Department of Chemistry, Federal University of São Carlos, 13560-970, São Carlos, SP, Brazil.
Department of Chemistry, Federal University of Viçosa, 36570-900, Viçosa, MG, Brazil.
Anal Methods. 2023 Feb 23;15(8):1077-1086. doi: 10.1039/d2ay01964g.
The versatility of chitosan (Ch) biopolymer as a metallic nanoparticle stabilizing agent and excellent former of thin films on glassy carbon was explored in this work for the sustainable manufacture of novel electrochemical sensors based on carbon black (CB) and chitosan-stabilized platinum nanoparticles (Ch-PtNPs). Platinum nanoparticles highly stabilized by chitosan were easily synthesized at room temperature and characterized by HR-TEM, UV-vis, and voltammetry. Ch-PtNPs presented an average diameter of 2.7 nm, and typical voltammetric peaks of Pt in sulfuric acid medium were detected for films containing Ch-PtNPs. As a proof of concept, the CB-Ch-PtNP electrode was applied in the determination of hydrogen peroxide (HO) and the endocrine disruptor bisphenol A (BPA). Pronounced electrocatalytic activity towards HO reduction was observed in the presence of Ch-PtNPs in the films, guaranteeing the non-enzymatic determination of HO by chronoamperometry, with a limit of detection of 10 μmol L. In the determination of BPA by differential pulse adsorptive anodic stripping voltammetry (DPAdASV), under optimal experimental conditions, a wide linear response range and a limit of detection at the nanomolar level (7.9 nmol L) were achieved. In addition, excellent repeatabilities of sensor response and sensor fabrication, and accuracy in the analysis of natural water samples were obtained.
本文探索了壳聚糖(Ch)生物聚合物作为金属纳米粒子稳定剂和玻璃碳上薄膜的优良前体的多功能性,用于可持续制造基于炭黑(CB)和壳聚糖稳定的铂纳米粒子(Ch-PtNPs)的新型电化学传感器。在室温下,很容易合成高度稳定的壳聚糖的铂纳米粒子,并通过高分辨率透射电子显微镜(HR-TEM)、紫外-可见光谱(UV-vis)和伏安法进行表征。Ch-PtNPs 的平均直径为 2.7nm,并且在含有 Ch-PtNPs 的薄膜中检测到硫酸介质中 Pt 的典型伏安峰。作为概念验证,将 CB-Ch-PtNP 电极应用于过氧化氢(HO)和内分泌干扰物双酚 A(BPA)的测定。在薄膜中存在 Ch-PtNPs 的情况下,观察到对 HO 还原的显著电催化活性,通过计时安培法保证了 HO 的非酶测定,检测限为 10μmol L。在通过差分脉冲吸附阳极溶出伏安法(DPAdASV)测定 BPA 的情况下,在最佳实验条件下,实现了宽线性响应范围和纳摩尔级别的检测限(7.9nmol L)。此外,还获得了传感器响应和传感器制造的出色重复性以及天然水样分析的准确性。