Insights into the Retention Mechanism for Small Neutral Compounds on Silica-Based Phenyl Phases in Reversed-Phase Liquid Chromatography

被引:0
|
作者
Sanka N. Atapattu
Colin F. Poole
Mike B. Praseuth
机构
[1] CanAm Bioresearch Inc.,Department of Chemistry
[2] Wayne State University,undefined
[3] Phenomenex Inc.,undefined
来源
Chromatographia | 2018年 / 81卷
关键词
Reversed-phase liquid chromatography; Retention; Selectivity; Solvation parameter model; System maps; Stationary phases; Phenyl phases;
D O I
暂无
中图分类号
学科分类号
摘要
The system constants of the solvation parameter model are used to prepare system maps for the retention of small neutral compounds on phenylhexylsiloxane- and pentafluorophenylpropylsiloxane-bonded superficially porous silica stationary phases (Kinetex Phenyl-Hexyl and Kinetex F5) for aqueous mobile phases containing 10–70% (v/v) methanol or acetonitrile. Electrostatic interactions (cation exchange) are important for the retention of weak bases for acetonitrile–water mobile phases, but virtually absent for the same compounds for methanol–water mobile phases. The selectivity of the Kinetex Phenyl-Hexyl stationary phase for small neutral compounds is similar to an octadecylsiloxane-bonded silica stationary phase with similar morphology Kinetex C-18 for both methanol–water and acetonitrile–water mobile phase compositions. The Kinetex Phenyl-Hexyl and XBridge Phenyl stationary phases with the same topology but different morphology are selectivity equivalent, confirming that solvation of the interphase region can be effective at dampening selectivity differences for modern stationary phases. Small selectivity differences observed for XTerra Phenyl (different morphology and topology) confirm previous reports that the length and type of space arm for phenylalkylsiloxane-bonded silica stationary phases can result in small changes in selectivity. The pentafluorophenylpropylsiloxane-bonded silica stationary phase (Kinetex F5) has similar separation properties to the phenylhexylsiloxane-bonded silica stationary phases, but is not selectivity equivalent. However, for method development purposes, the scope to vary separations from an octadecylsiloxane-bonded silica stationary phase (Kinetex C-18) to “phenyl phase” of the types studied here is limited for small neutral compounds. In addition, selectivity differences for the above stationary phases are enhanced by methanol–water and largely suppressed by acetonitrile–water mobile phases. For bases, larger selectivity differences are possible for the above stationary phases if electrostatic interactions are exploited, especially for acetonitrile-containing mobile phases.
引用
收藏
页码:225 / 238
页数:13
相关论文
共 50 条
  • [41] Determination of physicochemical properties of small molecules by reversed-phase liquid chromatography
    Poole, Colin F.
    Atapattu, Sanka N.
    JOURNAL OF CHROMATOGRAPHY A, 2020, 1626
  • [42] Contribution of Steric Repulsion to Retention on an Octadecylsiloxane-Bonded Silica Stationary Phase in Reversed-Phase Liquid Chromatography
    C. F. Poole
    H. Ahmed
    W. Kiridena
    C. DeKay
    W. W. Koziol
    Chromatographia, 2005, 62 : 553 - 561
  • [43] Uncertainty management for In Silico screening of reversed-phase liquid chromatography methods for small compounds
    Van Laethem, Thomas
    Kumari, Priyanka
    Boulanger, Bruno
    Hubert, Philippe
    Fillet, Marianne
    Sacre, Pierre-Yves
    Hubert, Cedric
    JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS, 2024, 249
  • [44] Optimisation and characterisation of silica-based reversed-phase liquid chromatographic systems for the analysis of basic pharmaceuticals
    Vervoort, RJM
    Debets, AJJ
    Claessens, HA
    Cramers, CA
    de Jong, GJ
    JOURNAL OF CHROMATOGRAPHY A, 2000, 897 (1-2) : 1 - 22
  • [45] Prediction of n-octanol/water partition coefficient of strongly ionized compounds by ion-pair reversed-phase liquid chromatography with silica-based stationary phase
    Liu Xiaolan
    Gao Wei
    Liang Chao
    Qiao Junqin
    Wang Kang
    Lian Hongzhen
    CHINESE JOURNAL OF CHROMATOGRAPHY, 2021, 39 (11) : 1230 - 1238
  • [46] Trends and progress in the characterization of stationary phases for reversed-phase liquid chromatography
    Claessens, HA
    TRAC-TRENDS IN ANALYTICAL CHEMISTRY, 2001, 20 (10) : 563 - 583
  • [47] Prediction of the octanol-water partition constant of neutral compounds by reversed-phase liquid chromatography using alternative organic solvent modifiers
    Atapattu, Sanka N.
    Poole, Colin F.
    JOURNAL OF CHROMATOGRAPHY A, 2025, 1741
  • [48] Retention models for ionizable compounds in reversed-phase liquid chromatography Effect of variation of mobile phase composition and temperature
    Roses, Marti
    Subirats, Xavier
    Bosch, Elisabeth
    JOURNAL OF CHROMATOGRAPHY A, 2009, 1216 (10) : 1756 - 1775
  • [49] Improved pH measurement of mobile phases in reversed-phase liquid chromatography
    Heering, Agnes
    Lahe, Markus
    Vilbaste, Martin
    Saame, Jaan
    Samin, John Paulo
    Leito, Ivo
    ANALYST, 2024, 149 (05) : 1481 - 1488
  • [50] Structure-retention correlation of some oxicam drugs in reversed-phase liquid chromatography
    David, V
    Albu, F
    Medvedovici, A
    JOURNAL OF LIQUID CHROMATOGRAPHY & RELATED TECHNOLOGIES, 2004, 27 (06) : 965 - 984