Center of Scientific Research, The Second Affiliated Hospital and Yuying Children's Hospital of Wenzhou Medical University, Wenzhou, P. R. China.
Institute of Environmental Safety and Human Health, Wenzhou Medical University, Wenzhou, P. R. China.
J Sep Sci. 2018 May;41(9):2029-2036. doi: 10.1002/jssc.201701162. Epub 2018 Feb 9.
One-monomer molecularly imprinted magnetic nanoparticles were prepared as adsorbents for selective extraction of bisphenol A from water in this study. A single bi-functional monomer was adopted for preparation of the molecularly imprinted polymer, avoiding the tedious trial-and-error optimizations as traditional strategy. Moreover, bisphenol F was used as the dummy template for bisphenol A to avoid the interference from residual template molecules. These nanoparticles showed not only large adsorption capacity and good selectivity to the bisphenol A but also outstanding magnetic response performance. Furthermore, they were successfully used as magnetic solid-phase extraction adsorbents of bisphenol A from various water samples, including tap water, river water, and seawater. The developed method was found to be much more efficient, convenient, and economical for selective extraction of bisphenol A compared with the traditional solid-phase extraction. Separation of these nanoparticles can be easily achieved with an external magnetic field, and the optimized adsorption time was only 15 min. The recoveries of bisphenol A in different water samples ranged from 85.38 to 93.75%, with relative standard deviation lower than 7.47%. These results showed that one-monomer molecularly imprinted magnetic nanoparticles had the potential to be popular adsorbents for selective extraction of pollutants from water.
本研究制备了一种单分子印迹磁性纳米粒子作为吸附剂,用于从水中选择性萃取双酚 A。采用单双功能单体制备印迹聚合物,避免了传统策略中繁琐的反复试验优化。此外,还使用双酚 F 作为双酚 A 的虚拟模板,以避免残留模板分子的干扰。这些纳米粒子不仅对双酚 A 具有较大的吸附容量和良好的选择性,而且还具有出色的磁响应性能。此外,它们还成功地用作从各种水样(包括自来水、河水和海水)中萃取双酚 A 的磁固相萃取吸附剂。与传统的固相萃取相比,该方法在选择性萃取双酚 A 方面更加高效、方便和经济。通过外加磁场可以很容易地分离这些纳米粒子,优化的吸附时间仅为 15 分钟。双酚 A 在不同水样中的回收率在 85.38%至 93.75%之间,相对标准偏差低于 7.47%。这些结果表明,单分子印迹磁性纳米粒子有望成为从水中选择性萃取污染物的流行吸附剂。