Heineman Mônika G, Gonçalves Bruna L, Vicenti Juliano R M, Dias Daiane
Laboratório de Eletro-Espectro Analítica (LEEA), Escola de Química e Alimentos, Universidade Federal do Rio Grande.
Laboratório de Físico-Química Aplicada e Tecnológica (LAFQAT), Escola de Química e Alimentos, Universidade Federal do Rio Grande.
Anal Sci. 2019 Nov 10;35(11):1255-1261. doi: 10.2116/analsci.19P249. Epub 2019 Aug 2.
This paper discusses about the improvement of electrochemical characteristics of graphite paste electrode chemically modified with chitosan through physical crosslinking of the biopolymer with sodium tripolyphosphate. Biopolymer characterizations were performed by scanning electron microscopy, Fourier transform infrared spectroscopy, cyclic voltammetry and electrochemical impedance spectroscopy. The electrochemical characterization of Pb with graphite paste electrode modified with chitosan crosslinked with sodium tripolyphosphate (GPE-CTS-TPP) showed that the process is quasireversible, controlled by adsorption and involves the transfer of two electrons. Additionally, the physical crosslinking process decreased the electrode resistance as well as improved the electron transfer rate. Once the GPE-CTS-TPP showed enhanced morphological and electrochemical characteristics, it was applied for Pb determination by square wave anodic stripping voltammetry. The method presented appropriate accuracy (recoveries from 95 to 108% and concordance with comparative method between 90 and 107%), high sensitivity (limit of detection and quantification of Pb were 0.73 and 2.44 μg L, respectively) and could be applied to analytical determinations.
本文讨论了通过生物聚合物与三聚磷酸钠的物理交联来改善壳聚糖化学修饰石墨糊电极的电化学特性。通过扫描电子显微镜、傅里叶变换红外光谱、循环伏安法和电化学阻抗谱对生物聚合物进行了表征。用三聚磷酸钠交联壳聚糖修饰的石墨糊电极(GPE-CTS-TPP)对铅进行电化学表征表明,该过程是准可逆的,受吸附控制,涉及两个电子的转移。此外,物理交联过程降低了电极电阻,提高了电子转移速率。一旦GPE-CTS-TPP表现出增强的形态和电化学特性,就将其应用于方波阳极溶出伏安法测定铅。该方法具有适当的准确度(回收率为95%至108%,与比较方法的一致性为90%至107%)、高灵敏度(铅的检测限和定量限分别为0.73和2.44μg/L),可用于分析测定。