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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >A new approach to light up the application of semiconductor nanomaterials for photoelectrochemical biosensors:Using self-operating photocathode as a highly selective enzyme sensor
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A new approach to light up the application of semiconductor nanomaterials for photoelectrochemical biosensors:Using self-operating photocathode as a highly selective enzyme sensor

机译:点亮半导体纳米材料在光电化学生物传感器中应用的新方法:使用自操作光电阴极作为高选择性酶传感器

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Due to the intrinsic hole oxidation reaction occurred on the photoanode surface, currently developed photoelectrochemical biosensors suffer from the interference from coexisting reductive species (acting as electron donor) and a novel design strategy of photoelectrode for photoelectrochemical detection is urgently required. In this paper, a self-operating photocathode based on CdS quantum dots sensitized three-dimensional (3D) nanoporous NiO was designed and created, which showed highly selective and reversible response to dissolved oxygen (acting as electron acceptor) in the electrolyte solution. Using glucose oxidase (GOD) as a biocatalyst, a novel photoelectrochemical sensor for glucose was developed. The commonly encountered interferents such as H_2O_2, ascorbic acid (AA), cysteine (Cys), dopamine (DA), etc., almost had no effect for the cathodic photocurrent of the 3D NiO/CdS electrode, though these substances were proved to greatly influence the photocurrent of photoanodes, which indicated greatly improved selectivity of the method. The method was applied to detect glucose in real samples including serum and glucose injections with satisfactory results. This study could provide a new train of thought on designing of self-operating photocathode in photoelectrochemical sensing, promoting the application of semiconductor nanomaterials in photo electrochemistry.
机译:由于在光阳极表面发生固有的空穴氧化反应,当前开发的光电化学生物传感器受到共存的还原性物质(作为电子给体)的干扰,因此迫切需要用于光电化学检测的光电极的新设计策略。本文设计并创建了一种基于CdS量子点敏化的三维(3D)纳米多孔NiO的自操作光电阴极,该电极对电解液中的溶解氧(作为电子受体)表现出高选择性和可逆性。利用葡萄糖氧化酶(GOD)作为生物催化剂,开发了一种新型的葡萄糖光电化学传感器。 H_2O_2,抗坏血酸(AA),半胱氨酸(Cys),多巴胺(DA)等常见的干扰物对3D NiO / CdS电极的阴极光电流几乎没有影响,尽管这些物质被证明对影响光阳极的光电流,这表明该方法的选择性大大提高。该方法用于实际样品(包括血清和葡萄糖注射液)中的葡萄糖检测,结果令人满意。该研究为光电化学传感中自操作光电阴极的设计提供了新的思路,促进了半导体纳米材料在光电化学中的应用。

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