| Literature DB >> 34069524 |
Nikola Sakač1, Dubravka Madunić-Čačić2, Maja Karnaš3, Bojan Đurin4, Ivan Kovač1, Marija Jozanović5.
Abstract
Surfactant liquid-membrane type sensors are usually made of a PVC, ionophore and a plasticizer. Plasticizers soften the PVC. Due to their lipophilicity, they influence the ion exchange across the membrane, ionophore solubility, membrane resistance and, consequently, the analytical signal. We used the DMI-TPB as an ionophore, six different plasticizers [2-nitrophenyl-octyl-ether (P1), bis(2-ethylhexyl) phthalate (P2), bis(2-ethylhexyl) sebacate (P3), 2-nitrophenyl phenyl ether (P4), dibutyl phthalate (P5) and dibutyl sebacate (P6)] and a PVC to produce ionic surfactant sensors. Sensor formulation with P1 showed the best potentiometric response to four usually used cationic surfactant, with the lowest LOD, 7 × 10-7 M; and potentiometric titration curves with well-defined and sharp inflexion points. The sensor with P6 showed the lowest analytical performances. Surfactant sensor with P1 was selected for quantification of cationic surfactant in model solutions and commercial samples of disinfectants and antiseptics. It showed high accuracy and precision in all determinations, with recovery from 98.2 to 99.6, and good agreement with the results obtained with surfactant sensor used as a referent one, and a standard two-phase titration method. RDS values were lower than 0.5% for all determinations.Entities:
Keywords: antiseptic; cationic surfactant; disinfectant; plasticizer; potentiometry; sensor
Mesh:
Substances:
Year: 2021 PMID: 34069524 PMCID: PMC8161289 DOI: 10.3390/s21103535
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576
Plasticizers and sensor membranes properties.
| Plasticizer Name | Abbreviation | Mr | Lipophilicity * | Dielectric Constant | Resistance | Membrane |
|---|---|---|---|---|---|---|
| 2-nitrophenyl-octyl-ether | P1 | 251.32 | 5.80 | 21 | 55 | opaque |
| bis(2-ethylhexyl) phthalate | P2 | 390.56 | 7.60 | 5.17 | 57 | milky |
| bis(2-ethylhexyl) sebacate | P3 | 426.67 | 10.08 | 3.89 | 62 | milky |
| 2-nitrophenyl phenyl ether | P4 | 215.20 | 3.39 | 9.8 | 61 | transparent |
| dibutyl phthalate | P5 | 278.34 | 4.79 | 6.43 | 59 | opaque |
| dibutyl sebacate | P6 | 314.46 | 6.30 | 4.6 | 74 | opaque |
* calculated using the ALOGPS 2.1 online program. ** [17].
Figure 1Response curves of the surfactant sensors toward (a) Hyamine 1622, (b) CPC, (c) CTAB and (d) DMIC in deionized water, for membranes containing six different plasticizers, from top to the bottom: 2-nitrophenyl-octyl-ether (P1), bis(2-ethylhexyl) phthalate (P2), bis (2-ethylhexyl) sebacate (P3), 2-nitrophenyl phenyl ether (P4), dibutyl phthalate (P5), dibutyl sebacate (P6).
Statistics of the response characteristics of the P1–P6 surfactant sensors to Hyamine, given together with ±95% confidence limits.
| Parameters | Surfactant Sensor with Plasticizer | |||||
|---|---|---|---|---|---|---|
| P1 | P2 | P3 | P4 | P5 | P6 | |
| Slope, mV/decade of activity | 58.78 ± 0.6 | 53.61 ± 1.1 | 56.61 ± 0.5 | 50.6 ± 1.0 | 50.67 ± 1.1 | -/- |
| Standard error | 0.4 | 0.6 | 0.3 | 0.7 | 0.7 | -/- |
| Correlation coefficient, R2 | 0.9935 | 0.9993 | 0.9992 | 0.9964 | 0.9965 | -/- |
| Detection limit, M | 2.1 × 10−7 | 4.2 × 10−7 | 0.1 x 10−6 | 0.2 × 10−6 | 0.1 x 10−6 | -/- |
| Useful conc. Range, M | 3.2 × 10−3–3.9 × 10−7 | 3.2 × 10−3–5.9 x 10−7 | 3.2 × 10−3–1.2 × 10−6 | 3.2 × 10−3–1.6 × 10−6 | 3.2 × 10−3–1.2 × 10−6 | -/- |
Statistics of the response characteristics of the P1–P6 surfactant sensors on CPC, given together with ±95% confidence limits.
