The retention mechanism of a series of six positional
isomers of dichlorophenol in gas chromatography was
investigated using pure α-, β-, and γ-cyclodextrin (CD)
stationary phases. For each CD, the values of
enthalpy
(ΔH) and entropy (ΔS) of transfer of an
isomer from the gas to the CD stationary phase were
determined.
These data demonstrated the leading role of enthalpy according to
entropy. Enthalpy−entropy compensation
revealed that the retention mechanism was independent of both the
chloro group position on the phenol ring
and the size and shape of the CD cavity. A model based on the
number of CD inclusion complexes with an
isomer was also presented. This model explains current
experimental data including the reverse elution order
observed for certain pairs of isomers.
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