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Micellar electrokinetic chromatography-mass spectrometry using a polymerized chiral surfactant

机译:使用聚合的手性表面活性剂的胶束电动色谱-质谱

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The coupling of chiral micellar electrokinetic chromatography (CMEKC) to mass spectrometry (MS) using conventional surfactant [above the critical micelle concentration (cmc)] is very challenging. Preliminary investigation in this laboratory indicates that the use of a chiral polymeric surfactant provides one possible solution to this difficult coupling. This is because of many positive attributes of micelle polymers which include zero cmc, lower surface activity, low volatility, high electrophoretic mobility, and function as a suitable separation medium even at lower concentrations of pseudophases. In this work, the feasibility of using poly(sodium N-undecanoyl-L-valinate (poly-L-SUV) in CMEKC-MS is demonstrated. After CMEKC separation, enantiomers of 1, 1'-binaphthol (BOH) were detected using electrospray ionization mass spectrometry (ESI-MS) by selected ion monitoring (SIM) in the negative ion mode. Although in the SIM mode ESI-MS parameters (nebulizer pressure, drying gas flow rate, drying gas temperature, and sheath liquid flow rate) affected only the signal-to-noise ratio of (+/- ) BOH, two of the ESI-MS parameters (nebulizer pressure, sheath flow rate) were found to have a significant impact on chiral resolution of (+/- ) BOH. At the optimum ESI-MS conditions, the enantioseparation of (+/- ) BOH was successfully accomplished by varying the buffer pH, concentration of the volatile background electrolyte, and poly-L-SUV.
机译:使用常规表面活性剂[高于临界胶束浓度(cmc)]将手性胶束电动色谱法(CMEKC)与质谱(MS)偶联非常具有挑战性。在该实验室中的初步研究表明,手性聚合物表面活性剂的使用为这种困难的偶联提供了一种可能的解决方案。这是由于胶束聚合物的许多积极特性,包括零cmc,较低的表面活性,较低的挥发性,较高的电泳迁移率,甚至在较低的假相浓度下也可作为合适的分离介质。在这项工作中,证明了在CMEKC-MS中使用聚N-十一碳酰基-L-缬氨酸钠(poly-L-SUV)的可行性。CMEKC分离后,检测到1,1'-联萘酚(BOH)对映体在负离子模式下通过选定的离子监测(SIM)进行电喷雾电离质谱(ESI-MS),尽管在SIM模式下,ESI-MS参数(雾化器压力,干燥气体流速,干燥气体温度和鞘液流速)仅影响(+/-)BOH的信噪比,发现两个ESI-MS参数(雾化器压力,鞘流率)对(+/-)BOH的手性拆分有重要影响。在最佳的ESI-MS条件下,通过改变缓冲液的pH值,挥发性背景电解质的浓度和聚L-SUV可以成功实现(+/-)BOH的对映体分离。

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