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Fabrication of rGO/MXene-Pd/rGO hierarchical framework as high-performance electrochemical sensing platform for luteolin detection. | LitMetric

AI Article Synopsis

  • A green synthesis method was used to create a nanocomposite with a hierarchical structure made from TiCT MXene, Pd nanoparticles, and reduced graphene oxide (rGO), which enhances electrochemical sensing.
  • The developed rGO/MXene-Pd/rGO framework shows superior electrocatalytic activity and high sensitivity for detecting luteolin, achieving a low detection limit and a wide linear detection range.
  • Successful luteolin detection in real honeysuckle samples has been validated using high-performance liquid chromatography (HPLC), indicating the composite's practical application for herb analysis.

Article Abstract

A  nanocomposite of rGO/MXene-Pd/rGO with hierarchical structure based on TiCT MXene, Pd nanoparticles, and reduced graphene oxide (rGO) was synthesized by a green approach. TiCT MXene decorated with Pd nanoparticles (MXene-Pd) was prepared first. Then, graphene oxide (GO), MXene-Pd, and GO were coated on the surface of the glassy carbon electrode (GCE) in sequence. After each coating of the GO layer, the GO nanosheets were reduced to rGO electrochemically. The fabricated rGO/MXene-Pd/rGO hierarchical framework performs a pie structure with MXene-Pd as the stuffing and rGO nanosheets as the crust, which will be beneficial to the enhancement of its electrochemical sensing performance. As compared with other electrodes, the rGO/MXene-Pd/rGO/GCE exhibited higher electrocatalytic activity and better sensing performance for luteolin detection, with a wide linear range of 6.0 × 10 to 8 × 10 M and 1.0 × 10 to 1.0 × 10 M (oxidation peak potential E = 0.34 V vs. SCE), a low detection limit of 2.0 × 10 M, and a high sensitivity of 112.72 µA µM cm. Moreover, the fabricated sensor also showed high selectivity, reproducibility, and repeatability toward the detection of luteolin. The real sample analysis for luteolin in honeysuckle was successfully carried out by rGO/MXene-Pd/rGO and verified with high-performance liquid chromatography (HPLC) analysis techniques with acceptable results. All the above tests indicate the promising application prospect of the rGO/MXene-Pd/rGO framework for luteolin detection in honeysuckle and other herbs containing luteolin.

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Source
http://dx.doi.org/10.1007/s00604-021-05132-1DOI Listing

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