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A selective glucose sensor based on direct oxidation on a bimetal catalyst with a molecular imprinted polymer

机译:基于分子印迹聚合物的双金属催化剂直接氧化的选择性葡萄糖传感器

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Abstract A selective nonenzymatic glucose sensor was developed based on the direct oxidation of glucose on hierarchical CuCo bimetal-coated with a glucose-imprinted polymer (GIP). Glucose was introduced into the GIP composed of Nafion and polyurethane along with aminophenyl boronic acid (APBA), which was formed on the bimetal electrode formed on a screen-printed electrode. The extraction of glucose from the GIP allowed for the selective permeation of glucose into the bimetal electrode surface for oxidation. The GIP-coated bimetal sensor probe was characterized using electrochemical and surface analytical methods. The GIP layer coated on the NaOH pre-treated bimetal electrode exhibited a dynamic range between 1.0μM and 25.0mM with a detection limit of 0.65±0.10μM in phosphate buffer solution (pH 7.4). The anodic responses of uric acid, acetaminophen, dopamine, ascorbic acid, L-cysteine, and other saccharides (monosaccharides: galactose, mannose, fructose, and xylose; disaccharides: sucrose, lactose, and maltose) were not detected using the GIP-coated bimetal sensor. The reliability of the sensor was evaluated by the determination of glucose in artificial and whole blood samples. Highlights
机译:<![cdata [ 抽象 基于葡萄糖对葡萄糖印迹聚合物(GIP)的分层Cuco Bimetal-涂覆的葡萄糖直接氧化,开发了选择性非酶血糖传感器。将葡萄糖引入由Nafion和聚氨酯组成的GIP中,以及氨基苯基硼酸(APBA),其在形成在丝网印刷电极上形成的双金属电极上。从盖子中萃取葡萄糖允许选择性渗透葡萄糖进入双金属电极表面进行氧化。使用电化学和表面分析方法表征了GIP涂覆的双金属传感器探针。涂覆在NaOH预处理的双金属电极上的覆盖层表现出1.0 μm和25.0 mm之间的动态范围,检出限为0.65磷酸盐缓冲溶液中的±0.10:Hsp Sp =“0.25”/>μm(pH7.4)。尿酸,乙酰氨基酚,多巴胺,抗坏血酸, L - 胞嘧啶等糖类(单糖:半糖,甘露糖,果糖和木糖;二糖:使用GIP涂覆的双金属传感器未检测到蔗糖,乳糖和麦芽糖。通过测定人工和全血样品中的葡萄糖来评估传感器的可靠性。 突出显示

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