| Parameters | Surfactant Sensor with Plasticizer | |||||
|---|---|---|---|---|---|---|
| P1 | P2 | P3 | P4 | P5 | P6 | |
| Slope, mV/decade of activity | 59.1 ± 0.5 | 57.8 ± 0.6 | 55.8 ± 0.4 | 55.9 ± 1.3 | 57.47 ± 0.6 | 31.9 ± 0.2 |
| Standard error | 0.4 | 0.4 | 0.4 | 0.2 | 0.3 | 0.5 |
| Correlation coefficient, R2 | 0.9945 | 0.9997 | 0.9986 | 0.9968 | 0.9996 | 0.9955 |
| Detection limit, M | 2.1 × 10−7 | 4.2 × 10−7 | 1.8 × 10−6 | 0.1 × 10−5 | 0.2 × 10−6 | 0.2 × 10−5 |
| Useful conc. Range, M | 3.2 × 10−3–3.9 × 10−7 | 3.2 × 10−3–5.9 × 10−7 | 3.2 × 10−3–3.5 × 10−6 | 3.2 × 10−3–1.3 × 10−5 | 3.2 × 10−3–1.9 × 10−6 | 3.2 × 10−3–1.8 × 10−5 |
Statistics of the response characteristics of the P1–P6 surfactant sensors on CTAB, given together with ±95% confidence limits.
| Parameters | Surfactant Sensor with Plasticizer | |||||
|---|---|---|---|---|---|---|
| P1 | P2 | P3 | P4 | P5 | P6 | |
| Slope, mV/decade of activity | 59.2 ± 0.7 | 53.5 ± 0.5 | 52.8 ± 0.5 | 53.01 ± 0.6 | 52.9 ± 0.5 | 14.1 ± 0.1 |
| Standard error | 0.7 | 0.7 | 0.4 | 0.3 | 0.5 | 0.044 |
| Correlation coefficient, R2 | 0.9996 | 0.9991 | 0.9992 | 0.9984 | 0.9999 | 0.9986 |
| Detection limit, M | 2.1 × 10−7 | 4.2 × 10−7 | 0.1 × 10−6 | 0.9 × 10−6 | 0.2 × 10−6 | 1.9 × 10−6 |
| Useful conc. Range, M | 3.2 × 10−3–3.9 × 10−7 | 3.2 × 10−3–5.9 × 10−7 | 3.2 × 10−3–1.2 × 10−6 | 3.2 × 10−3–2.6 × 10−6 | 3.2 × 10−3–1.6 × 10−6 | 3.2 × 10−3–3.9 × 10−6 |
Statistics of the response characteristics of the P1–P6 surfactant sensors to DMIC, given together with ±95% confidence limits.
| Parameters | Surfactant Sensor with plasticizer | |||||
|---|---|---|---|---|---|---|
| P1 | P2 | P3 | P4 | P5 | P6 | |
| Slope, mV/decade of activity | 58.4 ± 0.6 | 59.6 ± 0.7 | 54.6 ± 0.7 | 55.1 ± 0.7 | 55.9 ± 0.5 | 32.9 ± 0.4 |
| Standard error | 0.2 | 0.4 | 0.2 | 0.4 | 0.7 | 0.6 |
| Correlation coefficient, R2 | 0.9994 | 0.9997 | 0.9998 | 0.9997 | 0.9999 | 0.9994 |
| Detection limit, M | 2.1 × 10−7 | 4.2 × 10−7 | 5.7 × 10−7 | 0.9 × 10−6 | 0.1 × 10−6 | 2.9 × 10−6 |
| Useful conc. Range, M | 3.2 × 10−3–3.9 × 10−7 | 3.2 × 10−3–5.9 × 10−7 | 3.2 × 10−3–7.9 × 10−7 | 3.2 × 10−3–2.6 × 10−6 | 3.2 × 10−3–1.2 × 10−6 | 3.2 × 10−3–4.9 × 10−6 |
Figure 2Potentiometric titration curves for (a) Hyamine 1622, (b) CPC, (c) CTAB and (d) DMIC, using NaSDS as a titrant (c = 4mM) and DMI-TPB sensors prepared with 6 different plasticizers: 2-nitrophenyl-octyl-ether (P1), bis(2-ethylhexyl) phthalate (P2), bis (2-ethylhexyl) sebacate (P3), 2-nitrophenyl phenyl ether (P4), dibutyl phthalate (P5) and dibutyl sebacate (P6). Some curves are displaced laterally and/or vertically, for clarity.
