2011
DOI: 10.1007/s10008-011-1536-z
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Sensitive amperometric detection of omeprazole and pantoperazole at electrodeposited nickel oxide nanoparticles modified glassy carbon electrode

Abstract: Glassy carbon electrode modified with electrodeposited nickel oxide nanoparticles (NiOxNPs) was used as electrocatalyst for oxidation of omeprazole and pentoperazole in alkaline solution. The modified electrode exhibited efficient electrocatalytic activity for the oxidation of omeprazole and pentoperazole with relatively high sensitivity, excellent stability, and long lifetime. Hydrodynamic amperometric method is used for determination of selected analytes. Under optimized condition, the linear concentration r… Show more

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Cited by 33 publications
(14 citation statements)
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“…Once again this observation confirms the catalytic behavior of the immobilized redox system, in this case in electrochemical reduction. The activity toward iodate reduction observed here was comparable or even better than the activity of other CNT/mediator systems reported so far [24][25][26][27].…”
Section: Electrocatalytic Activity Of Mwcnt/kl Composite Modified Gc supporting
confidence: 79%
“…Once again this observation confirms the catalytic behavior of the immobilized redox system, in this case in electrochemical reduction. The activity toward iodate reduction observed here was comparable or even better than the activity of other CNT/mediator systems reported so far [24][25][26][27].…”
Section: Electrocatalytic Activity Of Mwcnt/kl Composite Modified Gc supporting
confidence: 79%
“…Currently omeprazole and lansoprazole are among the most widely used pharmaceuticals [51]. They are mainly used to regulate acid production in the stomach and to treat various acid-related disorders such as gastric and esophageal ulceration [52,53]. To date several methods have been reported for the determination of lansoprazole in biological fluids and in pharmaceutical formulations including spectrophotometric [54,55] and HPLC [56,57].…”
Section: Discussionmentioning
confidence: 99%
“…Thus, this linear curve makes quantitative detection of periodate very convenient over the 30-110 μM concentration range. The reported electrochemical methods for detection of periodate have made a good progress in a lower detection limit and wider linear range (for example, the detection limit from electrochemical methods for periodate is 0.4 μM) (Salimi et al, 2008(Salimi et al, , 2006. However, PDS-2 can be applied in physiological condition without lower-pH solution (pH 2.0 for electrochemical methods) present, which may enable for a live-cell imaging of periodate in living cells.…”
Section: Quantitative Detection Of Periodate With Pds-2mentioning
confidence: 95%