Instituto de Química, Universidade Estadual Paulista (UNESP), Departamento de Química Analítica, Araraquara, SP, Brazil; National Institute for Alternative Technologies of Detection, Toxicological Evaluation & Removal of Micropollutants and Radioactives (INCT-DATREM), Araraquara, SP, Brazil.
Instituto de Química, Universidade Estadual Paulista (UNESP), Departamento de Química Analítica, Araraquara, SP, Brazil; National Institute for Alternative Technologies of Detection, Toxicological Evaluation & Removal of Micropollutants and Radioactives (INCT-DATREM), Araraquara, SP, Brazil.
Mater Sci Eng C Mater Biol Appl. 2019 Oct;103:109825. doi: 10.1016/j.msec.2019.109825. Epub 2019 May 29.
A new biomimetic sensor was prepared on carbon paste with magnetic molecularly imprinted polymer (mag-MIP) for sensitive and selective detection of methyl green dye. The mag-MIP was synthesized using a functional monomer that was selected before by computational simulation. A mag-NIP (magnetic non-imprinted polymer) control material was also prepared for comparative purposes. Modeling adsorption studied revealed that the dye-polymer interface followed pseudo-first order kinetics and that maximum adsorption (Q) of the dye on mag-MIP was 3.13 mg g, while the value for mag-NIP was 1.58 mg g. The selective material was used as a sensing spot in fabrication of an electrochemical sensor based on modified carbon paste. For electrochemical analysis, the best achievement of the sensor was acquire by tack together a paste with 6.7% (w/w) of mag-MIP and using square-wave adsorptive anodic stripping voltammetry (SWAdASV) in 0.1 mol L phosphate buffer (pH 7.0), with an applied potential (E) of 0.3 V vs. Ag|AgCl during an adsorption time (T) of 120 s. The results were obtained under optimized conditions in which sensor provided a linear concentration range of methyl green from 9.9 × 10 to 1.8 × 10 mol L, with a limit of detection (LOD) of 1.0 × 10 mol L and a satisfactory relative standard deviation (RSD) of 4.3% (n = 15). The proposed sensor was applying using two spiked river water samples, obtaining recoveries ranging from 93% to 103%. The proposed method exhibits excellent precision also high reliability and proved to be an alternative method for the quantification of methyl green in real samples.
一种新型的仿生传感器是在碳糊上用磁性分子印迹聚合物(mag-MIP)制备的,用于灵敏和选择性检测甲基绿染料。mag-MIP 是使用通过计算模拟选择的功能单体合成的。还制备了磁性非印迹聚合物(mag-NIP)对照材料用于比较。吸附模型研究表明,染料-聚合物界面遵循准一级动力学,染料在 mag-MIP 上的最大吸附(Q)为 3.13mg/g,而 mag-NIP 的值为 1.58mg/g。将这种选择性材料用作基于修饰碳糊的电化学传感器的传感点。对于电化学分析,通过将含有 6.7%(w/w)mag-MIP 的糊剂粘贴在一起,并在 0.1mol/L 磷酸盐缓冲液(pH 7.0)中使用方波吸附阳极溶出伏安法(SWAdASV),在 0.3V 对 Ag|AgCl 施加电位(E)在 120s 的吸附时间(T)内,获得了传感器的最佳性能。在优化条件下获得了结果,其中传感器提供了从 9.9×10 到 1.8×10 摩尔/L 的甲基绿线性浓度范围,检测限(LOD)为 1.0×10 摩尔/L,相对标准偏差(RSD)为 4.3%(n=15)令人满意。该传感器应用于两个加标河水样品,回收率范围为 93%至 103%。该方法具有良好的精密度和可靠性,可作为实际样品中甲基绿定量的替代方法。