Periodic nanostructured Au arrays on an Si electrode for high-performance electrochemical detection of hydrogen peroxide without an enzymeElectronic supplementary information (ESI) available. See DOI: 10.1039/c6tc03657k

Periodic gold nanosphere arrays were prepared on a planar silicon substrate, which could be directly developed as an electrode to sensitively and selectively detect H 2 O 2 without an enzyme via an electrochemical method. The arrays of Au nanospheres were fabricated on a large scale (∼cm 2 ) on the...

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Hauptverfasser: Sun, Yiqiang, Hang, Lifeng, Men, Dandan, Li, Huilin, Liu, Dilong, Li, Xinyang, Wen, Lulu, Li, Yue
Format: Artikel
Sprache:eng
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Zusammenfassung:Periodic gold nanosphere arrays were prepared on a planar silicon substrate, which could be directly developed as an electrode to sensitively and selectively detect H 2 O 2 without an enzyme via an electrochemical method. The arrays of Au nanospheres were fabricated on a large scale (∼cm 2 ) on the Si substrate using polystyrene (PS) colloidal monolayers as the template, after Au deposition and subsequent annealing. The developed biosensor based on the Au nanosphere arrays on the Si substrate demonstrated excellent catalytic activity towards H 2 O 2 over a wide linear range of 0.2 μM-5 mM with a very low detection limit of 0.1 μM. Importantly, the electrochemical biosensor possessed good stability and high reproducibility. The catalytic activity can be enhanced by reducing the gold nanoparticle size and periodic length in the array. The biosensors based on periodic Au nanosphere arrays used to determine the concentration of H 2 O 2 have the advantages of non-enzymatic detection and non-Pt electrode strategy when compared to the conventional method, which may open up new horizons in the production of outstanding biosensors and can be used as a platform for the preparation of various electrochemical biosensors. Periodic gold nanosphere arrays were prepared on a planar silicon substrate, which could be directly developed as an electrode to sensitively and selectively detect H 2 O 2 without an enzyme via an electrochemical method.
ISSN:2050-7526
2050-7534
DOI:10.1039/c6tc03657k