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通过开环易位聚合合成分子印迹聚合物用于固相萃取双酚 A。

Synthesis of molecularly imprinted polymers via ring-opening metathesis polymerization for solid-phase extraction of bisphenol A.

机构信息

College of Chemistry and Molecular Engineering, Peking University, Beijing, China.

出版信息

Anal Bioanal Chem. 2011 Sep;401(4):1423-32. doi: 10.1007/s00216-011-5178-x. Epub 2011 Jul 1.

DOI:10.1007/s00216-011-5178-x
PMID:21720736
Abstract

The use of molecularly imprinted polymers (MIPs) prepared by ring-opening metathesis polymerization (ROMP) for bisphenol A (BPA) was reported in this article. The resulting MIPs have high imprinting and adsorption capacities, and can be used for separation and determination of BPA in environmental water samples. The successful application of ROMP in the molecular imprinting field is described here. For the first time, two cross-linkers (dicyclopentadiene and 2,5-norbornadiene) and two Grubbs catalysts (first and second generation) were investigated to compare their effects on the binding performance of MIPs. The ROMP technique is able to create the imprinted polymers within 1 h under mild conditions. Furthermore, it can provide MIPs with obvious imprinting effects towards the template, very fast template rebinding kinetics, high binding capacity and appreciable selectivity over structurally related compounds. The adsorption process for MIPs in this study can be completed within 45 min, which is much faster than that of bulk MIPs synthesized by traditional free-radical polymerization. The resulting imprinting polymer was evaluated for its use as a sorbent support in an off-line solid-phase extraction approach to recover BPA from diluted aqueous samples. The optimized extraction protocol resulted in a reliable MISPE method suitable for selective extraction and preconcentration of BPA from tap water, human urine and liquid milk samples. This article demonstrates the practical feasibility of the MIPs prepared via ROMP as solid-phase extraction materials.

摘要

本文报道了通过开环易位聚合(ROMP)制备的分子印迹聚合物(MIP)用于双酚 A(BPA)的应用。所得 MIP 具有高印迹和吸附容量,可用于环境水样中 BPA 的分离和测定。本文描述了 ROMP 在分子印迹领域的成功应用。首次研究了两种交联剂(二环戊二烯和降冰片二烯)和两种 Grubbs 催化剂(第一代和第二代),以比较它们对 MIP 结合性能的影响。ROMP 技术能够在温和条件下在 1 小时内制备印迹聚合物。此外,它可以为模板提供明显的印迹效应,模板快速重新结合动力学,高结合能力和对结构相关化合物的可观选择性。本研究中 MIP 的吸附过程可在 45 分钟内完成,比传统自由基聚合合成的块状 MIP 快得多。所得印迹聚合物被评估为用作离线固相萃取方法中的吸附剂支持物,以从稀释水溶液样品中回收 BPA。优化的萃取方案得到了一种可靠的 MISPE 方法,适用于从自来水、人尿和液态奶样品中选择性萃取和预浓缩 BPA。本文证明了通过 ROMP 制备的 MIP 作为固相萃取材料的实际可行性。

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