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首页> 外文期刊>Electrochimica Acta >N-doped graphene quantum dots embedded in BiOBr nanosheets as hybrid thin film electrode for quantitative photoelectrochemical detection paracetamol
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N-doped graphene quantum dots embedded in BiOBr nanosheets as hybrid thin film electrode for quantitative photoelectrochemical detection paracetamol

机译:嵌入BioBR纳米片中的N掺杂石墨烯量子点作为用于定量光电化学检测扑热酰胺的混合薄膜电极

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摘要

A facile strategy of electrophoretic deposition has been employed to fabricate a thin film photoelectrochemical (PEC) sensor of functionalized N-doped graphene quantum dots (F-NGQDs) embedded in BiOBr nanosheets, which were prepared by a two-step hydrothermal method, loaded onto indium -tin-oxide coated glass substrate (F-NGQDs/BiOBr/ITO). Electrophoretic deposition provides a mild and environmentally friendly method for PEC film formation. Multiple techniques were applied to investigate the electronic, optical properties and structure of F-NGQDs/BiOBr thin films photoelectrodes. It was found that F-NGQDs/BiOBr thin films with NGQDs/BiOBr heterojunction possess an enhanced charge transfer and absorption wavelengths under visible light, particularly when compared to pristine F-BiOBr films, thus producing an increase in the observed photocurrent. Sensing performance measurements showed the F-NGQDs/BiOBr/ITO photoelectrode has a higher photoelectric response current to paracetamol, it was used to detect trace paracetamol under visible light irradiation. The sensor exhibited a wide linear range, low detection limit and good sensitivity, given the photoactivity of NGQDs/BiOBr heterojunction. The developed PEC sensor displayed an acute response to paracetamol in a linear range of 0.01 mu M-20.0 mu M with a detection limit of 3.33 nM, under optimal conditions. Here we present evidence that F-NGQDs/BiOBr/ITO photoelectrode is a promising candidate for PEC analysis. (C) 2019 Elsevier Ltd. All rights reserved.
机译:采用了电泳沉积的容易策略,用于制造嵌入于BioBR纳米片中的官能化的N掺杂石墨烯量子点(F-NGQDS)的薄膜光电子化学(PEC)传感器,其通过两步水热法制备铟 - 氧化物涂层玻璃基板(F-NGQDS / BIOBR / ITO)。电泳沉积为PEC膜形成提供了一种温和和环保的方法。应用多种技术来研究F-NGQDS / BIOBR薄膜光电子的电子,光学性质和结构。结果发现,具有NGQDS / BioBR异质结的F-NGQDS / BioBR薄膜具有可见光下的增强的电荷转移和吸收波长,特别是与原始F-BioBR膜相比,从而产生观察到的光电流的增加。感测性能测量显示F-NGQDS / BIOBR / ITO光电极具有较高的光电响应电流至扑热酰胺醇,它用于检测可见光照射下的痕量扑热胺。鉴于NGQDS / BioBR异质结的光度,传感器显示出宽线性范围,低检测极限和良好的敏感性。开发的PEC传感器在最佳条件下在0.01μm-20.0μm的线性范围内显示对扑热息痛的扑热疫苗响应,其检测限为3.33nm。在这里,我们提出了F-NGQDS / BIOBR / ITO光电极是PEC分析的有希望的候选者。 (c)2019 Elsevier Ltd.保留所有权利。

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