Ruiz-Córdova Gerson A, Vega-Chacón Jaime, Sotomayor Maria Del Pilar Taboada, Tuesta Juan C, Khan Sabir, Picasso Gino
Technology of Materials for Environmental Remediation (TecMARA) Research Group, Faculty of Sciences, National University of Engineering, Lima 15333, Peru.
Institute of Chemistry, State University of São Paulo (UNESP), Araraquara 01049-010, SP, Brazil.
Polymers (Basel). 2024 Mar 7;16(6):733. doi: 10.3390/polym16060733.
This study presents a new optical sensor for tartrazine (TAR) quantification developed using a molecularly imprinted polymer (MIP) as the recognition element, with optical fiber serving as the supporting substrate. The fiber surface was functionalized with 3-(trimethoxysilyl)propyl methacrylate (MPS), and the fiber was coated with MIP using the precipitation polymerization method. The analysis of MIP immobilization on the functionalized optical fiber (FF) was conducted through the use of scanning electron microscopy (SEM) and Fourier transform infrared spectroscopy (FTIR) techniques. Experimental parameters, such as contact time and fiber length, were adjusted in order to obtain the highest sensitive response signal for the functionalized optical fiber (FF-MIP). The fiber sensor, FF-MIP, exhibited a relatively higher response signal for tartrazine compared to other interfering dyes. The rapid and total desorption of the analyte from FF-MIP allowed the immediate reemployment of FF-MIP, which also presented an acceptable repeatability for the reflectance signal. The imprinting factors for the studied dyes were between 0.112 and 0.936 in front of TAR, 1.405, and selectivity factors were between 1.501 and 12.545, confirming the sensor selectivity. The FF-MIP sensor was successfully applied for tartrazine quantification in real water samples, where it yielded satisfactory results comparable to those of the HPLC reference method.
本研究提出了一种用于酒石黄(TAR)定量的新型光学传感器,该传感器以分子印迹聚合物(MIP)作为识别元件,以光纤作为支撑基质。用甲基丙烯酸3-(三甲氧基硅基)丙酯(MPS)对光纤表面进行功能化处理,并采用沉淀聚合法在光纤上包覆MIP。通过扫描电子显微镜(SEM)和傅里叶变换红外光谱(FTIR)技术对MIP固定在功能化光纤(FF)上的情况进行了分析。调整了诸如接触时间和光纤长度等实验参数,以获得功能化光纤(FF-MIP)的最高灵敏响应信号。与其他干扰染料相比,光纤传感器FF-MIP对酒石黄表现出相对较高的响应信号。分析物从FF-MIP上的快速完全解吸使得FF-MIP能够立即重新使用,其反射信号也具有可接受的重复性。在所研究的染料中,相对于TAR,印迹因子在0.112至0.936之间,在TAR之前为1.405,选择性因子在1.501至12.545之间,证实了传感器的选择性。FF-MIP传感器成功应用于实际水样中酒石黄的定量分析,其结果与高效液相色谱参考方法的结果相当,令人满意。