Department of Chemistry, Ateneo de Manila University, Quezon City, 1108, Philippines.
Department of Chemistry, Ateneo de Manila University, Quezon City, 1108, Philippines.
Anal Chim Acta. 2021 May 22;1160:338430. doi: 10.1016/j.aca.2021.338430. Epub 2021 Mar 20.
To address the need for low-cost analytical tools for on-site aquaculture water quality monitoring, miniaturized electrochemical sensor systems can be readily fabricated using additive manufacturing technologies such as 3D printing and inkjet printing. In this work, we report the design and fabrication of an additively manufactured electrochemical platform featuring a reusable 3D-printed electrochemical cell with integrated reference and counter electrodes, and a replaceable inkjet-printed Ag (IJP-Ag) working electrode. The electrochemical cell was 3D-printed with acrylonitrile butadiene styrene (ABS) filament and features a 3D-printed ABS-carbon counter electrode and a Ag|AgCl|gel-KCl reference electrode with a 3D-printed porous junction directly integrated along the sides of the sample compartment. The application of the integrated cell is demonstrated with the analysis of nitrate ions on the IJP-Ag electrode, which was modified with electrodeposited nanostructured Ag to enhance sensitivity to nitrate reduction. Linear sweep voltammetry (LSV) was successfully applied to detect nitrate with a LOD of 1.40 ppm and a sensitivity of 0.2086 μA ppm in a background of artificial brackish aquaculture water (pH 8.0). The sensor response showed intra- and inter-electrode reproducibility and no significant interferences to most of the commonly encountered cations and anions in brackish water. The electrochemical sensor system was also applied to nitrate determination in real aquaculture water samples and demonstrated no significant differences with the results obtained using the standard spectrophotometric method at a 95% confidence level. Our results show how additive manufacturing is a promising approach to readily fabricate fit-for-purpose, low-cost miniaturized electrochemical sensor systems for point-of-use applications.
为满足现场水产养殖水质监测对低成本分析工具的需求,可使用增材制造技术(如 3D 打印和喷墨打印)快速制造微型电化学传感器系统。在这项工作中,我们报告了一种基于增材制造的电化学平台的设计和制造,该平台具有可重复使用的 3D 打印电化学池,集成了参比和对电极,以及可更换的喷墨打印 Ag(IJP-Ag)工作电极。电化学池采用丙烯腈丁二烯苯乙烯(ABS)长丝 3D 打印,具有 3D 打印 ABS-碳对电极和 Ag|AgCl|凝胶-KCl 参比电极,其 3D 打印多孔结直接集成在样品腔的侧面。通过在 IJP-Ag 电极上分析硝酸盐离子,展示了集成电池的应用,该电极经过电沉积纳米结构 Ag 修饰,以增强对硝酸盐还原的灵敏度。线性扫描伏安法(LSV)成功地用于检测硝酸盐,在人工咸水水产养殖水(pH 8.0)背景下,检测限为 1.40 ppm,灵敏度为 0.2086 μA ppm。传感器响应显示出电极内和电极间的重现性,并且对咸水中大多数常见阳离子和阴离子没有明显的干扰。电化学传感器系统还应用于实际水产养殖水样中的硝酸盐测定,在 95%置信水平下,与使用标准分光光度法获得的结果没有显著差异。我们的结果表明,增材制造是一种很有前途的方法,可以快速制造适用于现场应用的、低成本的微型电化学传感器系统。