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Information Journal Paper

Title

Application of Spinel-structured NiCuFe2O4 nanoparticles for determination of naproxen in the presence of acetaminophen

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  0-0

Abstract

 A facile and sensitive method was used to fabricate a novel sensor for the determination of Naproxen on the surface of multi-walled carbon nanotubes modified NiCuFe2O4 Paste electrode (MWCNTs/NiCuFe2O4/CPE). Adding NiCuFe2O4 to MWCNTs effectively increased the real surface area, and most importantly, amplified the electron transfer. The surface analyses techniques perfectly certified that MWCNTs and spinel were well dispersed in graphite matrix. According to the results, MWCNTs/NiCuFe2O4/CPE produced a sharp peak for Naproxen oxidation at about +0. 93 vs Ag/AgCl reference electrode at pH 5. 0. The proposed electrode revealed a linear response over 0. 1-480 µ M with a detection limit of 0. 05 µ M. Finally, this electrode also has the ability to determine Naproxen in the presence of acetaminophen without any interference. The brilliant properties of modified electrode such as its lack of toxicity, simplicity of fabrication, and relative inexpensiveness showed that it has feasible to determine Naproxen in biological samples.

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    APA: Copy

    SALAVATI, HOSSEIN, Taei, Masoumeh, Rasouli, Nahid, Zohoor, Ali, & Ashian, Golshan. (2019). Application of Spinel-structured NiCuFe2O4 nanoparticles for determination of naproxen in the presence of acetaminophen. JOURNAL OF APPLIED CHEMISTRY, 14(52 ), 0-0. SID. https://sid.ir/paper/381910/en

    Vancouver: Copy

    SALAVATI HOSSEIN, Taei Masoumeh, Rasouli Nahid, Zohoor Ali, Ashian Golshan. Application of Spinel-structured NiCuFe2O4 nanoparticles for determination of naproxen in the presence of acetaminophen. JOURNAL OF APPLIED CHEMISTRY[Internet]. 2019;14(52 ):0-0. Available from: https://sid.ir/paper/381910/en

    IEEE: Copy

    HOSSEIN SALAVATI, Masoumeh Taei, Nahid Rasouli, Ali Zohoor, and Golshan Ashian, “Application of Spinel-structured NiCuFe2O4 nanoparticles for determination of naproxen in the presence of acetaminophen,” JOURNAL OF APPLIED CHEMISTRY, vol. 14, no. 52 , pp. 0–0, 2019, [Online]. Available: https://sid.ir/paper/381910/en

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