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A mechanistic study of geminal dicationic ionic liquids as mobile phase additives for improving the separation performance of high-performance liquid chromatography

机译:妊娠型离子液体作为流动相添加剂的机械研究,提高高效液相色谱分离性能

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摘要

Due to the acidity and strong polarity of auxinic herbicides, separation of these compounds in food and environmental samples is a great challenge. In this study, 12 geminal dicationic ionic liquids (GDILs) were synthesized and used as mobile phase additives to separate six auxinic herbicides. The effects of the kind of dication, the length of linkage chain, the kind of anion, the concentration of GDILs, and the pH of mobile phase for the separation were investigated in detail. Compared with [C(4)MIm][BF4], GDILs ([C-8(MIm)(2)][BF4](2)) showed higher resolution, better peak shape, and lower retention factor. The separation performance of additives was in the order of [C-8(MIm)(2)][BF4](2) > [C-8(MPy)(2)][BF4](2), [(C-4)(2)MPiz][BF4](2), [C-8(MMo)(2)][BF4](2), [C(4)MIm][BF4], [C-8(MPid)(2)][BF4](2) > [C-8(HBOc)(2)][BF4](2) > TBAB. GDILs showed the best separation under the following conditions: cation: imidazolium; length of linkage chain: 8; anion: BF4 (-); mobile phase pH: 3; concentration: 5 mmol L-1. The separation mechanism of GDILs may mainly be due to their symmetric structure and the abundance of positive charge sites which could help GDILs shield the residual silanol and interact with analytes more efficiently to improve the peak shapes, resolution, and retention. In addition, the GDILs in the mobile phase and anions adsorbed on the stationary phase also greatly affected the separation. GDILs used as mobile phase additives to separate auxinic herbicides showed high efficiency separation and low damage to HPLC columns, and the developed chromatographic method had excellent linearity, accuracy, precision, and repeatability. The application and mechanism study of GDILs in HPLC would be instructive to determine and separate acid herbicides in food and environmental samples.
机译:由于助性除草剂的酸度和强度强,这些化合物在食品和环境样品中的分离是一个很大的挑战。在该研究中,合成了12种初始胶乳离子液体(GDIL)并用作流动相添加剂以分离六种助体除草剂。详细研究了效果,连杆,连杆长度,阴离子的种类,GDIL的浓度,以及分离的流动相的pH。与[C(4)MIM] [BF4]相比,GDIL([C-8(MIM)(2)] [BF4](2))显示出更高的分辨率,更好的峰形和更低的保留因子。添加剂的分离性能是[C-8(MIM)(2)] [BF4](2)> [C-8(MPY)(2)] [BF4](2),[(C- 4)(2)MPIZ] [BF4](2),[C-8(MMO)(2)] [BF4](2),[C(4)MIM] [BF4],[C-8(MPID) (2)] [BF4](2)> [C-8(HBOC)(2)] [BF4](2)> TBAB。 GDIL在以下条件下显示出最佳分离:阳离子:咪唑鎓;连锁链长度:8;阴离子:BF4( - );流动相pH:3;浓度:5mmol L-1。 GDIL的分离机制主要是由于它们的对称结构和阳性电荷位点的丰度,这可以帮助GDIL屏蔽残留硅烷醇并更有效地与分析物相互作用以改善峰形状,分辨率和保留。此外,流动相的GDIL和吸附在固定相上的阴离子也极大地影响了分离。用作流动相添加剂以单独的助体蛋白除草剂的GDIL显示出高效率的分离和对HPLC柱的低损伤,并且显影的色谱法具有优异的线性,精度,精度和可重复性。 GDIL在HPLC中的应用和机制研究是指导和将酸除草剂分离食品和环境样品中的指导性。

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