Univ - Franche Comte, Besancon, France.
J Sep Sci. 2011 Jun;34(11):1221-7. doi: 10.1002/jssc.201000903. Epub 2011 Apr 15.
The retention mechanism of a series of peptides on a single-wall carbon nanotube (SWCNT) stationary phase inside an HPLC column was investigated over a wide range of mobile phase compositions. While the similar size C18 column exhibited an efficiency of 11.5 μm, the SWCNT column increased the efficiency, i.e. 7.10 μm at a flow rate of 0.8 mL/min, and significantly affected the separation quality of the peptides. The values of enthalpy (ΔH) and entropy (ΔS()) of transfer of the peptides from the mobile to the SWCNT stationary phase were determined. The method studied each factor, i.e. ACN fraction x in the ACN/water mixture and column temperature. The changes in retention factor, ΔH and ΔS() as a function of the ACN fraction in the mobile phase were examined. These variations are explained using the organization of ACN in clusters in the ACN/water mixture and on the steric and electronic forces implied in the retention process. The information obtained in this work makes this SWCNT stationary phase useful for peptide research and demonstrated the role of ACN to improve the separation quality.
研究了在 HPLC 柱内的单壁碳纳米管(SWCNT)固定相上一系列肽的保留机制,涵盖了广泛的流动相组成范围。虽然相似尺寸的 C18 柱的效率为 11.5μm,但 SWCNT 柱增加了效率,即在 0.8mL/min 的流速下效率为 7.10μm,并且对肽的分离质量有显著影响。测定了肽从流动相转移到 SWCNT 固定相的焓(ΔH)和熵(ΔS())值。该方法研究了每个因素,即 ACN/water 混合物中的 ACN 分数 x 和柱温。考察了保留因子、ΔH 和 ΔS()随流动相 ACN 分数的变化。使用 ACN 在 ACN/water 混合物中形成的簇以及保留过程中涉及的空间和电子力来解释这些变化。这项工作获得的信息使这种 SWCNT 固定相在肽研究中具有实用性,并证明了 ACN 改善分离质量的作用。