Scientific and Innovation Center of Sensor Technologies, Ural State University of Economics, 620144, Yekaterinburg, Russia.
Scientific and Innovation Center of Sensor Technologies, Ural State University of Economics, 620144, Yekaterinburg, Russia; Department of Physics and Chemistry, Ural State University of Economics, 620144, Yekaterinburg, Russia.
Anal Chim Acta. 2023 Sep 1;1272:341481. doi: 10.1016/j.aca.2023.341481. Epub 2023 Jun 9.
This article presents an original planar carbon fiber electrode (PCFE), in which shungite (SHU) is used as a modifier for the first time. Shungite is a unique natural nanostructured composite consisting of carbon in the form of aggregated graphene stacks, oxides of silicon, titanium, aluminum, iron, magnesium, potassium, etc. Macro- and micro-elements, biologically active components that are present in shungite provide it with attractive antioxidant properties, make it a biocompatible and environmentally friendly material that meets the principles of green chemistry. A unique supramolecular structure of shungite carbon presents a multilayer globular-cluster formation with mesopores in the internal volume. It determines specific physical, chemical, catalytic, and adsorption properties of shungite. Carbon fiber with an irregular 3D structure was used as an effective electrode platform for strong immobilization of shungite. The PCFE was fabricated using a simple and scalable hot lamination technology that produces very low cost flexible planar electrodes. The sensor (SHU/PCFE) was characterized by scanning electron microscopy; electrochemical impedance analysis; cyclic, differential-pulse and stripping voltammetry. The SHU/PCFE showed a 2.5-fold increase in the electroactive surface area, a 1.8-fold decrease in the electron transfer resistance compared with the bare PCFE. Under optimal experimental conditions and preconcentration at +0.2 V (vs. Ag/AgCl) 180 s, the developed sensor allowed the quantification of Allura Red in the ranges of 0.001-0.1 and 0.1-2 μmol L with an extremely low detection limit of 0.36 nmol L. Moreover, this convenient and cost-effective sensor also has good repeatability, stability and anti-interference ability. The interfering effect of sweeteners and preservatives in the determination of Allura Red does not exceed 3.6%. The practical application of the SHU/PCFE was demonstrated using drink samples, lollipops and pharmaceuticals.
本文提出了一种新型的平面碳纤维电极(PCFE),其中首次使用了石墨(SHU)作为修饰剂。石墨是一种独特的天然纳米结构复合材料,由以聚集石墨烯堆叠形式存在的碳、硅、钛、铝、铁、镁、钾等氧化物以及宏量和微量元素组成。存在于石墨中的生物活性成分赋予其吸引人的抗氧化特性,使其成为一种生物相容且环保的材料,符合绿色化学的原则。石墨碳的独特超分子结构呈现出具有中孔的多层球状簇形成。它决定了石墨的特殊物理、化学、催化和吸附特性。具有不规则 3D 结构的碳纤维被用作有效电极平台,用于强力固定石墨。PCFE 是使用简单且可扩展的热层压技术制造的,该技术可生产非常低成本的柔性平面电极。通过扫描电子显微镜、电化学阻抗分析、循环伏安法、差分脉冲伏安法和溶出伏安法对传感器(SHU/PCFE)进行了表征。与裸 PCFE 相比,SHU/PCFE 的电化学活性表面积增加了 2.5 倍,电子转移电阻降低了 1.8 倍。在最佳实验条件下,在+0.2 V(相对于 Ag/AgCl)下预浓缩 180 s,开发的传感器允许在 0.001-0.1 和 0.1-2 μmol L 的范围内定量测定诱惑红,检测限低至 0.36 nmol L。此外,这种方便且具有成本效益的传感器还具有良好的重复性、稳定性和抗干扰能力。在测定诱惑红时,甜味剂和防腐剂的干扰作用不超过 3.6%。SHU/PCFE 的实际应用在饮料样品、棒棒糖和药物中得到了证明。