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Study on preparation and characterization of monolithic silica capillary columns for high separation efficiency in high performance liquid chromatography

机译:高效液相色谱中高效分离整体硅胶毛细管柱的制备与表征研究

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摘要

This thesis addresses the preparation and characterization of monolithic silica capillary columns to examine column performance in high performance liquid chromatography. The monolithic silica capillaries and monolithic silica rods, prepared under similar preparation conditions, were evaluated. The most important findings in this thesis are as follows: First, it was successful to control retention ability and retention selectivity of solutes in reversed-phase liquid chromatography by changing the composition of the preparation feed solution. The hybrid columns prepared with tetramethoxysilane and methyltrimethoxysilane under the present preparation conditions were able to show higher column efficiency than the hybrid columns reported previously, while maintaining the retention factors in a similar range by reducing the concentration of methyltrimethoxysilane and increasing the total silane concentration in the feed solution. Second, the effects of hydrothermal treatments at 80 °C and 120 °C on mesoporosity of monolithic silica were investigated. The results of pore characterization of the capillary columns by inverse size exclusion chromatography were compatible with those of the nitrogen physisorption measurements performed on the silica rods regarding pore size distribution. The effect of hydrothermal treatment or silica precursor on mesopore size and surface area could be detected. In reversed-phase liquid chromatography, the hybrid column treated at 80 °C showed low column efficiency for large molecules (e.g. insulin), but not for small molecules (alkylbenzenes), because of the absence of the additional hydrothermal treatment at 120 °C. In contrast, for pure silica columns produced with tetramethoxysilane only, no significant difference in column efficiency was observable. The aforementioned difference supported the results of the examination by inverse size exclusion chromatography and the nitrogen physisorption measurement performed on the hybrid silica, treated at 80 °C only, showing the presence of a large volume of small pores below 60 Å. Consequently, it was suggested that the hydrothermal treatment at 120 °C has a stronger influence on the hybrid column in comparison with the pure silica column, to provide higher column efficiency with an increase in molecular size of solute.
机译:本文探讨了整体硅胶毛细管柱的制备和表征,以检验高效液相色谱中的色谱柱性能。对在类似制备条件下制备的整体式二氧化硅毛细管和整体式二氧化硅棒进行了评估。本论文最重要的发现如下:首先,通过改变制剂进料溶液的组成,成功地控制了反相液相色谱中溶质的保留能力和保留选择性。在目前的制备条件下,用四甲氧基硅烷和甲基三甲氧基硅烷制备的杂化柱能够显示出比以前报道的杂化柱更高的柱效,同时通过降低甲基三甲氧基硅烷的浓度并增加总硅烷浓度将保留因子保持在相似的范围内。饲料溶液。其次,研究了在80°C和120°C的水热处理对整体式二氧化硅介孔率的影响。通过逆尺寸排阻色谱对毛细管柱进行孔表征的结果与在二氧化硅棒上进行的关于孔尺寸分布的氮物理吸附测量的结果兼容。可以检测到水热处理或二氧化硅前体对中孔尺寸和表面积的影响。在反相液相色谱中,由于没有在120°C进行额外的水热处理,因此在80°C下处理的杂化柱对大分子(例如胰岛素)的色谱柱效率较低,但对于小分子(烷基苯)的色谱柱效率较低。相反,对于仅用四甲氧基硅烷生产的纯二氧化硅色谱柱,没有观察到柱效有显着差异。上述差异支持通过逆尺寸排阻色谱法进行的检查结果以及对仅在80°C下处理的杂化二氧化硅进行的氮物理吸附测量,结果表明存在大量低于60Å的小孔。因此,建议与纯二氧化硅色谱柱相比,在120°C的水热处理对混合色谱柱有更强的影响,以提供更高的色谱柱效率并增加溶质的分子大小。

著录项

  • 作者

    Hara Takeshi;

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  • 年度 2012
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  • 原文格式 PDF
  • 正文语种 eng
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