首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >A lab-made screen-printed electrode as a platform to study the effect of the size and functionalization of carbon nanotubes on the voltammetric determination of caffeic acid
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A lab-made screen-printed electrode as a platform to study the effect of the size and functionalization of carbon nanotubes on the voltammetric determination of caffeic acid

机译:实验室制备的丝网印刷电极作为研究碳纳米管尺寸和官能化对含咖啡酸的伏安测定效果的平台

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This study describes the fabrication of carbon screen-printed electrodes (SPEs) from alternative and low-cost materials. The carbon conductive ink was prepared from a mixture of graphite powder and colorless nail polish. To produce the SPEs, the ink was spread on polyester overhead projector sheets, which acted as a flexible and water-impermeable substrate. To improve the analytical performance, the SPEs were chemically modified with multiwalled carbon nanotubes (MWCNTs) by a simple drop-casting procedure. The effects of the acidic functionalization and size of the MWCNTs on the electrochemical behavior of the SPEs were evaluated. As a proof of concept, the MWCNT/SPEs were applied to determine caffeic acid (CA) in tea samples. CA is a biologically important molecule with antioxidant activity and several beneficial effects on human health, therefore its determination in food and beverages is relevant. The SPEs modified with the acidic-functionalized longer diameter MWCNTs presented the broadest linear range for CA, from 2.0 mu mol L-1 to 50 mu mol L-1. These MWCNTs also provided low limits of detection and quantification, 0.20 and 0.66 mu mol L-1, respectively. Tea samples were analyzed by using these electrodes and recovery percentages from 99 to 109% were obtained with low relative standard deviation values, demonstrating the accuracy of the proposed sensor. Moreover, the developed SPE allowed performing the voltammetric measurements using only 100 mu L of solution which is extremely attractive from an economical and environmental point of view. Therefore, this study brings exciting advances in the electroanalysis field regarding the importance of the development of disposable electrochemical sensors with improved performance and capability to perform electrochemical measurements in microvolumes.
机译:该研究描述了碳丝网印刷电极(SPES)的制造免于替代和低成本材料。碳导电油墨由石墨粉末和无色指甲油的混合物制备。为了生产SPE,墨水在涤纶架上投影仪板上铺展,其作用为柔性和不透水的基材。为了改善分析性能,通过简单的液滴过程用多壁碳纳米管(MWCNT)化学改性SPES。评估酸性官能化和MWCNT尺寸对SPE的电化学行为的影响。作为概念证明,MWCNT / SPES被应用于茶样品中的咖啡酸(CA)。 CA是一种具有抗氧化活性的生物学上重要的分子,对人类健康的几种有益效果,因此其在食品和饮料中的测定是相关的。用酸性官能化的较长直径MWCNTs改性的SPES呈现了Ca的最广泛的线性范围,从2.0μmol1-1至50μmol1-1中呈现。这些MWCNTS还提供了低限制的检测和定量,0.20和0.66μmol1-1。通过使用这些电极分析茶样品,并以低相对标准偏差值获得99至109%的恢复百分比,表明所提出的传感器的精度。此外,开发的SPE允许使用仅100 mu L的溶液进行伏安测量,这些溶液从经济和环境的观点来看非常有吸引力。因此,该研究在电催化场上提出了关于一次性电化学传感器的发展的重要性,以改善的性能和能力在微扫存中进行电化学测量。

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