Department of Chemistry, Federal University of São Carlos, Rod. Washington Luís km 235 - SP-310, São Carlos, SP 13565-905, Brazil.
Talanta. 2019 Apr 1;195:480-489. doi: 10.1016/j.talanta.2018.11.047. Epub 2018 Nov 17.
This paper describes a simple, low-cost, and highly flexible rapid prototyping method to construct electrochemical paper-based analytical device (ePAD) for multiplexed analyte determinations. The ePAD was composed of two electrochemical cell (EC) compartments, separated by hydrophobic barriers of wax, and screen-printed electrodes (SPEs) deposited directly over the surface of the filter paper. The ePAD was entirely constructed using an inexpensive craft cutter printer with no needed of a wax printer. The rapid prototyping method involves two steps: the deposition of the SPEs and the creation of the wax barriers. In this case, the SPEs were screen-printed on filter paper by using adhesive tape as mask by cutting the electrodes pattern with the cutter printer. Following, the wax barriers were created using stamps made of filter paper also cut with the printer and impregnated with wax. In the ePAD, each ECs containing an array of 4-working electrodes, allowing up to 4 replicates in a single measurement. Both ECs shared one counter and one reference electrodes, permitting the simultaneous multianalysis. The ePAD was successfully applied to simultaneous detection of paracetamol (PAR), caffeine (CAF), and ascorbic acid (AA) in drugs. PAR and CAF were detected in a sample using one EC and AA was detected, in a different sample, on the other EC, both with no chemical modifications in the working electrodes. Limits of detection of 0.04 mmol L for PAR, 0.22 mmol L for CAF, and 0.40 mmol L for AA were obtained. The construction process proposed provide an easy way to implement screen-printing electrodes and wax barriers in filter paper to create electrochemical devices for fast and simultaneous multianalysis.
本文描述了一种简单、低成本且高度灵活的快速原型制作方法,用于构建用于多分析物测定的电化学纸质分析器件 (ePAD)。ePAD 由两个电化学池 (EC) 隔室组成,由蜡制成的疏水屏障隔开,并直接沉积在滤纸表面的丝网印刷电极 (SPE)。ePAD 完全使用廉价的工艺切割机打印机构建,无需蜡印机。快速原型制作方法涉及两个步骤:SPE 的沉积和蜡障的创建。在这种情况下,通过使用胶带作为掩模,通过切割机打印机切割电极图案,将 SPE 丝网印刷到滤纸上。随后,使用同样由打印机切割并浸蜡的滤纸制成的印章创建蜡障。在 ePAD 中,每个 EC 包含一组 4 个工作电极,允许在单次测量中进行多达 4 次重复。两个 EC 共用一个对电极和一个参比电极,允许同时进行多分析。ePAD 成功应用于药物中对乙酰氨基酚 (PAR)、咖啡因 (CAF) 和抗坏血酸 (AA) 的同时检测。使用一个 EC 检测样品中的 PAR 和 CAF,在另一个 EC 中检测不同样品中的 AA,而无需对工作电极进行任何化学修饰。PAR 的检测限为 0.04 mmol L,CAF 的检测限为 0.22 mmol L,AA 的检测限为 0.40 mmol L。所提出的构建过程提供了一种在滤纸中实现丝网印刷电极和蜡障的简便方法,用于创建用于快速同时多分析的电化学器件。