Department of Analytical Chemistry, Institute of Chemistry-UNICAMP, Campinas, SP, Brazil.
Anal Chim Acta. 2012 May 6;725:44-50. doi: 10.1016/j.aca.2012.03.011. Epub 2012 Mar 15.
The present work describes the construction and application of a simple, low cost and sensitive microfluidic paper-based device with electrochemical detection for the detection of paracetamol and 4-aminophenol. The separation channels of a width of 2.0 mm were created on paper using a wax printing process to define the regions of the device. A baseline separation level of the analytes can be obtained in 0.1 mol L(-1) acetate buffer solution at pH 4.5 and by injecting 500 nL of the standard solutions at 12 mm from the working electrode. The electrochemical detection system was created at the end of the channels through a process known as sputtering. The previously separated analytes were detected at the end of the hydrophilic separation channel by applying a potential of 400 mV vs. pseudo Au on the working electrode. Experimental variables such as type of paper (cation exchanger and n1), pH, sample volume, applied potential and distance of sample injection were evaluated and, under the conditions of higher response, it was possible to obtain detection limits of 25.0 and 10.0 μmol L(-1) for paracetamol and 4-aminophenol, respectively.
本工作描述了一种简单、低成本和灵敏的微流控纸基电化学检测装置的构建和应用,用于检测扑热息痛和对氨基酚。使用蜡印工艺在纸上创建宽度为 2.0 毫米的分离通道,以定义器件的区域。在 pH 值为 4.5 的 0.1 mol L(-1) 乙酸盐缓冲溶液中,可以在距工作电极 12 毫米处注入 500 nL 标准溶液,获得分析物的基线分离水平。通过称为溅射的过程在通道末端创建电化学检测系统。通过在工作电极上施加相对于伪 Au 的 400 mV 电势,在亲水分离通道的末端检测到先前分离的分析物。评估了诸如纸张类型(阳离子交换剂和 n1)、pH 值、样品体积、施加的电势和样品注入距离等实验变量,并在响应较高的条件下,分别可以获得扑热息痛和对氨基酚的检测限为 25.0 和 10.0 μmol L(-1)。