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Platinum nanoparticles decorating a biomass porous carbon nanocomposite-modified electrode for the electrocatalytic sensing of luteolin and application

机译:装饰生物量多孔碳纳米复合修饰电极用于木犀草素电催化传感的铂纳米粒子及其应用

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摘要

A sensitive electrochemical method was proposed for the determination of luteolin based on platinum (Pt) nanoparticles decorating a biomass porous carbon (BPC) composite-modified carbon ionic liquid electrode (CILE). For Pt–BPC/CILE, a pair of well-defined redox peaks of luteolin appeared with enhanced peak currents and the positive movement of peak potentials, proving the electrocatalytic activity of the Pt–BPC nanocomposite for redox reaction. The results can be ascribed to the porous structure of BPC, the catalytic activity of Pt nanoparticles and their synergistic effects. Electrochemical parameters were calculated via cyclic voltammetry and differential pulse voltammetry. The results showed that the oxidation peak currents increased linearly with the concentration of luteolin in the range from 0.008 to 100.0 μmol L ~(?1) , with a detection limit of 2.6 ± 0.054 nmol L ~(?1) . The analytical performance of this sensor was checked by the detection of luteolin contents in a real Duyiwei capsule sample with satisfactory results.
机译:提出了一种灵敏的电化学方法,基于装饰生物量多孔碳(BPC)复合改性碳离子液体电极(CILE)的铂(Pt)纳米颗粒测定木犀草素。对于Pt–BPC / CILE,出现了一对木犀草素的清晰定义的氧化还原峰,具有增强的峰值电流和峰值电势的正向移动,证明了Pt–BPC纳米复合材料对氧化还原反应的电催化活性。结果可以归因于BPC的多孔结构,Pt纳米颗粒的催化活性及其协同作用。通过循环伏安法和差分脉冲伏安法计算电化学参数。结果表明,随着木犀草素浓度在0.008〜100.0μmolL〜(?1)范围内,氧化峰值电流线性增加,检出限为2.6±0.054 nmol L〜(?1)。通过检测真实的杜伊威胶囊样品中木犀草素含量来检查该传感器的分析性能,结果令人满意。

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