| Literature DB >> 33797650 |
Elena Zdrachek1, Eric Bakker2.
Abstract
The capacitance of the ion-to-electron transducer layer helps to maintain a high potential stability of solid-contact ion-selective electrodes (SC-ISEs), and its estimation is therefore an essential step of SC-ISE characterization. The established chronopotentiometric protocol used to evaluate the capacitance of the single-walled carbon nanotube transducer layer was revised in order to obtain more reliable and better reproducible values and also to allow capacitance to be measured before membrane deposition for electrode manufacturing quality control purposes. The capacitance values measured with the revised method increased linearly with the number of deposited carbon nanotube-based transducer layers and were also found to correlate linearly before and after ion-selective membrane deposition, with correlation slopes close to 1 for nitrate-selective electrodes, to 0.7 and to 0.5 for potassium- and calcium-selective electrodes.Entities:
Keywords: Double-layer capacitance; Ion-to-electron transducer; Single-walled carbon nanotube; Solid-contact ion-selective electrodes
Year: 2021 PMID: 33797650 PMCID: PMC8018922 DOI: 10.1007/s00604-021-04805-1
Source DB: PubMed Journal: Mikrochim Acta ISSN: 0026-3672 Impact factor: 5.833
Scheme 1Schematic illustration of an electrical double-layer formation by adsorption of either anions or cations onto the surface of the carbon nanotube
Fig. 1a The chronopotentiograms of the 5th measurement cycle observed at ± 12 nA (± 170 nA·cm−2) in 0.1 M TBAPF6 in acetonitrile for glassy carbon electrode covered with 0–8 layers of SWCNTs. b The linear relationship between measured capacitance values and the number of deposited SWCNT layers. Error bars are standard deviations (n = 10)
Fig. 2Example of an application of correction for a baseline potential drift. The experimental data represents the chronopotentiogram of an electrode covered with 4 layers of SWCNTs while applying a ± 10 nA (± 141 nA·cm−2) current pulse
Fig. 3a The chronopotentiograms observed while applying ± 10 nA (± 141 nA·cm−2) for glassy carbon electrode covered with 2 or 8 layers of SWCNTs with and without nitrate-selective membrane. b The correlation between the capacitance values measured before and after ion-selective membrane deposition for nitrate-selective electrode. Error bars are standard deviations (n = 30)
Fig. 4a The chronopotentiograms observed while applying ± 10 nA (± 141 nA·cm−2) for glassy carbon electrode covered with 2 or 8 layers of SWCNTs with and without potassium-selective DOS-based membrane. b The correlation between the capacitance values measured before and after ion-selective membrane deposition for DOS-based potassium-selective electrode. Error bars are standard deviations (n = 30)