Farzam Seyed Farnood, Shemirani Farzaneh, Karimi Sadegh
School of Chemistry, College of Science, University of Tehran, P.O. Box 14155-6455, Tehran, Iran.
School of Chemistry, College of Science, University of Tehran, P.O. Box 14155-6455, Tehran, Iran.
Talanta. 2024 May 15;272:125744. doi: 10.1016/j.talanta.2024.125744. Epub 2024 Feb 11.
In this study, we synthesized an imidazolium ionic liquid immobilized on magnetic mesoporous silica (IL-MMS) and evaluated its performance as a sorbent material for a green micro-solid phase extraction (μ-SPE) of multiclass pesticides in water. The synthesized IL-MMS was characterized by various analytical techniques, including Fourier-transform infrared spectroscopy (FTIR), Brunauer-Emmett-Teller (BET) and Barrett-Joyner-Halenda (BJH) analyses (N adsorption/desorption), Vibrating Sample Magnetometer (VSM), energy-dispersive spectroscopy (EDS) and Field emission scanning electron microscopy (FESEM). Our synthesized IL-MMS demonstrated excellent magnetic properties (31.5 emu/g), high surface area (1177.4 m/g), proper pore size (⁓4.2 nm) and volume (1.80 cm/g). Under optimized extraction conditions, the IL-MMS exhibited a high adsorption capacity for a variety of pesticides, including organophosphates, carbamates, and pyrethroids. The proposed μ-SPE method using IL-MMS showed good linearity (R > 0.99), low limits of detection (LODs) ranging from 0.04 to 1.63 ng/L, and suitable recovery rate was between 82.4% and 109.8% for different pesticides. In addition, the method also exhibited excellent reproducibility, with relative standard deviations (RSDs) of less than 8% for both intra and inter-day precision. In overall, the synthesized IL-MMS has proven to be a highly promising material for sorbent-based micro-solid phase extraction (μ-SPE) of multiclass pesticides in water. With its simple, efficient, and eco-friendly approach to pesticide analysis, this method shows great potential for future pesticide detection and monitoring efforts due to its sensitivity, accuracy, and adaptability to various environmental conditions.
在本研究中,我们合成了一种固定在磁性介孔二氧化硅上的咪唑鎓离子液体(IL-MMS),并评估了其作为吸附剂材料用于水中多类农药绿色微固相萃取(μ-SPE)的性能。通过多种分析技术对合成的IL-MMS进行了表征,包括傅里叶变换红外光谱(FTIR)、布鲁诺尔-埃米特-泰勒(BET)和巴雷特-乔伊纳-哈伦达(BJH)分析(N吸附/解吸)、振动样品磁强计(VSM)、能量色散光谱(EDS)和场发射扫描电子显微镜(FESEM)。我们合成的IL-MMS表现出优异的磁性(31.5 emu/g)、高比表面积(1177.4 m/g)、合适的孔径(⁓4.2 nm)和孔体积(1.80 cm/g)。在优化的萃取条件下,IL-MMS对多种农药表现出高吸附容量,包括有机磷、氨基甲酸酯和拟除虫菊酯类。所提出的使用IL-MMS的μ-SPE方法显示出良好的线性(R > 0.99)、低检测限(LOD)范围为0.04至1.63 ng/L,不同农药的回收率在82.4%至109.8%之间。此外,该方法还表现出优异的重现性,日内和日间精密度的相对标准偏差(RSD)均小于8%。总体而言,合成的IL-MMS已被证明是用于水中多类农药基于吸附剂的微固相萃取(μ-SPE)的极有前景的材料。凭借其简单、高效且环保的农药分析方法,该方法因其灵敏度、准确性以及对各种环境条件的适应性,在未来农药检测和监测工作中显示出巨大潜力。