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Preparation of hexagonal boron nitride doped graphene film modified sensor for selective electrochemical detection of nicotine in tobacco sample

机译:六边形氮化物掺杂石墨烯薄膜改性传感器的制备,用于烟草样品中尼古丁的选择性电化学检测

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摘要

The selective detection of nicotine is necessary in biological and biomedical samples to screen the patients who has the neurodegenerative diseases due to tobacco addiction. For this purpose, we have synthesized a hybrid binary composite made of 2D hexagonal boron nitride nanosheets (BN) doped graphene film via a scalable top-down technique for the electrochemical detection of nicotine. Transmission electron microscopy (TEM) images showed that layered graphene sheets bounded with BN nanosheets. Moreover, Fourier-transform infrared (FT-IR), UV-visible (UV-vis), and X-ray photoelectron spectroscopies (XPS) confirmed successful integration of BN within graphene. In addition, the electrical conductivity of the nanocomposite was tested using electrochemical impedance spectroscopy (EIS), which showed high electrical conductivity of BN/graphene coated electrode with low charge transfer resistance. To develop a selective nicotine sensor, glassy carbon electrode (GCE) surface was coated with BN/graphene hybrid film and tested its electro-catalytic activity against nicotine. It was found that BN/graphene/GCE based sensor exhibited excellent electro-catalytic activity for nicotine oxidation at lower potential of +0.97 V in phosphate buffer solution (PBS, pH 7.0) and the linear response was observed from 1 to 1000 mu M. The limit of detection (LOD) was estimated as 0.42 mu M. The common interferent compounds such as uric acid (UA), paracetamol (PA), glucose (Glu), melamine (Mel), cysteine (Cys) and dopamine (DA) did not interfere on the sensor selectivity. Furthermore, BN/graphene/GCE exhibited high stability and reproducibility. Finally, BN/graphene/GCE-based sensor was successfully applied to detect nicotine in a tobacco sample with high recovery. (C) 2020 Elsevier B.V. All rights reserved.
机译:在生物和生物医学样品中是必需的尼古丁的选择性检测,以筛选由于烟草成瘾而具有神经变性疾病的患者。为此目的,我们通过可伸缩的自上而下技术合成了由2D六方硼氮化物纳米片(BN)掺杂的石墨烯膜制成的混合二进制复合材料,用于尼古丁的电化学检测。透射电子显微镜(TEM)图像显示,用BN纳米晶片界定的层状石墨烯片。此外,傅里叶变换红外(FT-IR),UV可见(UV-VI)和X射线光电子能谱(XPS)证实了BN在石墨烯内的成功集成。另外,使用电化学阻抗光谱(EIS)测试纳米复合材料的电导率,其显示出具有低电荷转移电阻的BN /石墨烯涂覆电极的高导电性。为了开发一种选择性尼古丁传感器,玻璃碳电极(GCE)表面涂覆有Bn /石墨烯杂化膜,并测试其对尼古丁的电催化活性。结果发现,在磷酸盐缓冲溶液(PBS,pH7.0)中,基于BN /石墨烯/ GCE基于基于+0.97V的尼古丁氧化的优异电催化活性。从1至1000μmM,达到线性响应。估计检测极限(LOD)为0.42μm。常见的干扰化合物如尿酸(UA),扑热息痛(PA),葡萄糖(Glu),三聚氰胺(MEL),半胱氨酸(CYS)和多巴胺(DA)没有干扰传感器选择性。此外,BN /石墨烯/ GCE表现出高稳定性和再现性。最后,成功地应用于BN /石墨烯/ GCE的传感器以检测具有高回收率的烟草样品中的尼古丁。 (c)2020 Elsevier B.V.保留所有权利。

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