Serheeva T A, Slinchenko O A, Brovko O O, Piletskyĭ S A, Iel's'ka H V
Ukr Biokhim Zh (1999). 2009 Jan-Feb;81(1):41-51.
Portable devices for the express control of the phenols content in water were developed. Polymers mimicking active site of the enzyme tyrosinase, synthesized using the method of molecular imprinting, were obtained by co-polymerization of the complex Cu (II)-catechol-urocanic acid ethyl ester with ethyleneglycoldimethacrylate. Concentration of phenols in the analyzed samples was detected using universal portable device oxymeter with the oxygen electrode in a close contact with catalytic molecularly-imprinted polymer as a transducer. The detection limit of phenols detection using the developed sensor system based on polymers-biomimics with the optimized composition comprised 0.078 mM, while the linear range of the sensor comprised 0.078-5 mM. The working characteristics of the portable sensor devices were investigated. The possibility of repeated use of the catalytic polymers-biomimics as selective elements of the developed portable sensor systems was demonstrated. Storage stability of sensor systems at room temperature was 12 months (90%). As compared to traditional methods of phenols detection the developed sensor system is characterized by operation simplicity, compactness, and low cost.
开发了用于快速控制水中酚类含量的便携式设备。通过将铜(II)-儿茶酚-尿刊酸乙酯配合物与乙二醇二甲基丙烯酸酯共聚,采用分子印迹法合成了模拟酪氨酸酶活性位点的聚合物。使用通用便携式血氧计检测分析样品中的酚类浓度,该血氧计的氧电极与作为传感器的催化分子印迹聚合物紧密接触。基于具有优化组成的聚合物仿生材料开发的传感器系统检测酚类的检测限为0.078 mM,而传感器的线性范围为0.078-5 mM。研究了便携式传感器设备的工作特性。证明了催化聚合物仿生材料作为所开发便携式传感器系统的选择性元件可重复使用的可能性。传感器系统在室温下的储存稳定性为12个月(90%)。与传统的酚类检测方法相比,所开发的传感器系统具有操作简单、紧凑和低成本的特点。