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Determination of nicotine in tobacco products based on mussel-inspired reduced graphene oxide-supported gold nanoparticles

机译:基于贻贝启发的氧化石墨烯负载的金纳米颗粒测定烟草制品中的尼古丁

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摘要

Polydopamine functionalized reduced graphene oxide-gold nanoparticle (PDA-RGO/Au) nanocomposites were successfully prepared by a simple and mild procedure. The PDA-RGO/Au nanocomposite is successfully formed in an aqueous buffer solution (pH 8.5) without using any reducing agent. FTIR confirmed the successful coating of PDA and informed the reduction of the surface functional groups of GO. The formation of reduced GO and Au NPs was further evidenced by UV-Vis and X-ray diffraction spectroscopy. This method is environmentally friendly and highly beneficial for the mass production of graphene-noble metal based nanocomposite. The as prepared PDA-RGO/Au nanocomposite could greatly enhance the electrochemical oxidation of nicotine. We fabricated an electrochemical nicotine sensor based on the prepared PDA-RGO/Au nanocomposite. The proposed nicotine sensor showed a wide detection range from 0.05 to 500 μM with a low detection limit of 0.015 μM. Moreover, the proposed nicotine sensor was also successfully applied for determination nicotine content in tobacco products.
机译:聚多巴胺功能化还原氧化石墨烯-金纳米颗粒(PDA-RGO / Au)纳米复合材料已通过简单温和的方法成功制备。 PDA-RGO / Au纳米复合材料可以在不使用任何还原剂的缓冲水溶液(pH 8.5)中成功形成。 FTIR证实了PDA的成功涂布,并告知了GO表面官能团的减少。通过UV-Vis和X射线衍射光谱进一步证明了还原的GO和Au NP的形成。该方法是环境友好的,并且对于石墨烯-贵金属基纳米复合材料的大规模生产是高度有益的。制备的PDA-RGO / Au纳米复合材料可以大大增强烟碱的电化学氧化。我们基于准备的PDA-RGO / Au纳米复合材料制造了一种电化学尼古丁传感器。提出的尼古丁传感器的检测范围从0.05到500μm不等,检测下限为0.015μm。此外,所提出的尼古丁传感器也成功地用于测定烟草制品中尼古丁含量。

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