Chen Yang, Feng Ting, Li Gongke, Hu Yufei
J Sep Sci. 2015 Jan;38(2):301-8. doi: 10.1002/jssc.201400960.
The development and application of an imazethapyr molecularly imprinted polymer-based solid-phase microextraction coating were investigated. A novel molecularly imprinted polymer coating with imazethapyr as template was firstly prepared by a one-step in situ polymerization method, and demonstrated specific selectivity to imidazolinone herbicides in complicated samples. The structural characteristics and extraction performance of the imazethapyr molecularly imprinted polymer coating were studied. The molecularly imprinted polymer coating was homogeneous, dense, and heat and solvent resistant. Adsorption capacity experiments showed that the molecularly imprinted polymer coating could selectively extract imazethapyr and its structural analogs, and the maximum adsorption capacity was 2.5 times as much as that of the nonimprinted polymer coating. A method for the determination of five imidazolinones by imazethapyr molecularly imprinted polymer solid-phase microextraction coupled with high-performance liquid chromatography was developed. The linear range was 0.50-50 μg/L for imazameth, imazamox, imazapyr acid, and imazethapyr, and 1.0-100 μg/L for imazaquin acid, and the detection limits were within the range of 0.070-0.29 μg/L. The method was applied to simultaneous and multiresidual determinations of trace imidazolinones in rice, peanut, and soil samples with satisfactory recoveries of 60.6-99.5, 79.1-123, and 61.3-116%, respectively, and relative standard deviations of 0.40-10%, which indicated that this method was suitable for the trace analysis of imidazolinones in complex food and environmental samples.
研究了一种基于咪草烟分子印迹聚合物的固相微萃取涂层的开发与应用。首先采用一步原位聚合法制备了以咪草烟为模板的新型分子印迹聚合物涂层,并证明其对复杂样品中的咪唑啉酮类除草剂具有特异性选择性。研究了咪草烟分子印迹聚合物涂层的结构特征和萃取性能。该分子印迹聚合物涂层均匀、致密,且耐热、耐溶剂。吸附容量实验表明,该分子印迹聚合物涂层能够选择性地萃取咪草烟及其结构类似物,最大吸附容量是非印迹聚合物涂层的2.5倍。建立了一种咪草烟分子印迹聚合物固相微萃取结合高效液相色谱法测定5种咪唑啉酮的方法。咪草烟、甲氧咪草烟、吡唑特酸和咪草烟的线性范围为0.50 - 50μg/L,唑嗪酮酸的线性范围为1.0 - 100μg/L,检测限在0.070 - 0.29μg/L范围内。该方法应用于大米、花生和土壤样品中痕量咪唑啉酮的同时多残留测定,回收率分别为60.6 - 99.5%、79.1 - 123%和61.3 - 116%,相对标准偏差为0.40 - 10%,表明该方法适用于复杂食品和环境样品中咪唑啉酮的痕量分析。