| Literature DB >> 35517446 |
Ahmed M Abdel-Raoof1, Ayman O E Osman1, Ebrahim A El-Desouky1, Ashraf Abdel-Fattah1, Rady F Abdul-Kareem1, Elsayed Elgazzar2.
Abstract
A new chemically optimized screen-printed electrode modified with a cobalt-doped α-Mn2O3 nanostructure on carbon nanotube paste (α-Mn2O3:Co@CNTs) has been constructed for the recognition of cyclobenzaprine hydrochloride. The prepared paste is based on the incorporation of oxide ion conductors, such as the α-Mn2O3 nanostructure with cobalt and ion pairs (tetraphenyl borate coupled with the drug), as electroactive species in the screen-printed electrode to increase the sensor surface area and decrease electrical resistance. The central composite design is a useful methodology for the estimation and modeling of the exact optimum parameters specifically designed for this process. This is a good way to graphically clarify the relationship between various experimental variables and the slope response. The proposed sensor, α-Mn2O3:Co@CNTs, possesses very good sensitivity and the ability to recognize the drug over the concentration range of 1 × 10-6 to 1 × 10-2 mol L-1 at 25 ± °C with a detection limit of 2.84 × 10-7 mol L-1. It exhibits a reproducible potential and stable linear response for six months at a Nernstian slope of 58.96 ± 0.76 mV per decade. The proposed electrode approach has been successfully applied in the direct determination of the drug in its pure and dosage forms. This journal is © The Royal Society of Chemistry.Entities:
Year: 2020 PMID: 35517446 PMCID: PMC9055185 DOI: 10.1039/d0ra05106c
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 4.036
Different compositions of the optimal paste for different proposed electrodes
| Electrode type | Composition | |||||
|---|---|---|---|---|---|---|
| Ion pair amount (mg) | Graphite (mg) | Functionalized CNTs (mg) | Mn2O3-NPs (mg) | α-Mn2O3:Co-NPs (mg) | Plasticizer (mg) | |
| Electrode 1 | 68 | 1000 | 50 | — | — | 550 |
| Electrode 2 | 68 | 950 | 50 | 50 | — | 550 |
| Electrode 3 | 68 | 950 | 50 | — | 50 | 550 |
Fig. 1XRD of α-Mn2O3 and α-Mn2O3:Co (30 wt%) nanoparticles calcined at 450 °C.
Fig. 2EDX spectra of (a) α-Mn2O3 and (b) α-Mn2O3:Co (30 wt%) nanoparticles calcined at 450 °C.
Fig. 3Raman spectra of α-Mn2O3 and α-Mn2O3:Co (30 wt%) nanostructure.
Fig. 4SEM images of (A) α-Mn2O3 and (B) α-Mn2O3:Co (30 wt%) nanopowder annealed at 450 °C.
Critical response characteristics of different proposed sensors
| Parameter | Bare SPE | α-Mn2O3@CNTs SPE | α-Mn2O3:Co@CNTs SPE |
|---|---|---|---|
| Slope (mV per decade) | −48.80 | −56.85 | −58.96 |
| Intercept (mV) | 196.80 | 250.33 | 278.45 |
| Concentration range (mol L−1) | 1 × 10−5–10−2 | 5 × 10−6–10−2 | 1 × 10−6–1 × 10−2 |
| LOD (mol L−1) | 7.21 × 10−6 | 1.77 × 10−6 | 2.84 × 10−7 |
| Correlation coefficient | 0.998 | 0.9995 | 0.9997 |
| Response time (s) | 15 | 10 | 10 |
| Working pH range | 4–8 | 4–8 | 4–8 |
| Stability (months) | 4 | 4 | 5 |
| Accuracy (% | 100.45 | 98.14 | 99.77 |
| Precision (% RSD) | |||
| Repeatability | 1.464 | 0.887 | 0.784 |
| Intermediate precision | 1.654 | 0.776 | 0.651 |
| Robustness (mean ± % RSD) | 100.92 ± 1.066 | 98.66 ± 1.666 | 99.32 ± 0.675 |
Fig. 5Profile of the potential in mV versus −log molar concentration of CBZ for different SPEs.
Fig. 6Effect of soaking time on the response of α-Mn2O3:Co@CNTs SPE.
Fig. 7Effect of pH on the response of α-Mn2O3:Co@CNTs SPE.
Selectivity coefficients of various interfering species for α-Mn2O3:Co@ CNTs SPE
|
| log | |
|---|---|---|
|
|
| |
| KCl | −2.12 | — |
| NaCl | −2.65 | — |
| MgCl2 | −3.51 | — |
| CaCl2 | −2.77 | — |
| Nicl2·6H2O | −3.34 | — |
| Sucrose | — | −2.23 |
| Urea | — | −2.54 |
| Glucose | — | −3.72 |
| Glycine | — | −3.64 |
| Citric acid | −2.75 | |
All interfering ions are 1 × 10−3 mol L−1.
SSM: separate solution method.
MPM: matched potential method.
Results of the recovery study of CBZ via the standard-addition method
| Sample | α-Mn2O3:Co@CNTs SPE | ||
|---|---|---|---|
| Pure solution (mol L−1) |
| Moveasy® tablets (mol L−1) |
|
| 1 × 10−5 | 98.43 | 1 × 10−5 | 98.56 |
| 5 × 10−5 | 99.08 | 5 × 10−5 | 98.43 |
| 1 × 10−4 | 100.78 | 1 × 10−4 | 99.65 |
| 5 × 10−4 | 98.66 | 5 × 10−4 | 98.98 |
| 1 × 10−3 | 101.2 | 1 × 10−3 | 101.03 |
| Mean ± % RSD | 99.63 ± 1.276 | 99.33 ± 1.069 | |
Recovery of 3 determinations.
Results of the statistical analysis of tablets by the proposed α-Mn2O3:Co@CNTs SPE and the reported method
| Parameter | α-Mn2O3:Co@CNTs SPE | Reported method[ |
|---|---|---|
|
| 5 | 5 |
| Mean | 98.55 | 99.96 |
| SD | 0.654 | 0.788 |
| Variance | 0.428 | 0.621 |
| Student's | 1.433 (2.306) | |
|
| 1.451 (6.338) |
The values in parentheses are the corresponding tabulated t and F values at P = 0.05.