry is also proposed; it should be implemented only for suspect electrodes that show response parameters outside the limits recommended in this work.

Keywords: Glass electrode calibration, glass electrode performance, use of GE in highly acidic media, metal-ligand equilibria studies, potentiometry, voltammetry


 

 

Full text available only in PDF format.

 

Acknowledgements

The authors thank the National Research Foundation (NRF), the University of the Witwatersrand and the University of Pretoria for their financial support.

 

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Received 26 May 2009
Revised 25 August 2009
Accepted 30 September 2009

 

 

* To whom correspondence should be addressed. E-mail: ignacy.cukrowski@up.ac.za

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