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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Silver nanoparticles anchored on nitrogen-doped graphene as a novel electrochemical biosensing platform with enhanced sensitivity for aptamer-based pesticide assay
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Silver nanoparticles anchored on nitrogen-doped graphene as a novel electrochemical biosensing platform with enhanced sensitivity for aptamer-based pesticide assay

机译:锚固在氮掺杂石墨烯上的银纳米颗粒作为新型电化学生物传感平台,可提高基于适体的农药分析的灵敏度

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摘要

Silver nanoparticles (NPs) decorated nitrogen doped graphene (NG) nanocomposites were prepared through a one-step thermal-treatment route using arginine as the nitrogen source. By integrating the excellent electrical properties and large surface area of Ag NPs and NG, the obtained Ag/NG nanocomposites show more effective electron transfer and high loading capacity than Ag-graphene and pure NG. In the presence of a target, the stronger interaction between the aptamer and the target promotes the formation of a target-aptamer complex on the electrode surface which blocks the electron transfer. Based on this sensing mechanism, a novel and highly sensitive biosensing platform by the use of Ag/NG as enhancing materials is demonstrated for detection of the model target, acetamiprid. The presented aptasensor exhibited a wide linear response for acetamiprid in the range of 1 x 10(-13) M to 5 x 10(-9) M with a low detection limit of 3.3 x 10(-14) M (S/N = 3). Moreover, this electrochemical aptasensor avoided complicated labeling procedures and showed magnificent sensitivity, high selectivity and low cost, which made it not only convenient but also time-saving and applicable. Furthermore, the proposed design may offer a promising way to develop a new electrochemical aptasensor for sensitive and specific detection of a wide spectrum of analytes in food, medical and environmental fields.
机译:以精氨酸为氮源,通过一步热处理工艺制备了纳米银修饰的氮掺杂石墨烯(NG)纳米复合材料。通过集成优良的电性能和较大的Ag NPs和NG表面积,获得的Ag / NG纳米复合材料比Ag-石墨烯和纯NG表现出更有效的电子转移和更高的负载能力。在存在靶标的情况下,适体与靶标之间更强的相互作用促进了在电极表面上靶标-适体复合物的形成,从而阻止了电子的转移。基于这种传感机制,通过使用Ag / NG作为增强材料,展示了一种新型且高度灵敏的生物传感平台,用于检测模型目标扑热息痛。提出的适体传感器在1 x 10(-13)M至5 x 10(-9)M的范围内显示出对乙酰胺的宽线性响应,检出限低至3.3 x 10(-14)M(S / N = 3)。而且,这种电化学适体传感器避免了复杂的标记过程,并且显示了高的灵敏度,高的选择性和低成本,这不仅方便而且节省时间并且适用。此外,提出的设计可能为开发一种新的电化学适体传感器提供有希望的方式,该传感器适用于食品,医疗和环境领域中的各种分析物的灵敏和特异检测。

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