Fabrication of 3D honeycomb-like porous polyurethane-functionalized reduced graphene oxide for detection of dopamine
A three dimensional reduced graphene oxide/polyurethane (RGO-PU) porous material with connected pores was prepared by physical adsorption of RGO onto the surface of porous PU. The porous PU was prepared by directional melt crystallization of a solvent, which produced high pores with controlled orien...
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Veröffentlicht in: | Biosensors & bioelectronics 2016-12, Vol.86, p.122-128 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | A three dimensional reduced graphene oxide/polyurethane (RGO-PU) porous material with connected pores was prepared by physical adsorption of RGO onto the surface of porous PU. The porous PU was prepared by directional melt crystallization of a solvent, which produced high pores with controlled orientation. The prepared RGO-PU was characterized by scanning electron microscopy, spectroscopy and electro-chemical methods. The RGO-PU porous material revealed better electrochemical performance, which might be attributed to the robust structure, superior conductivity, large surface area, and good flexibility. Differential pulse voltammetry (DPV) analysis of DA using the RGO-PU exhibited a linear response range over a wide DA concentration of 100–1150pM, with the detection limit of 1pM. This sensor exhibited outstanding anti-interference ability towards co-existing molecules with good stability, sensitivity, and reproducibility. Furthermore, the fabricated sensor was successfully applied for the quantitative analysis of DA in human serum and urine samples with acceptable recovery, which indicates its feasibility for practical application.
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•RGO-PU sensor was constructed for DA detection.•The developed method exhibited wide linear range and low detection limit.•The fabricated RGO-PU sensor exhibits good selectivity, reproducibility and excellent anti-interference property.•The prepared sensor was applied to detect DA in real sample with satisfactory results. |
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ISSN: | 0956-5663 1873-4235 |
DOI: | 10.1016/j.bios.2016.06.022 |