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毛细管电泳中弱酸和弱碱或强碱形成的移动反应界面的样品堆积比较研究:二、实验。

Comparative study on sample stacking by moving reaction boundary formed with weak acid and weak or strong base in capillary electrophoresis: II. Experiments.

机构信息

Laboratory of Analytical Biochemistry & Bio-separation, Key Laboratory of MOE for Microbial Metabolism and School of Life Science & Biotechnology, Shanghai Jiao Tong University, 800 Dongchuan Rd, Shanghai, 200240, China.

出版信息

Talanta. 2011 Apr 15;84(2):547-57. doi: 10.1016/j.talanta.2011.01.062. Epub 2011 Feb 1.

DOI:10.1016/j.talanta.2011.01.062
PMID:21376986
Abstract

To demonstrate the theoretic method on the stacking of zwitterion with moving reaction boundary (MRB) in the accompanying paper, the relevant experiments were performed. The experimental results quantitatively show that (1) MRB velocity, including the comparisons between MRB and zwitterionic velocities, possesses key importance to the design of MRB stacking; (2) a much long front alkaline plug without sample should be injected before the sample injection for a complete stacking of zwitterion if sample buffer is prepared with strong base, conversely no such plug is needed if using a weak base as the sample buffer with proper concentration and pH value; (3) the presence of salt in MRB system holds dramatic effect on the MRB stacking if sample solution is a strong base, but has no effect if a weak alkali is used as sample solution; (4) all of the experiments of this paper, including the previous work, quantitatively manifest the theory and predictions shown in the accompanying paper. In addition, the so-called derivative MRB-induced re-stacking and transient FASI-induced re-stacking were also observed during the experiments, and the relevant mechanisms were briefly demonstrated with the results. The theory and its calculation procedures developed in the accompanying paper can be well used for the predictions to the MRB stacking of zwitterion in CE.

摘要

为了在随附论文中展示带有移动反应边界(MRB)的两性离子堆积的理论方法,进行了相关实验。实验结果定量地表明:(1)MRB 速度,包括 MRB 与两性离子速度的比较,对 MRB 堆积的设计具有关键重要性;(2)如果样品缓冲液是用强碱制备的,则在样品进样之前,应先注入无样品的很长的碱性前塞,以完全堆积两性离子,相反,如果使用弱碱且浓度和 pH 值合适,则不需要这种前塞;(3)如果样品溶液是强碱,则 MRB 系统中盐的存在对 MRB 堆积有显著影响,但如果使用弱碱作为样品溶液则没有影响;(4)本文所有实验,包括之前的工作,都定量地体现了随附论文中所示的理论和预测。此外,在实验过程中还观察到了所谓的衍生 MRB 诱导再堆积和瞬态 FASI 诱导再堆积,并根据结果简要展示了相关机制。随附论文中开发的理论及其计算程序可很好地用于预测 CE 中两性离子的 MRB 堆积。

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