Dibenzocyclamnickel(II) as Ionophore in PVC-Matrix for Ni2+-Selective Sensor
Abstract
:Introduction
Experimental
Reagents and Materials
Synthesis of [Ni(Me4Bzo2taa)] Complex(I)
Synthesis of [Ni(Me4Bzo2[14]aneN4)]Cl2 Macrocycle (II)
Preparation of Membranes
Equilibration of Membranes and Potential Measurements
Dissolution of Waste Samples
Treatment of Electroplating Waste
Dissolution of Spent Fe-Cr catalyst
Dissolution of Chocolates Samples
Result and Discussion
Response and Life Time
Sensor. No. | Composition of the membranes (% w/w) | Working concentrationRange (M) | Slope with 90% confidence limit (mV/decade of activity) | Response time (±2s) | Standard deviation in potential (mV) | |||||||
---|---|---|---|---|---|---|---|---|---|---|---|---|
(II) | NaTPB | DBBP | DBP | TBP | DOP | CN | PVC | |||||
1. | 5.0 | - | - | - | - | - | - | 200 | 1.1210-4-1.0×10-1 | 34.9±0.5 | 40 | 2.78 |
2. | 5.0 | 2.5 | 200 | - | - | - | - | 200 | 7.08×10-6-1.0×10-1 | 29.8±0.2 | 12 | 1.42 |
3. | 5.0 | 2.0 | - | 100 | - | - | - | 200 | 6.30×10-5-1.0×10-1 | 36.9±0.5 | 18 | 3.89 |
4. | 5.0 | 2.5 | - | - | 90 | - | - | 200 | 3.98×10-4-1.0×10-1 | 31.6±0.5 | 25 | 3.98 |
5. | 5.0 | 2.0 | - | - | - | 150 | - | 200 | 8.91×10-5-1.0×10-1 | 37.0±0.7 | 20 | 3.75 |
6. | 5.0 | 2.5 | - | - | - | - | 150 | 200 | 1.58×10-5-1.0×10-1 | 35.5±0.2 | 25 | 1.31 |
Sensor No. | Working concentrationrange (M) | Slope (mV/decade ofactivity) | pH range | Response time(s) | Life time (months) | Selectivity | Reference no. |
---|---|---|---|---|---|---|---|
1 | 1.0×10-3-1.0×10-1 | Non Nernstian | NM | NM | NM | NM | 12 |
2 | 8.0×10-6-5.0×10-2 | Near Nernstian | 1.7-5.4 | 10 | 6 | Highly selective | 11 |
3 | 5.0×10-5-1.0×10-1 | Non Nernstian | 3.5-8.0 | 40 | NM | Interference due to Mn2+, CO2+, Cu2+ and Zn2+ | 10 |
4 | 5.0×10-5-1.0×10-1 | Non Nernstian | 3.5-6.5 | NM | 5-6 | Poorly selective | 13 |
5 | 6.3×10-4-1.17×10-2 | Near Nernstian | NM | NM | NM | Poorly selective | 17 |
6 | 4.0×10-5-1.0×10-1 | Nernstian | 3.0-7.5 | 10 | 2 | Sufficiently selective | 14 |
7 | 1.0×10-5-1.0×10-2 | NM | 4.0-8.0 | NM | NM | NM | 19 |
8 | 7.1×10-7-1.2×10-2 | NM | 3.0-6.0 | NM | 2 | NM | 20 |
9 | 7.9x10-6-1.0x10-1 | Nernstian | 2.7-7.6 | 15 | 6 | Highly selective | 9 |
10 | 7.08x10-6-1.0x10-1 | Nernstian | 2.0-7.5 | 12 | 6 | Highly selective | Proposed sensor |
pH and Solvent Effect
Non aqueous Content % (v/v) | Working concentration range (M) | Slope with 90% confidence limit (mV/decade of activity) | Standard deviation in potential (mV) |
