(2020) Simultaneous determination of methadone and morphine at a modified electrode with 3D beta-MnO2 nanoflowers: application for pharmaceutical sample analysis. RSC Advances. pp. 38532-38545.
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Abstract
The present research synthesized manganese dioxide nano-flowers (beta-MnO2-NF) via a simplified technique for electro-catalytic utilization. Moreover, morphological characteristics and X-ray analyses showed Mn in the oxide form with beta-type crystallographic structure. In addition, the research proposed a new efficient electro-chemical sensor to detect methadone at the modified glassy carbon electrode (beta-MnO2-NF/GCE). It has been found that oxidizing methadone is irreversible and shows a diffusion controlled procedure at the beta-MnO2-NF/GCE. Moreover, beta-MnO2-NF/GCE was considerably enhanced in the anodic peak current of methadone related to the separation of morphine and methadone overlapping voltammetric responses with probable difference of 510 mV. In addition, a linear increase has been observed between the catalytic peak currents gained by the differential pulse voltammetry (DPV) of morphine and methadone and their concentrations in the range between 0.1-200.0 mu M and 0.1-250.0 mu M, respectively. Furthermore, the limits of detection (LOD) for methadone and morphine were found to be 5.6 nM and 8.3 nM, respectively. It has been found that our electrode could have a successful application for detecting methadone and morphine in the drug dose form, urine, and saliva samples. Thus, this condition demonstrated that beta-MnO2-NF/GCE displays good analytical performances for the detection of methadone.
Item Type: | Article |
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Keywords: | selective determination oxygen reduction nanotubes oxidation sensor nanoparticle saliva drugs Chemistry |
Divisions: | |
Page Range: | pp. 38532-38545 |
Journal or Publication Title: | RSC Advances |
Journal Index: | ISI |
Volume: | 10 |
Number: | 63 |
Identification Number: | https://doi.org/10.1039/d0ra06480g |
Depositing User: | مهندس مهدی شریفی |
URI: | http://eprints.mubam.ac.ir/id/eprint/1082 |
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