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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Separation of chiral compounds using magnetic molecularly imprinted polymer nanoparticles as stationary phase by microchip capillary electrochromatography1
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Separation of chiral compounds using magnetic molecularly imprinted polymer nanoparticles as stationary phase by microchip capillary electrochromatography1

机译:通过微芯片毛细管电粒子术用磁性分子压印聚合物纳米粒子将手性化合物分离为固定相1

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摘要

In this work, a simple and rapid approach was developed for separation and detection of chiral compounds based on a magnetic molecularly imprinted polymer modified poly(dimethylsiloxane) (PDMS) microchip coupled with electrochemical detection. Molecularly imprinted polymers were prepared employing Fe3O4 nanoparticles (NPs) as the supporting substrate and norepinephrine as the functional monomer in the presence of template molecule in a weak alkaline solution. After extracting the embedded template molecules, Fe3O4@ polynorepinephrine NPs (MIP-Fe3O4@ PNE NPs) showed specific molecular recognition selectivity and high affinity towards the template molecule, which were then used as stationary phase of microchip capillary electrochromatography for chiral compounds separation. Mandelic acid and histidine enantiomers were used as model compounds to test the chiral stationary phase. By using R-mandelic acid as the template molecule, mandelic acid enantiomer was effectively separated and detected on the MIP-Fe3O4@ PNE NPs modified PDMS microchip. Moreover, the successful separation of histidine enantiomers on the MIP-Fe3O4@ PNE NPs modified microchip using L-histidine as template molecule was also achieved.
机译:在这项工作中,一个简单的和快速的方法被用于基于磁性分子印迹聚合物改性的聚(二甲基硅氧烷)加上电化学检测(PDMS)微芯片手性化合物的分离和检测显影。制备分子印迹聚合物采用Fe3O4的纳米颗粒(NP)作为支撑衬底和去甲肾上腺素作为模板分子在弱碱性溶液中存在的官能单体。提取嵌入的模板分子后,四氧化三铁@ polynorepinephrine的NP(MIP-Fe3O4的@ PNE的NP)显示特定分子识别的选择性并朝向模板分子,然后将其用作微芯片毛细管电对于手性化合物的分离固定相具有高亲和力。扁桃酸和组氨酸对映异构体被用作模型化合物以测试手性固定相。通过使用R-扁桃酸作为模板分子,扁桃酸对映异构体有效地分离并在MIP-Fe3O4的@ PNE的NP改性检测PDMS微芯片。此外,组氨酸对MIP-Fe3O4的@ PNE的NP对映体的成功分离使用L-组氨酸作为模板分子也实现改性微芯片。

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