Ong Chyh Shyang, Ng Qi Hwa, Ahmad Abdul Latif, Low Siew Chun
School of Chemical Engineering, Engineering Campus, Universiti Sains Malaysia, 14300, Nibong Tebal, Pulau Pinang, Malaysia.
Faculty of Chemical Engineering Technology, Universiti Malaysia Perlis (UniMAP), Perlis, Malaysia; Frontier Material Research, Centre of Excellence (FrontMate), Universiti Malaysia Perlis (Unimap), Perlis, Malaysia.
Anal Chim Acta. 2025 Jan 15;1335:343423. doi: 10.1016/j.aca.2024.343423. Epub 2024 Nov 14.
Effective electrochemical sensing requires optimal signal output value and sensitivity, which often pose a challenge due to their counter-intuitive relationship. In order to enhance both aspects, this study designs a modified screen-printed electrode (Nafion-PSS/SPE) comprising a composite formed by two sulfonate-rich polymers, namely Nafion and poly(sodium 4-styrenesulfonate) (PSS). The Nafion-PSS/SPE was utilized in the electrochemical determination of lead (Pb) and cadmium (Cd) via square wave anodic stripping voltammetry (SWASV). This innovative approach aims to improve detection limits and overall analytical performance in complex matrices. (84) RESULTS: The addition of hydrophilic PSS positively improves surface wettability of Nafion-PSS/SPE, as confirmed by water contact angle analysis. Despite the improved wettability, the modified sensor maintains a high selectivity towards heavy metal ions. Cyclic voltammetry (CV) reveals a large electrochemically active surface area (ECSA) for cations (0.5646 cm) and a relatively low ECSA for anions (0.3221 cm). Under optimized conditions, the stripping responses for Pb and Cd exhibited linearity within the concentration ranges of 0.025-0.7 ppm and 0.0125-0.4 ppm, respectively. The detection limits achieved by the modified sensor are 6.478 ppb (Pb) and 5.277 ppb (Cd). The enhancement observed can be ascribed to the following factors, including presence of sulfonate ligands (Nafion and PSS), enhanced wettability (PSS), and surface selectivity (Nafion). Furthermore, even in the presence of interfering ions replicating the composition of effluent from the pesticide industry, the Nafion-PSS/SPE showcases remarkable selectivity for the target Pb and Cd ions. (148) SIGNIFICANCE: This work presents a facile screen-printing technique that could be potentially adopted for batch production of heavy metal sensing devices. Besides, by scrutinizing the surface properties of the modified sensor, this work aims to provide insights on how the proposed modification approach can help to improve the sensor's detection performance. (50).
有效的电化学传感需要最佳的信号输出值和灵敏度,由于它们之间存在违反直觉的关系,这往往构成挑战。为了同时提高这两个方面,本研究设计了一种改进的丝网印刷电极(Nafion-PSS/SPE),它由两种富含磺酸盐的聚合物即Nafion和聚(4-苯乙烯磺酸钠)(PSS)形成的复合材料组成。Nafion-PSS/SPE用于通过方波阳极溶出伏安法(SWASV)电化学测定铅(Pb)和镉(Cd)。这种创新方法旨在提高复杂基质中的检测限和整体分析性能。(84)结果:水接触角分析证实,亲水性PSS的加入积极改善了Nafion-PSS/SPE的表面润湿性。尽管润湿性有所提高,但改性传感器对重金属离子仍保持高选择性。循环伏安法(CV)显示阳离子的电化学活性表面积(ECSA)较大(0.5646平方厘米),阴离子的ECSA相对较小(0.3221平方厘米)。在优化条件下,Pb和Cd的溶出响应在浓度范围分别为0.025 - 0.7 ppm和0.0125 - 0.4 ppm内呈线性。改性传感器实现的检测限分别为6.478 ppb(Pb)和5.277 ppb(Cd)。观察到的增强可归因于以下因素,包括磺酸盐配体(Nafion和PSS)的存在、润湿性增强(PSS)和表面选择性(Nafion)。此外,即使存在模拟农药行业废水成分的干扰离子,Nafion-PSS/SPE对目标Pb和Cd离子仍表现出显著的选择性。(148)意义:这项工作提出了一种简便的丝网印刷技术,有可能用于批量生产重金属传感装置。此外,通过仔细研究改性传感器的表面性质,这项工作旨在深入了解所提出的改性方法如何有助于提高传感器的检测性能。(50)