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Molecularly imprinted core-shell nanoparticles for determination of trace atrazine by reversible addition-fragmentation chain transfer surface imprinting

机译:分子印迹核壳纳米粒子的可逆加成-断裂链转移表面印迹法测定痕量at去津

摘要

A simple and effective method was proposed to prepare uniform surface-imprinted nanoparticles. This strategy was carried out by introducing vinyl groups to the surface of silica beads by a one-step modification, followed by copolymerization of functional monomers via reversible addition-fragmentation chain transfer (RAFT) precipitation polymerization. Owing to the intrinsic advantages of controlled/living polymerization and surface imprinting technology, the resultant RAFT surface-imprinted nano-sized polymers (RAFT-SINPs) demonstrated spherical shaped particles with excellent monodispersity, and improvements in imprinting efficiency and mass transfer in comparison to molecularly imprinted polymers (MIPs) prepared by traditional precipitation polymerization. Recoveries of 93.4% and 79.8% were achieved by one-step extraction when RAFT-SINPs were used for the preconcentration and selective separation of atrazine in spiked corn and lettuce samples, respectively. These results provided the possibility for the separation and enrichment of atrazine from complicated matrices by RAFT-SINPs.
机译:提出了一种简单有效的方法来制备均匀的表面印迹纳米粒子。通过一步改性将乙烯基基团引入二氧化硅珠表面,然后通过可逆的加成-断裂链转移(RAFT)沉淀聚合使功能性单体共聚,从而实现了这一策略。由于可控/活性聚合和表面印迹技术的固有优势,所得的RAFT表面印迹纳米尺寸聚合物(RAFT-SINPs)显示出球形颗粒,具有优异的单分散性,与分子相比,印迹效率和传质性得到了改善通过传统的沉淀聚合反应制备的印迹聚合物(MIP)。当将RAFT-SINPs分别用于加标玉米和生菜样品中的阿特拉津的预浓缩和选择性分离时,通过一步提取的回收率分别为93.4%和79.8%。这些结果提供了通过RAFT-SINP从复杂基质中分离和富集r去津的可能性。

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