首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Ionic liquid functionalized 3D graphene-carbon nanotubes-AuPd nanoparticles-molecularly imprinted copolymer based paracetamol electrochemical sensor: Preparation, characterization and application
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Ionic liquid functionalized 3D graphene-carbon nanotubes-AuPd nanoparticles-molecularly imprinted copolymer based paracetamol electrochemical sensor: Preparation, characterization and application

机译:离子液体官能化3D石墨烯 - 碳纳米管-AUPD纳米颗粒 - 分子印迹共聚物基扑热氨基醇电化学传感器:制备,表征和应用

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摘要

An innovative electrochemical sensor for paracetamol (PCM) determination was fabricated by electropolymerization imprinting on three-dimension (3D) AuPd nanoparticles-ionic liquid (IL) functionalized graphene-carbon nanotubes nanocomposite (AuPd/GN-CNTs-IL) modified glassy carbon electrode. The GN-CNTs supported AuPd alloy nanoparticles were prepared via one-pot hydrothermal method in the presence of IL (i.e. 1-hydroxyethyl-3-methyl imidazolium bis[(trifluoromethyl) sulfonyl] imide), which not only promoted the formation of small AuPd alloy nanoparticles, but also acted as "spacer" to prevent the 7C-7C stacking and aggregation of graphene sheets and carbon nanotubes. The resulting composite had large surface area and high electrocatalysis. The PCM imprinted poly(carbazole-co-pyrrole) exhibited good recognition to PCM and had high stability. Based on the synergic effect of PCM imprinted copolymer and 3D AuPd/GN-CNTs-IL nanocomposite, a highly selective and sensitive electrochemical sensor was established. It presented a good linear relationship from 0.10 to 10 mu M with a low limit of detection of 50 nM (S/N = 3). The sensor could be applied to the detection of PCM in biological samples, with acceptable recoveries (84.5%-102%). In addition, it was successfully used to monitor the concentration of PCM in urine from a patient with fever cold.
机译:通过在三维(3D)AuPd纳米颗粒离子液体(IL)功能化石墨烯-碳纳米管纳米复合材料(AuPd/GN-CNTs-IL)修饰玻碳电极上电聚合印迹,制备了一种新颖的测定扑热息痛(PCM)的电化学传感器。在IL(即1-羟乙基-3-甲基咪唑双[(三氟甲基)磺酰基]酰亚胺)存在下,通过一锅水热法制备了GN-CNT负载的AuPd合金纳米颗粒,这不仅促进了小AuPd合金纳米颗粒的形成,而且还起到了“间隔物”的作用,以防止石墨烯片和碳纳米管的7C-7C堆积和聚集。所得复合材料具有较大的比表面积和较高的电催化性能。PCM分子印迹聚咔唑吡咯对PCM具有良好的识别性和稳定性。基于PCM印迹共聚物与3D-AuPd/GN-CNTs-IL纳米复合材料的协同效应,建立了一种高选择性、高灵敏度的电化学传感器。它在0.10至10μM范围内呈现良好的线性关系,检测下限为50 nM(S/N=3)。该传感器可用于生物样品中PCM的检测,回收率为84.5%-102%。此外,它还成功地用于监测发烧感冒患者尿液中的PCM浓度。

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