首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >π-Selective stationary phases: (I) Influence of the spacer chain length of phenyl type phases on the aromatic and methylene selectivity of aromatic compounds in reversed phase high performance liquid chromatography
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π-Selective stationary phases: (I) Influence of the spacer chain length of phenyl type phases on the aromatic and methylene selectivity of aromatic compounds in reversed phase high performance liquid chromatography

机译:π选择性固定相:(I)反相高效液相色谱法中苯基型相的间隔链长度对芳族化合物芳烃和亚甲基选择性的影响

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Phenyl type stationary phases of increasing spacer chain length (phenyl, methyl phenyl, ethyl phenyl, propyl phenyl and butyl phenyl, with 0-4 carbon atoms in the spacer chain, respectively) were synthesised and packed in house to determine the impact that the spacer chain length has on the retention process. Two trends in the aromatic selectivity, q_(aromatic), were observed, depending on whether the number of carbon atoms in the spacer chain is even or odd. Linear logk' vs φ plots were obtained for each stationary phase and the S coefficient was determined from the gradient of these plots. For the phenyl type phases, the S vs n_c plots of the retention factors of linear polycyclic aromatic hydrocarbons vs the number of rings exhibit a distinct discontinuity that between 3 and 4 rings, which increases with increasing spacer chain length for even phases but decreases for odd phases. Accordingly, we suggest that the retention factors depend differently on the number of carbon atoms in the spacer chain depending on whether this number is even or odd and that this effect is caused by different orientations of the aromatic ring relative to the silica surface.
机译:合成并增加间隔链长度的苯基型固定相(分别在间隔链中具有0-4个碳原子的苯基,甲基苯基,乙基苯基,丙基苯基和丁基苯基)并包装在室内,以确定间隔物的影响链长对保留过程有影响。根据间隔基链中碳原子数是偶数还是奇数,观察到芳族选择性的两个趋势q_(aromatic)。获得每个固定相的线性logk'vsφ图,并从这些图的梯度确定S系数。对于苯基型相,线性多环芳烃的保留因子与环数的S vs n_c图显示出3至4个环之间的明显不连续性,偶数相随着间隔链长度的增加而增加,而奇数相则减少阶段。因此,我们建议保留因子取决于间隔链中碳原子的数目,取决于该数目是偶数还是奇数,并且这种影响是由芳环相对于二氧化硅表面的不同取向引起的。

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