Bi Wentao, Wang Man, Yang Xiaodi, Row Kyung Ho
Jiangsu Key Laboratory of Biomedical Materials, College of Chemistry and Materials Science, Nanjing Normal University, Nanjing, China.
J Sep Sci. 2014 Jul;37(13):1632-9. doi: 10.1002/jssc.201400142. Epub 2014 May 11.
Poly(ionic liquid)-bonded magnetic nanospheres were easily synthesized and applied to the pretreatment and determination of phenolic compounds in water samples, which have detrimental effects on water quality and the health of living beings. The high affinity of poly(ionic liquid)s toward the target compounds as well as the magnetic behavior of Fe3 O4 were combined in this material to provide an efficient and simple magnetic solid-phase extraction approach. The adsorption behavior of the poly(ionic liquid)-bonded magnetic nanospheres was examined to optimize the synthesis. Different parameters affecting the magnetic solid-phase extraction of phenolic compounds were assessed in terms of adsorption and recovery. Under the optimal conditions, the proposed method showed excellent detection sensitivity with limits of detection in the range of 0.3-0.8 ng/mL and precision in the range of 1.2-3.3%. This method was also applied successfully to the analysis of real water samples; good spiked recoveries over the range of 82.5-99.2% were obtained.
聚(离子液体)键合磁性纳米球易于合成,并应用于水样中酚类化合物的预处理和测定,这些酚类化合物会对水质和生物健康产生有害影响。该材料结合了聚(离子液体)对目标化合物的高亲和力以及Fe3O4的磁性,提供了一种高效且简单的磁性固相萃取方法。研究了聚(离子液体)键合磁性纳米球的吸附行为以优化合成。从吸附和回收率方面评估了影响酚类化合物磁性固相萃取的不同参数。在最佳条件下,该方法显示出优异的检测灵敏度,检测限在0.3 - 0.8 ng/mL范围内,精密度在1.2 - 3.3%范围内。该方法还成功应用于实际水样的分析;加标回收率在82.5 - 99.2%范围内。