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Citrate stabilized gold nanoparticles on graphenic carbon spheres for the selective detection of hydrazine

机译:柠檬酸盐稳定的金纳米颗粒,用于纳里嗪的选择性检测

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摘要

We have studied the electrocatalytic properties of hydrazine in the alkaline environment by using the stable sensor matrix. Thereby, we have selected the citrate-capped gold nanoparticles (AuNPs) decorated graphenic carbon spheres (GCS). The hydrothermal carbonization method is utilized to prepare the GCS by using reduced graphene oxide (rGO) and glucose. In hydrothermal treatment, the glucose undergoes polycondensation and simultaneously reduced the rGO which results in spherical morphology. These spheres consist of a carbonized nucleus and a hydrophilic surface that facilitates the formation of citrate-capped AuNPs on its surface. This novel composite provides the stable platform to determine the hydrazine in pH 13. Various physicochemical techniques confirm the formation of GCS-AuNPs and also characterized by electrochemical techniques. This GCS-AuNPs modified GCE has showed the good electrochemical performance to the hydrazine oxidation. Also, it revealed the acceptable analytical performance to the determination of hydrazine. The estimated linear concentration range, limit of detection and sensitivity are 0.02 to 530.1 mu M, 6 nM and 4.45 mu A mu M-1 cm(-2). Moreover, GCS-AuNPs/GCE shows good reproducibility and good recovery in real sample analysis.
机译:我们已经通过使用稳定的传感器基质研究了肼在碱环境中的肼的电催化性质。因此,我们选择了柠檬酸盖的金纳米颗粒(AUNP)装饰的石墨碳球(GCS)。利用水热碳化方法通过使用还原的氧化石墨烯(RGO)和葡萄糖制备GCS。在水热处理中,葡萄糖经历缩聚并同时降低rgo,导致球形形态。这些球体由碳化核和亲水表面组成,其有助于在其表面上形成柠檬酸覆盖的剖腹产。该新型复合材料提供了稳定的平台,以确定pH13中的肼。各种物理化学技术证实了GCS-AUNP的形成,并通过电化学技术表征。该GCS-AUNP改性的GCE已经向肼氧化表现出良好的电化学性能。此外,它揭示了肼测定的可接受的分析性能。估计的线性浓度范围,检测极限为0.02至530.1μm,6nm和4.45μmam-1 cm(-2)。此外,GCS-AUNPS / GCE显示出良好的重现性和实际样本分析中的良好恢复。

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