---|---|---|---|
0 | 7.08×10-6 - 1.0×10-1 | 29.8±0.2 | 1.42 |
Methanol | |||
10 | 7.08×10-6 - 1.0×10-1 | 29.8±0.2 | 1.42 |
20 | 7.08×10-6 - 1.0×10-1 | 29.8±0.2 | 1.52 |
30 | 7.08×10-6 - 1.0×10-1 | 29.8±0.2 | 1.50 |
40 | 7.08×10-6 - 1.0×10-1 | 29.5±0.2 | 1.76 |
45 | 1.99×10-5 - 1.0×10-1 | 28.1±0.3 | 1.95 |
Ethanol | |||
10 | 7.08×10-6 - 1.0×10-1 | 29.8±0.2 | 1.42 |
20 | 7.08×10-6 - 1.0×10-1 | 29.8±0.2 | 1.42 |
30 | 7.08×10-6 - 1.0×10-1 | 29.8±0.2 | 1.50 |
40 | 8.91×10-6 - 1.0×10-1 | 29.5±0.2 | 1.75 |
45 | 2.23×10-5 - 1.0×10-1 | 26.5±0.3 | 2.08 |
Acetone | |||
10 | 7.08×10-6 - 1.0×10-1 | 29.8±0.2 | 1.42 |
20 | 7.08×10-6 - 1.0×10-1 | 29.8±0.2 | 1.42 |
30 | 7.08×10-6 - 1.0×10-1 | 29.8±0.2 | 1.42 |
40 | 7.94×10-6 - 1.0×10-1 | 28.8±0.3 | 1.53 |
45 | 3.16×10-5 - 1.0×10-1 | 26.0±0.5 | 1.98 |
Selectivity
Interfering ion (B) | Selectivity coefficient values | |
---|---|---|
Fixed interference method (M) | Matched Potential method | |
Li+ | 2.3×10-2 | 0.11 |
Na+ | 6.8×10-1 | 0.67 |
K+ | 5.4×10-2 | 0.27 |
Ag+ | 1.3×10-2 | 0.14 |
NH4+ | 1.5×10-2 | 0.13 |
Tl+ | 2.4×10-2 | 0.21 |
Ca2+ | 1.1×10-3 | 0.18 |
Mg2+ | 2.4×10-3 | 0.17 |
Sr2+ | 3.4×10-3 | 0.13 |
Ba2+ | 5.6×10-3 | 0.19 |
Cu2+ | 8.9×10-2 | 0.59 |
Cd2+ | 2.9×10-3 | 0.21 |
CO2+ | 1.7×10-3 | 0.13 |
Pb2+ | 3.9×10-3 | 0.14 |
Zn2+ | 4.7×10-3 | 0.14 |
Mn2+ | 2.3×10-3 | 0.17 |
Pb2+ | 3.4×10-3 | 0.10 |
Hg2+ | 2.3×10-3 | 0.11 |
Cr2+ | 3.4×10-3 | 0.13 |
Al3+ | 1.8×10-3 | 0.27 |
Ce3+ | 1.0×10-3 | 0.19 |
Fe3+ | 3.9×10-3 | 0.32 |
Bi3+ | 1.5×10-3 | 0.18 |
Analytical applications
Potentiometric titration
Waste analysis
Conclusion
Acknowledgements
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Gupta, V.K.; Prasad, R.; Kumar, A. Dibenzocyclamnickel(II) as Ionophore in PVC-Matrix for Ni2+-Selective Sensor. Sensors 2002, 2, 384-396. https://doi.org/10.3390/s21000384
Gupta VK, Prasad R, Kumar A. Dibenzocyclamnickel(II) as Ionophore in PVC-Matrix for Ni2+-Selective Sensor. Sensors. 2002; 2(10):384-396. https://doi.org/10.3390/s21000384
Chicago/Turabian StyleGupta, Vinod K., Rajendra Prasad, and Azad Kumar. 2002. "Dibenzocyclamnickel(II) as Ionophore in PVC-Matrix for Ni2+-Selective Sensor" Sensors 2, no. 10: 384-396. https://doi.org/10.3390/s21000384
APA StyleGupta, V. K., Prasad, R., & Kumar, A. (2002). Dibenzocyclamnickel(II) as Ionophore in PVC-Matrix for Ni2+-Selective Sensor. Sensors, 2(10), 384-396. https://doi.org/10.3390/s21000384