Demkiv Olha, Smutok Oleh, Gonchar Mykhailo, Nisnevitch Marina
Department of Analytical Biotechnology, Institute of Cell Biology, Drahomanov Street 14/16, 79005 Lviv, Ukraine.
Institute of Applied Biotechnology and Basic Sciences, University of Rzeszow, Kolbuszowa 36-100, Poland.
Materials (Basel). 2017 May 6;10(5):503. doi: 10.3390/ma10050503.
Fabrication and characterization of a new amperometric chemosensor for accurate formaldehyde analysis based on platinized gold electrodes is described. The platinization process was performed electrochemically on the surface of 4 mm gold planar electrodes by both electrolysis and cyclic voltamperometry. The produced electrodes were characterized using scanning electron microscopy and X-ray spectral analysis. Using a low working potential (0.0 V vs. Ag/AgCl) enabled an essential increase in the chemosensor's selectivity for the target analyte. The sensitivity of the best chemosensor prototype to formaldehyde is uniquely high (28180 A·M·m) with a detection limit of 0.05 mM. The chemosensor remained stable over a one-year storage period. The formaldehye-selective chemosensor was tested on samples of commercial preparations. A high correlation was demonstrated between the results obtained by the proposed chemosensor, chemical and enzymatic methods ( = 0.998). The developed formaldehyde-selective amperometric chemosensor is very promising for use in industry and research, as well as for environmental control.
本文描述了一种基于镀铂金电极的新型安培型化学传感器的制备及其用于准确分析甲醛的特性。通过电解和循环伏安法在4毫米金平面电极表面进行电化学镀铂。使用扫描电子显微镜和X射线光谱分析对制备的电极进行表征。采用低工作电位(相对于Ag/AgCl为0.0 V)可显著提高化学传感器对目标分析物的选择性。最佳化学传感器原型对甲醛的灵敏度极高(28180 A·M·m),检测限为0.05 mM。该化学传感器在一年的储存期内保持稳定。对该甲醛选择性化学传感器进行了商业制剂样品测试。结果表明,所提出的化学传感器与化学法和酶法所得结果之间具有高度相关性(r = 0.998)。所开发的甲醛选择性安培型化学传感器在工业、研究以及环境监测方面具有广阔的应用前景。