4.7 Article

Hierarchical multi-layered molybdenum carbide encapsulated oxidized carbon nanofiber for selective electrochemical detection of antimicrobial agents: inter-connected path in multi-layered structure for efficient electron transfer

Journal

INORGANIC CHEMISTRY FRONTIERS
Volume 6, Issue 7, Pages 1680-1693

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c9qi00158a

Keywords

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Funding

  1. Ministry of Science and Technology, Taiwan [NSC101-2113-M-027-001-MY3]

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Metal carbides are an emerging class of electrode materials for various electrochemical applications. Herein, we have synthesized the molybdenum carbide (Mo2C) hexagons via a template assisted method. Subsequently, the Mo2C hexagons were integrated with functionalized carbon nanofiber (f-CNF) via the ultra-sonication method. The prepared Mo2C and Mo2C/f-CNF composites were analyzed using different techniques such as XRD, RAMAN, HR-TEM, and ESCA. The HR-TEM images of Mo-2/C/f-CNF composite evidently proved that the Mo-2/C hexagons are well integrated on surface of f-CNF along with a connection part for efficient electron transfer from Mo2C to f-CNF structure. Due to its excellent electrochemical properties, the proposed Mo2C/f-CNF nanocomposite modified GCE was developed as an efficient electrode for the electrochemical detection of metronidazole (MTZ). As expected, Mo2C/f-CNF/GCE achieved the ultra-low detection limit of 0.002 mu M and the linear range of 0.04-647.7 mu M in sensing of MTZ. Mo2C/f-CNF/GCE was successfully for real time detection in human urine samples. All the electrochemical results clearly proved that the Mo2C/f-CNF composite is an effective electrode for detection of MTZ.

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