| Literature DB >> 27347487 |
Abstract
The PVC membrane of an ion-selective electrode (ISE) sensitive to dibasic phosphate ions (HPO4-ISE) has not been optimized for maximum selectivity, sensitivity, and useable ISE lifetime and further work was necessary to improve its performance. Two areas of investigation are reported here: include the parameters for the lipophilicity of the plasticizer compound used and the amount of cyclic polyamine ionophore incorporated in the PVC membrane. Six candidate plasticizers with a range of lipophilicity were evaluated for their effect on the useable lifetime, sensitivity, and selectivity of the ISE against 13 different anions. Selectivity was determined by a modified fixed interferent method, sensitivity was determined without interferents, and the usable lifetime evaluated at the elapsed time where 50% of the HPO4-ISE failed (L50). The results show that choosing a plasticizer that has a lipophilicity similar to the ionophore's results in the best selectivity and sensitivity and the longest L50.Entities:
Keywords: chemical sensor; ion-selective electrode; lipophilicity; liquid membrane; phosphate; plasticizer; selectivity; sensitivity
Year: 2015 PMID: 27347487 PMCID: PMC4918821 DOI: 10.3390/chemosensors3040284
Source DB: PubMed Journal: Chemosensors (Basel) ISSN: 2227-9040
Figure 1Plot of responses during phosphate additions for a pH and six HPO42− ISEs.
Phosphate additions and the resulting {H2PO4−} and {HPO42−} activities at pH 7.2.
| # | Added PO4 μL | Added PO4 mmol/L | Tot Vol | TOT PO4 mmol/L | {H2PO4−} mol/L | {HPO4−2} mol/L | log{H2PO4} | log{HPO42−} |
|---|---|---|---|---|---|---|---|---|
| 1 | 0 | 0 | 100,000 | 1.00E–09 | 6.62E–13 | 6.77E–13 | −12.179 | −12.169 |
| 2 | 5 | 100 | 100,005 | 5.00E–03 | 2.45E–06 | 2.51E–06 | −5.611 | −5.601 |
| 3 | 5 | 100 | 100,010 | 1.00E–02 | 4.88E–06 | 4.99E–06 | −5.312 | −5.302 |
| 4 | 10 | 100 | 100,020 | 2.00E–02 | 9.70E–06 | 9.93E–06 | −5.013 | −5.003 |
| 5 | 20 | 100 | 100,040 | 4.00E–02 | 1.92E–05 | 1.97E–05 | −4.716 | −4.706 |
| 6 | 40 | 100 | 100,080 | 7.99E–02 | 3.81E–05 | 3.89E–05 | −4.420 | −4.410 |
| 7 | 80 | 100 | 100,160 | 1.60E–01 | 7.49E–05 | 7.66E–05 | −4.126 | −4.116 |
| 8 | 16 | 1000 | 100,176 | 3.19E–01 | 1.47E–04 | 1.50E–04 | −3.834 | −3.824 |
| 9 | 32 | 1000 | 100,208 | 6.39E–01 | 2.84E–04 | 2.91E–04 | −3.546 | −3.536 |
| 10 | 64 | 1000 | 100,272 | 1.28E+00 | 5.45E–04 | 5.57E–04 | −3.264 | −3.254 |
| 11 | 128 | 1000 | 100,400 | 2.55E+00 | 1.03E–03 | 1.05E–03 | −2.989 | −2.979 |
| 12 | 256 | 1000 | 100,656 | 5.09E+00 | 1.89E–03 | 1.93E–03 | −2.724 | −2.714 |
| 13 | 512 | 1000 | 101,168 | 1.01E+01 | 3.38E–03 | 3.46E–03 | −2.470 | −2.460 |
| 14 | 1000 | 1000 | 102,168 | 1.98E+01 | 5.82E–03 | 5.95E–03 | −2.235 | −2.225 |
| 15 | 2500 | 1000 | 104,668 | 4.32E+01 | 1.07E–02 | 1.09E–02 | −1.973 | −1.963 |
Figure 2Electrode potential versus activity of HPO42− without interferents.
Figure 3Limit of detection (A) and linear range (B) as a function of lipophilicity.
Limit of detection, linear sensitivity, and linear slope of HPO42− ISEs with various plasticizers in the membrane.
| Plasticizer | log | Limit of Detection –log{HPO42−} mol/L | Linear Sensitivity Conc. Decades | Linear Slope mV/Conc. Decade | |||
|---|---|---|---|---|---|---|---|
|
| |||||||
| Average | Std. Dev | Average | Std. Dev | Average | Std. Dev | ||
| DMF | −0.6 | −5.13 | 0.38 | 2.60 | 0.00 | −7.4 | 0.9 |
| NPOE | 2.3 | −5.05 | 0.20 | 2.34 | 0.33 | −8.8 | 4.9 |
| DBP | 3.6 | −7.01 | 0.18 | 4.85 | 0.21 | −23.8 | 0.6 |
| TEHP | 4.4 | −5.56 | 0.92 | 2.70 | 0.46 | −6.7 | 11.6 |
| DBS | 4.6 | −5.00 | 0.51 | 2.78 | 0.42 | −9.3 | 2.2 |
| BEHS | 6.9 | −5.05 | 0.26 | 3.18 | 1.57 | −16.0 | 4.4 |
Figure 4Plasticizer effect on selectivity.
Selectivity coefficients (−logKHPO4,J) as a function of lipophilicity for 13 interferents.
| Plast. | log | Cl− | NO3− | I− | F− | Cit3− | SO42− | SCN− | Ace− | Lac− | BTP− | B-T− | Br− | HEPES |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| DMF | −0.6 | 1.88 | 1.08 | 1.16 | 0.55 | −0.75 | 0.07 | 0.59 | 0.87 | 0.84 | 0.35 | 0.98 | 0.46 | 1.11 |
| NPOE | 2.3 | 2.46 | 1.63 | 2.30 | 1.17 | −0.55 | 0.56 | 1.19 | 1.63 | 1.65 | 0.98 | 1.65 | 1.19 | 1.76 |
| DBP | 3.6 | 3.41 | 2.42 | 2.00 | 2.87 | −0.54 | 0.93 | 2.00 | 3.41 | 3.19 | 1.11 | 3.35 | 0.33 | 2.95 |
| TEHP | 4.4 | 2.74 | 2.33 | 2.24 | 1.12 | −0.58 | 0.51 | 1.26 | 1.70 | 1.79 | 1.35 | 2.09 | 0.98 | 1.65 |
| DBS | 4.6 | 2.46 | 1.77 | 2.01 | 1.05 | −0.58 | 1.07 | 1.48 | 1.98 | 2.03 | 1.45 | 2.17 | 1.23 | 1.97 |
| BEHS | 6.9 | 2.49 | 2.31 | 2.38 | 1.13 | −0.57 | 0.52 | 1.40 | 1.91 | 1.96 | 1.41 | 2.16 | 1.17 | 1.74 |
Figure 5Effect of plasticizer lipophilicity on selectivity against Cl− ion.
Figure 6Useable service life of the DBP-PVC based HPO4-ISE with varying amounts of ionophore.