Zheng Weiran, Su Ruobing, Lin Xingyu, Liu Jiyang
Institute of Agro-product Safety and Nutrition, Zhejiang Academy of Agricultural Sciences, Hangzhou, China.
Department of Chemistry, Key Laboratory of Surface and Interface Science of Polymer Materials of Zhejiang Province, Zhejiang Sci-Tech University, Hangzhou, China.
Front Chem. 2022 Sep 7;10:954802. doi: 10.3389/fchem.2022.954802. eCollection 2022.
Convenient, and sensitive detection of pesticides and their metabolites in environmental or food samples is critical for assessing potential environmental and health risks. Here, a three-dimensional (3D) electrochemical sensing platform is proposed based on the integration of nanochannel array on pre-activated 3D graphene (p-3DG) electrodes with no need of additional adhesive layers, which enables sensitive detection of prochloraz and 2,4,6-trichlorophenol (TCP) in environmental and food samples. Through two-step electrochemical polarization, organic phase anodic oxidation, and aqueous phase cathodic reduction, p-3DG electrodes with high active area and excellent electrocatalytic performance were obtained. Vertically-ordered mesoporous silica-nanochannel film (VMSF) can be rapidly grown on the surface of p-3DG by an electrochemical-assisted self-assembly (EASA) method. Taking advantage of the high electrocatalytic activity of p-3DG and the ability of nanochannels to enrich TCP through hydrogen bonding, the VMSF/p-3DG sensor can sensitively detect TCP in the range of 10 nM to 0.1 μM and 0.1-15 μM with a low limit of detection (LOD) of 2.4 nM. Compared with p-3DG and VMSF-modified 2D electrodes, the fabricated sensor has a wide detection linear range and low LOD. The coexistence of model interferents such as protein, surfactant, and humic acid did not affect the electrochemical response of TCP, confirming the high anti-fouling ability of the VMSF/p-3DG sensor. In addition, prochloraz in vegetable and fruit samples was indirectly determined because TCP was the metabolite of prochloraz.
便捷、灵敏地检测环境或食品样品中的农药及其代谢物对于评估潜在的环境和健康风险至关重要。在此,基于在预活化的三维石墨烯(p-3DG)电极上集成纳米通道阵列提出了一种三维(3D)电化学传感平台,无需额外的粘附层,能够灵敏地检测环境和食品样品中的咪鲜胺和2,4,6-三氯苯酚(TCP)。通过两步电化学极化、有机相阳极氧化和水相阴极还原,获得了具有高活性面积和优异电催化性能的p-3DG电极。垂直排列的介孔二氧化硅纳米通道膜(VMSF)可通过电化学辅助自组装(EASA)方法在p-3DG表面快速生长。利用p-3DG的高电催化活性以及纳米通道通过氢键富集TCP的能力,VMSF/p-3DG传感器能够在10 nM至0.1 μM和0.1 - 15 μM范围内灵敏地检测TCP,检测限低至2.4 nM。与p-3DG和VMSF修饰的二维电极相比,所制备的传感器具有宽检测线性范围和低检测限。蛋白质、表面活性剂和腐殖酸等模型干扰物的共存不影响TCP的电化学响应,证实了VMSF/p-3DG传感器具有高抗污染能力。此外,由于TCP是咪鲜胺的代谢物,因此间接测定了蔬菜和水果样品中的咪鲜胺。