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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >A sensitive and selective on-line amperometric sulfite biosensor using sulfite oxidase immobilized on a magnetite-gold-folate nanocomposite modified carbon-paste electrode
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A sensitive and selective on-line amperometric sulfite biosensor using sulfite oxidase immobilized on a magnetite-gold-folate nanocomposite modified carbon-paste electrode

机译:使用亚硫酸氧化酶固定在磁铁矿-金-叶酸纳米复合修饰碳糊电极上的灵敏且选择性的在线亚安培生物传感器

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We describe a novel amperometric sulfite biosensor, comprising a carbon-paste electrode (Fe3O4@Au-Cys-FA/CPE) modified with immobilized sulfite oxidase (SOx) on a gold-coated magnetite nanoparticle core, encased within a conjugated folic acid (FA) cysteine (Cys) shell. The biosensor electrode was fabricated using a polydimethylsiloxane (PDMS) and mineral oil mixture as binder, which also enhances the physical stability and sensitivity of the electrode. The developed biosensor displays good electrocatalytic activity toward oxidation of H2O2, which occurs by an enzymatic reaction between SOx and sulfite. The Fe3O4@Au-Cys-FA electrode exhibits good electrocatalytic activity, and has good retention of chemi-sorbed SOx on the electrode because of its large surface area. Sulfite was quantified using amperometric measurements from the Fe3O4@Au-Cys-FA/CPE biosensor, and using an in-house assembled flow cell at +0.35 V (vs. AgiAgCl), with a phosphate buffer carrier (0.10 M, pH 7.0) at a flow rate of 0.8 mL min(-1). The system detects sulfite over the range 0.1-200 mg L-1 (r(2) = 0.998), with a detection limit of 10 mu g L-1 (36 of blank). The system exhibits acceptable precision (%R.S.D.=3.1%), rapid sample throughput (109 samples h(-1)), and good stability (2 w). The developed biosensor shows satisfactory tolerance to potential interferences, such as sugars, anions, ascorbic acid, and ethanol. We applied the developed method to the determination of sulfite content in wines and pickled food extracts, and our results are in good agreement with those obtained by the standard iodometric method. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们描述了一种新型的安培亚硫酸盐生物传感器,包括碳糊电极(Fe3O4 @ Au-Cys-FA / CPE),该电极用固定在亚铁氧化物(FAx)上的金包覆磁铁矿纳米颗粒核固定化了亚硫酸氧化酶(SOx)。 )半胱氨酸(Cys)外壳。生物传感器电极是使用聚二甲基硅氧烷(PDMS)和矿物油混合物作为粘合剂制造的,这也增强了电极的物理稳定性和灵敏度。研发的生物传感器对H2O2的氧化表现出良好的电催化活性,这是通过SOx与亚硫酸盐之间的酶促反应而发生的。 Fe3O4 @ Au-Cys-FA电极具有良好的电催化活性,并且由于其较大的表面积而具有化学吸附的SOx在电极上的良好保留。亚硫酸盐通过Fe3O4 @ Au-Cys-FA / CPE生物传感器的安培测量进行定量,并使用内部组装的流通池在+0.35 V(vs。AgiAgCl)下使用,带有磷酸盐缓冲液载体(0.10 M,pH 7.0)流速为0.8 mL min(-1)。该系统可检测到0.1-200 mg L-1(r(2)= 0.998)范围内的亚硫酸盐,检测限为10μg L-1(36个空白)。该系统具有可接受的精度(%R.S.D. = 3.1%),快速的样品通量(109个样品h(-1))和良好的稳定性(2 w)。先进的生物传感器对糖,阴离子,抗坏血酸和乙醇等潜在干扰具有令人满意的耐受性。我们将开发的方法用于葡萄酒和腌制食品提取物中亚硫酸盐含量的测定,结果与标准碘量法获得的结果相吻合。 (C)2016 Elsevier B.V.保留所有权利。

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