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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Immobilized chiral tropine ionic liquid on silica gel as adsorbent for separation of metal ions and racemic amino acids
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Immobilized chiral tropine ionic liquid on silica gel as adsorbent for separation of metal ions and racemic amino acids

机译:硅胶上固定的手性松果碱离子液体作为吸附剂,用于分离金属离子和外消旋氨基酸

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摘要

Tropine-type chiral ionic liquid with proline anion was immobilized on silica gel by chemical modification method for the first time, which was proved by elemental, infrared spectrum and thermogravimetric analysis. Secondly, the performance of this kind of ionic liquid-modified silica gel was investigated in the adsorption of some metal ions, which included Cu2+, Fe3+, Mn2+ and Ni2+. Then the effects of time, initial concentration and temperature on adsorption for Cu2+ ions were studied in detail, which was followed by the further research of adsorption kinetics and thermodynamics. The adsorption could be better described by pseudo-second-order kinetics model and that the process was spontaneous, exothermic and entropy decreasing. In the mode of 'reuse after adsorption', the ionic liquid-modified silica gel with saturated adsorption of Cu2+ was finally used in resolution of racemic amino acids for the first time. The static experiment showed that adsorption rate of two enantiomers was obviously different. Inspired by this, the complex was packed in chromatographic column for the separation of racemic amino acids and D-enantiomers were firstly eluted by water or ethanol. Steric hindrance was found as one of key influencing factors for its effect on the stability of the complex. (C) 2015 Elsevier B.V. All rights reserved.
机译:带有脯氨酸阴离子的Tropine型手性离子液体通过化学修饰方法首次固定在硅胶上,通过元素,红外光谱和热重分析证明。其次,研究了这种离子液体改性硅胶在某些金属离子的吸附性能,其中包括Cu2 +,Fe3 +,Mn2 +和Ni2 +。然后详细研究了时间,初始浓度和温度对Cu2 +离子吸附的影响,随后进一步研究了吸附动力学和热力学。吸附可以通过拟二级动力学模型更好地描述,并且该过程是自发的,放热的和熵降低的。以“吸附后再利用”的模式,具有饱和吸附Cu2 +的离子液体改性硅胶最终首次用于拆分外消旋氨基酸。静态实验表明两种对映体的吸附速率存在明显差异。受此启发,将配合物装填在色谱柱中以分离外消旋氨基酸,并首先用水或乙醇洗脱D-对映体。立体位阻被认为是影响复合物稳定性的关键因素之一。 (C)2015 Elsevier B.V.保留所有权利。

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