Electrochemical sensing toward trace as(III) based on mesoporous MnFe2O4/Au hybrid nanospheres modified glass carbon electrode

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Abstract

Au nanoparticles decorated mesoporous MnFe2O4 nanocrystal clusters (MnFe2O4/Au hybrid nanospheres) were used for the electrochemical sensing of As(III) by square wave anodic stripping voltammetry (SWASV). Modified on a cheap glass carbon electrode, these MnFe2O4/Au hybrid nanospheres show favorable sensitivity (0.315 μA/ppb) and limit of detection (LOD) (3.37 ppb) toward As(III) under the optimized conditions in 0.1 M NaAc-HAc (pH 5.0) by depositing for 150 s at the deposition potential of –0.9 V. No obvious interference from Cd(II) and Hg(II) was recognized during the detection of As(III). Additionally, the developed electrode displayed good reproducibility, stability, and repeatability, and offered potential practical applicability for electrochemical detection of As(III) in real water samples. The present work provides a potential method for the design of new and cheap sensors in the application of electrochemical determination toward trace As(III) and other toxic metal ions.

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Zhou, S., Han, X., Fan, H., & Liu, Y. (2016). Electrochemical sensing toward trace as(III) based on mesoporous MnFe2O4/Au hybrid nanospheres modified glass carbon electrode. Sensors (Switzerland), 16(6). https://doi.org/10.3390/s16060935

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