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Fabrication of SnO2 decorated graphene composite material and its application in electrochemical detection of caffeic acid in red wine
writer:Ji-Wei Zhang, Kai-Ping Wang, Xuan Zhang
keywords:SnO2 decorated graphene, Electrochemical sensor, Caffeic acid, Red wine
source:期刊
specific source:Materials Research Bulletin, 2020, 126, 110820
Issue time:2020年
Metal oxide/graphene composite has become a promising electrode material to improve the performance of electrochemical sensor. Here SnO2 decorated graphene (SnO2-RGO) composite was facilely fabricated by a hydrothermal reduction of graphene oxide with SnCl2, and applied as active electrode material into constructing electrochemical sensor for caffeic acid (CA). The SnO2-RGO composite was characterized by X-ray photoelectron spectroscopy (XPS), X-ray diffraction (XRD) and transmission electron microscopy (TEM). The electrochemical sensor (SnO2-RGO/GCE) obtained from SnO2-RGO coating of glass carbon electrode showed excellent electrocatalytic performance for the redox reaction of CA. A linear range of 0.15–25?μM and a detection limit of 80?nM (S/N?=?3) were achieved in 0.1?M phosphate buffer (pH 7.0). The present electrochemical sensor also showed high selectivity for CA, excellent reproducibility and stability. Eventually, the sensor SnO2-RGO/GCE was successfully applied for CA detection in commercial red wine samples with satisfactory recovery results.