Kadivar Mohammad, Aliakbar Alireza
Department of Chemistry, Faculty of Science, University of Guilan, P. O. Box 4193833697, Rasht, Iran.
Anal Methods. 2021 Jan 28;13(4):536-551. doi: 10.1039/d0ay01812k. Epub 2021 Jan 15.
A selective and sensitive electrochemical sensor based on reduced graphene oxide, gold nanoparticles, and molecularly imprinted poly 2-aminophenol was developed for electrochemical determination of flutamide in environmental and biological samples. The composite fabrication was electrochemically carried out and the composite was characterized by Fourier transform infrared, proton and carbon nuclear magnetic resonance, field emission scanning electron microscopy, and energy-dispersive X-ray spectrometry. The spectroscopic results showed that polymerization of molecularly imprinted poly 2-aminophenol took place through a ladder structure system. After optimization of effective parameters on the response of the sensor, the obtained linear range, relative standard deviation (for a concentration of 50 μg L with five replicates) and limit of quantification for flutamide determination were determined to be 2-375 μg L, 1.54% and 0.8 μg L, respectively. The results showed that the application of poly 2-aminophenol in the structure of the proposed sensor using a molecular imprinting approach made the sensor highly selective toward flutamide, distinguishing it from similar nitro-containing compounds. The prepared sensor was successfully utilized to analyze environmental water and urine samples. The obtained results showed that the proposed method is in agreement with the HPLC method and can be used as a reliable alternative method for the analysis of flutamide.
基于还原氧化石墨烯、金纳米粒子和分子印迹聚2-氨基酚构建了一种选择性和灵敏的电化学传感器,用于环境和生物样品中氟他胺的电化学测定。复合材料通过电化学方法制备,并采用傅里叶变换红外光谱、质子和碳核磁共振、场发射扫描电子显微镜以及能量色散X射线光谱对其进行表征。光谱结果表明,分子印迹聚2-氨基酚通过梯状结构体系发生聚合反应。在优化传感器响应的有效参数后,氟他胺测定的线性范围、相对标准偏差(浓度为50 μg/L,平行测定5次)和定量限分别为2~375 μg/L、1.54%和0.8 μg/L。结果表明,采用分子印迹方法将聚2-氨基酚应用于所提出的传感器结构中,使得该传感器对氟他胺具有高度选择性,能够将其与类似的含硝基化合物区分开来。所制备的传感器成功用于分析环境水样和尿液样本。所得结果表明,所提出的方法与高效液相色谱法结果一致,可作为氟他胺分析的可靠替代方法。