Karapa Alexandra, Kokkinos Christos, Fielden Peter R, Baldock Sara J, Goddard Nickolas J, Economou Anastasios, Prodromidis Mamas I
Department of Chemistry, National and Kapodistrian University of Athens, 157 71, Athens, Greece.
Department of Chemistry, Lancaster University, Lancaster, LA1 4YB, UK.
Mikrochim Acta. 2023 Sep 2;190(10):376. doi: 10.1007/s00604-023-05929-2.
The fabrication of a low-cost eco-friendly sensor platform for the voltammetric determination of trace metals by electrochemical stripping analysis is reported. Plastic conductive electrodes were manufactured via injection moulding from polysterene reinforced with carbon fibres. The platform comprises a carbon counter electrode, a working electrode modified with bismuth nanoparticles generated by spark discharge and a reference electrode coated with AgCl. The sensor fabrication and modification procedures are simple, cost-effective and fast while the materials used are environment-friendly. The utility of the voltammetric platform is demonstrated for stripping analysis of Cd(II) and Pb(II); the limits of detection are 0.7 μg L and 0.6 μg L, respectively (with a deposition time of 240 s) which are comparable to conventional Bi-modified sensors and are sufficient to determine the target metals in water and food samples. The scope of the analytical platform for multi-element assays and for the determination of other trace metals is discussed with representative examples. Therefore, this sustainable and economical platform holds great potential for electrochemical sensing of trace metals.
本文报道了一种用于电化学溶出分析伏安法测定痕量金属的低成本环保型传感器平台的制备。塑料导电电极通过注塑成型由碳纤维增强的聚苯乙烯制成。该平台包括一个碳对电极、一个用火花放电产生的铋纳米颗粒修饰的工作电极和一个涂有AgCl的参比电极。传感器的制备和修饰过程简单、经济高效且快速,同时所使用的材料环保。该伏安平台在Cd(II)和Pb(II)的溶出分析中的实用性得到了证明;检测限分别为0.7 μg/L和0.6 μg/L(沉积时间为240 s),这与传统的铋修饰传感器相当,足以测定水和食品样品中的目标金属。通过代表性实例讨论了该分析平台用于多元素分析和测定其他痕量金属的范围。因此,这个可持续且经济的平台在痕量金属的电化学传感方面具有巨大潜力。