Titration data and statistics for (a) Hyamine 1622, (b) CPC, (c) CTAB and (d) DMIC titration with SDS (c = 4 mM) using DMI-TPB sensors prepared with six different plasticisers (P1–P6). ΔE, mV is the difference between the end and the start potential; dE/dV is the value of first derivative in the end-point. The statistics were based on five independent measurements.
| DMI-TPB Sensor Plasticizer Type | |||||||
|---|---|---|---|---|---|---|---|
| P1 | P2 | P3 | P4 | P5 | P6 | ||
| Hyamine 1622 with SDS | Δ | 290.1 | 263.4 | 278.2 | 248.6 | 252.4 | -/- |
| d | 61.5 | 59.1 | 43:5 | 43.1 | 55.3 | -/- | |
| SDS consumption in EP, mL | 4.83 | 4.83 | 4.79 | 5.07 | 4.79 | -/- | |
| SD of EP | 0.013 | 0.023 | 0.018 | 0.054 | 0.018 | -/- | |
| CPC with SDS | Δ | 321.7 | 314.9 | 304.0 | 263.8 | 313.3 | 39.4 |
| d | 69.4 | 67.7 | 46.4 | 45.0 | 62.2 | 9.6 | |
| SDS consumption in EP, mL | 4.78 | 4.76 | 4.69 | 4.79 | 4.72 | 4.86 | |
| SD | 0.016 | 0.018 | 0.016 | 0.059 | 0.019 | 0.035 | |
| CTAB with SDS | Δ | 325.7 | 294.7 | 276.2 | 260.2 | 286.1 | 11.6 |
| d | 71.5 | 67.9 | 54.8 | 56.9 | 65.2 | 13.9 | |
| SDS consumption in EP, mL | 4.97 | 4.92 | 4.92 | 4.91 | 4.94 | 4.96 | |
| SD | 0.024 | 0.015 | 0.037 | 0.035 | 0.038 | 0.027 | |
| DMIC with SDS | Δ | 357.6 | 325.2 | 300.3 | 292.5 | 303.2 | 54.6 |
| d | 66.6 | 61.4 | 52.4 | 46.2 | 59.1 | 33.8 | |
| SDS consumption in EP, mL | 4.73 | 4.70 | 4.69 | 4.75 | 4.71 | 4.96 | |
| SD | 0.027 | 0.015 | 0.014 | 0.026 | 0.015 | 0.025 | |
Titration of cationic surfactants in commercial samples of disinfectants and antiseptics with the known addition method using CPC addition, and selected DMI-TPB sensor containing plasticizer P1 as an end-point indicator. SDS (c = 4 mM) was used as a titrant.
| Commercial Sample | CPC Taken/Mol | CPC Found/Mol |
|---|---|---|
| 1 | 1 × 10−5 | 0.989 × 10−5 |
| 1 × 10−4 | 0.982 × 10−5 | |
| 2 | 1 × 10−5 | 0.996 × 10−5 |
| 1 × 10−4 | 0.992 × 10−5 | |
| 3 | 1 × 10−5 | 0.989 × 10−5 |
| 1 × 10−4 | 0.991 × 10−5 |
The results of potentiometric titrations of cationic surfactants in commercial disinfectants and antiseptics samples using SDS (c = 4 mM) as a titrant and DMI-TPB sensor containing plasticizer P5 as an indicator, in comparison with published DMI-TPB sensor containing P1.
| Product | CATIONIC SURFACTANT CONTENT * | ||||
|---|---|---|---|---|---|
| DMI-TPB Sensor with P1 | Surfactant Sensor ** | Two-Phase Titration | |||
| % | RSD (%) | % | RSD (%) | % | |
| A | 4.38 | 0.36 | 4.32 | 0.41 | 4.33 |
| B | 5.26 | 0.38 | 5.13 | 0.62 | 5.15 |
| C | 4.70 | 0.31 | 4.76 | 0.42 | 4.71 |
| D | 4.80 | 0.35 | 4.72 | 0.48 | 4.77 |
| E | 0.06 | 0.26 | 0.07 | 0.35 | 0.07 |
| F | 0.15 | 0.45 | 0.15 | 0.25 | 0.16 |
* average of 5 determinations; ** sensor developed in [20].