Abstract In situ gold-nanoparticle electrogeneration on gold films deposited on paper for non-enzymatic electrochemical determination of glucose
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In situ gold-nanoparticle electrogeneration on gold films deposited on paper for non-enzymatic electrochemical determination of glucose

机译:原位金纳米颗粒电磁在金膜上沉积在纸上的金膜上,用于葡萄糖的非酶促电化学测定

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AbstractThis work describes the development and evaluation of a new electrochemical platform based on the sustainable generation of gold-nanoparticles on paper-based gold-sputtered electrodes. The disposable porous paper electrode is combined with screen-printed electrodes for ensuring a precise electrogeneration of nanoparticles and also for the evaluation of these simple, versatile and low-cost microfluidic devices. Two types of chromatographic paper with different thicknesses have been evaluated. Paper gold working electrodes modified with gold nanoparticles were characterized by scanning electron microscopy and cyclic voltammetry using potassium ferrocyanide as a common redox probe, showing an improved electrochemical performance when compared to bare gold electrodes. The platform has been applied to the non-enzymatic determination of glucose, molecule of enormous interest. The porous gold structure made by sputtering on paper, modified with electrogenerated nanoparticles allowed precise and accurate determination of the analyte in beverages at low potential.Graphical abstractDisplay OmittedHighlights
机译:<![CDATA [ 抽象 此工作描述了基于在基于纸的金溅射电极可持续产生金的纳米颗粒的新电化学平台的开发和评估。一次性多孔纸电极与用于确保纳米粒子的精确electrogeneration以及用于这些简单的评价丝网印刷电极,多用途,低成本微流体装置相结合。两种不同厚度的纸层析已评估。纸金工作金纳米粒子修饰电极通过扫描电子显微镜和循环伏安法使用亚铁氰化钾作为共同的氧化还原探针,其特征在于,相比于裸金电极时显示改善的电化学性能。该平台已被施加到非酶促测定葡萄糖,极大的兴趣的分子的。多孔金结构通过溅射在纸张制成,具有电致纳米颗粒改性允许所述分析物的准确和精确地确定在饮料低电位 图形抽象 < CE:简单 - 对>显示中省略 亮点

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