Lowering the detection limit of solvent polymeric ion-selective electrodes. 1. Modeling the influence of steady-state ion fluxes

Citation
T. Sokalski et al., Lowering the detection limit of solvent polymeric ion-selective electrodes. 1. Modeling the influence of steady-state ion fluxes, ANALYT CHEM, 71(6), 1999, pp. 1204-1209
Citations number
24
Categorie Soggetti
Chemistry & Analysis","Spectroscopy /Instrumentation/Analytical Sciences
Journal title
ANALYTICAL CHEMISTRY
ISSN journal
00032700 → ACNP
Volume
71
Issue
6
Year of publication
1999
Pages
1204 - 1209
Database
ISI
SICI code
0003-2700(19990315)71:6<1204:LTDLOS>2.0.ZU;2-J
Abstract
The processes determining the lower detection limit of carrier-based ion-se lective electrodes (ISEs) are described by a steady-state ion flux model un der zero-current conditions. Ion-exchange and coextraction equilibria on bo th sides of the membrane induce concentration gradients within the organic phase and, through the resulting ion fluxes, influence the lower detection limit. The latter is shown to improve considerably when very small gradient s of decreasing primary ion concentration toward the inner electrolyte solu tion are created. By merely altering the concentration of the inner electro lyte, detection limits may vary by more than 5 orders of magnitude. Very la rge gradients, however, are predicted to lead to significant depletion of a nalyte ions in the outer membrane surface layer and thus to apparent super- Nernstian response. The currently recommended IUPAC definition of the lower detection limit leads to nonrealistic values in such cases. Small changes in the concentration profiles within the membrane may have large effects on the response of the ISE at submicromolar levels and enhance its sensitivit y to interferences during trace determinations. The model studies presented here demonstrate that trace level measurements with ISEs are feasible but often require higher membrane selectivities than expected from the Nicolski i equation.