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首页> 外文期刊>Journal of molecular recognition: JMR >A new strategy for accelerated extraction of target compounds using molecularly imprinted polymer particles embedded in a paper‐based disk
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A new strategy for accelerated extraction of target compounds using molecularly imprinted polymer particles embedded in a paper‐based disk

机译:使用分子印迹聚合物颗粒嵌入纸盘的分子印迹聚合物颗粒加速靶化合物的新策略

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摘要

Abstract In this study, a general simple and inexpensive method is introduced for the preparation of a paper‐based selective disk‐type solid phase extraction (SPE) technique, appropriate for fast and high throughput monitoring of target compounds. An ion exchange molecularly imprinted polymer (MIP) was synthesized for the extraction and analysis of acesulfame, an anthropogenic water quality marker. Acesulfame imprinting was used as an example for demonstrating the benefits of a nanosized, swellable MIP extraction sorbents integrated in an on‐site compatible concept for water quality monitoring. Compared with an 8?mL standard SPE cartridge, the paper‐based MIP disk (47?mm ?) format allowed (1) high sample flow rates up to 30?mL?min ?1 without losing extraction efficiency (2) extracting sample volumes up to 500?mL in much shorter times than with standard SPE, (3) the reuse of the disks (up to 3 times more than SPE cartridge) due to high robustness and an efficient post‐cleaning, and (4) reducing the sampling time from 100?minutes (using the standard SPE format) to about 2?minutes with the MIP paper disk for 50?mL water sample. Different parameters like cellulose fiber/polymer ratios, sample volume, sample flow‐rate, washing, and elution conditions were evaluated and optimized. Using developed extraction technique with high‐performance liquid chromatography–tandem mass spectrometry (HPLC–MS–MS) analysis, a new protocol was established that provides detection and quantification limits of 0.015?μg?L ?1 and 0.05?μg?L ?1 , respectively. The developed paper disks were used in‐field for the selective extraction of target compounds and transferred to the laboratory for further analysis.
机译:摘要在本研究中,引入了一种普遍简单且廉价的方法,用于制备纸种的选择性盘型固相萃取(SPE)技术,适用于对目标化合物的快速和高通量监测。合成了离子交换分子印迹聚合物(MIP),用于乙酰磺胺醛,一种人为水质标志物的提取和分析。用aceSulfame印记用作展示纳米化的可溶胀的米普萃取吸附剂的益处的示例,该乳房萃取吸附剂整合在现场兼容的概念中进行水质监测。与8毫升标准SPE盒相比,纸张的MIP盘(47×mm?)格式允许(1)高样的样品流速高达30?ml?min≤1,而不失去提取效率(2)提取样品体积在较短的时间内比标准SPE快,从100?分钟(使用标准SPE格式)到大约2个分钟的时间,用MIP纸盘50?ml水样。评估纤维素纤维/聚合物比例,样品体积,样品流速,洗涤和洗脱条件等不同的参数。利用具有高效液相色谱 - 串联质谱(HPLC-MS-MS)分析的开发的提取技术,建立了一种新的方案,提供了0.015Ωμg≤1和0.05≤1和0.05?1 , 分别。用于选择性提取靶化合物并转移到实验室的型型纸盘用于进一步分析。

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