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Doped and undoped graphene platforms: the influence of structural properties on the detection of polyphenols

机译:掺杂和不掺杂的石墨烯平台:结构性质对多酚检测的影响

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摘要

There is a huge interest in doped graphene and how doping can tune the material properties for the specific application. It was recently demonstrated that the effect of doping can have different influence on the electrochemical detection of electroactive probes, depending on the analysed probe, on the structural characteristics of the graphene materials and on the type and amount of heteroatom used for the doping. In this work we wanted to investigate the effect of doping on graphene materials used as platform for the detection of catechin, a standard probe which is commonly used for the measurement of polyphenols in food and beverages. To this aim we compared undoped graphene with boron-doped graphene and nitrogen doped graphene platforms for the electrochemical detection of standard catechin oxidation. Finally, the material providing the best electrochemical performance was employed for the analysis of real samples. We found that the undoped graphene, possessing lower amount of oxygen functionalities, higher density of defects and larger electroactive surface area provided the best electroanalytical performance for the determination of catechin in commercial beer samples. Our findings are important for the development of novel graphene platforms for the electrochemical assessment of food quality.
机译:掺杂石墨烯及其掺杂如何针对特定应用调整材料性能引起了极大兴趣。最近证实,掺杂的影响对电活性探针的电化学检测有不同的影响,这取决于所分析的探针,石墨烯材料的结构特征以及用于掺杂的杂原子的类型和数量。在这项工作中,我们想研究掺杂对石墨烯材料的影响,该材料用作检测儿茶素的平台,儿茶素是一种标准探针,常用于测量食品和饮料中的多酚。为此,我们将未掺杂的石墨烯与硼掺杂的石墨烯和氮掺杂的石墨烯平台进行了比较,以电化学检测标准儿茶素的氧化。最后,将提供最佳电化学性能的材料用于实际样品的分析。我们发现,未掺杂的石墨烯具有较低的氧官能度,较高的缺陷密度和较大的电活性表面积,为测定商业啤酒样品中的儿茶素提供了最佳的电分析性能。我们的发现对于开发用于食品质量电化学评估的新型石墨烯平台至关重要。

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