首页> 外文期刊>Ultrasonics sonochemistry >One-pot sonochemical synthesis of Bi2WO6 nanospheres with multilayer reduced graphene nanosheets modified electrode as rapid electrochemical sensing platform for high sensitive detection of oxidative stress biomarker in biological sample
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One-pot sonochemical synthesis of Bi2WO6 nanospheres with multilayer reduced graphene nanosheets modified electrode as rapid electrochemical sensing platform for high sensitive detection of oxidative stress biomarker in biological sample

机译:多层石化纳米纳米纳米烯型纳米体的一锅多层纳米纳米体的一种多层电化学电极作为生物样品中氧化应激生物标志物高敏感检测的快速电化学传感平台

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摘要

4-Nitroquinoline N-oxide (4-NQO) is an important tumorigenic organic compound with high adverse effect in the human body. In this study, a novel Bismuth Tungstate nanospheres (Bi2WO6) decorated reduced graphene oxide (Bi2WO6/rGOS) nanocomposite have been designed through a sonochemical method. The as-synthesized Bi2WO6/rGOS was characterized through the HRTEM, FESEM, XPS, EIS and XRD. Furthermore, the nano composite modified glassy carbon electrode (GCE) was developed for the determination of 4-NQO. The results showed that the Bi2WO6/rGOS nanocomposite modified electrode exhibit valuable responses and excellent electrocatalytic activity. The fabricated sensor was facilitated the analysis of 4-NQO with a nanomolar detection limit (6.11 nM). Further, the as-synthesized Bi2WO6/rGOS modified electrode has been applied to sensing of 4-NQO in human blood and urine samples with satisfactory recovery.
机译:4-硝基喹啉N-氧化物(4-NQO)是一种重要的致致致致致瘤的有机化合物,在人体中具有高不良反应。 在本研究中,通过多个子化学方法设计了一种新的铋钨纳米球(Bi2WO6)装饰的石墨烯(Bi2WO6 / RGOS)纳米复合材料。 通过HRTEM,FESEM,XPS,EIS和XRD表征了AS合成的BI2WO6 / RGO。 此外,开发了纳米复合改性玻璃电极(GCE)以确定4-NQO。 结果表明,BI2WO6 / RGOS纳米复合材料改性电极表现出有价值的反应和优异的电催化活性。 促进了制造的传感器,用纳米摩尔检测极限(6.11nm)分析4-nQo。 此外,已经施加了由合成的Bi2WO6 / RGOS改性电极对人血液中4-NQO的感测,尿液呈令人满意的恢复。

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