4.6 Article

A visual approach to stationary phase selectivity classification based on the Snyder-Dolan Hydrophobic-Subtraction Model

Journal

JOURNAL OF CHROMATOGRAPHY A
Volume 1216, Issue 39, Pages 6685-6694

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.chroma.2009.06.048

Keywords

HPLC; Stationary phase; Reversed phase; Selectivity; Classification scheme

Funding

  1. National Institutes of Health [GM 054585]
  2. Agilent Technologies Inc

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A novel type of stationary phase selectivity classification triangle has been developed based on the Snyder-Dolan (S-D) Hydrophobic-Subtraction Model, wherein the apices of a set of four triangles represent the relative contributions of steric hindrance (chi(S)), hydrogen-bonding acidity (chi(A)), hydrogen-bonding basicity (chi(B)), cation-exchange capacity (chi(C)) to selectivity. We found that effective selectivity of a stationary phase is mathematically given by the ratio of system dependent interaction coefficients but not their absolute Values. Thus by normalizing the S*, A, B and C terms of the S-D model by H, we were able to obtain four parameters which fully define the chromatographic selectivity of the stationary phases. By examining the parameters in groups of three, we can represent all the result ill a set of four selectivity triangles. The distinctive feature of this approach compared to the S-D phase classification scheme is that it allows the visualization of Column selectivity by plotting three-dimensional data in a two-dimensional space. Moreover. it very clearly shows that the RPLC columns thus far characterized cover only a small fraction of separation selectivity space leaving a great deal of room for researchers to develop novel RPC materials. Various applications of these selectivity triangles will be discussed in this paper. (C) 2009 Elsevier B.V. All rights reserved.

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