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1.
Molecules ; 19(1): 9-21, 2013 Dec 19.
Article in English | MEDLINE | ID: mdl-24451243

ABSTRACT

Enantioseparation is largely based on the formation of transitional complexes, the solvation species, the stationary phase configurations or the diastereomeric complexes formed by analytes and the chiral stationary phase. Temperature and the chemical nature and composition of the eluent play significant roles during that process. In this study; unique temperature-induced behaviors were observed during the enantioseparation of Koga tetraamines, also known as Koga bases, on polysaccharide chiral stationary phases, in which van't Hoff plots were acquired over a temperature range of 10 °C to 40 °C with 5 °C increments. Koga bases were eluted by a mixture of methanol and 2-propanol with 0.03% triethylamine as a modifier. The van't Hoff plots are linear in the case of eluent containing equal volumes of methanol and 2-propanol. Increasing 2-propanol concentration from 50% to 85% in volume led to non-linear van't Hoff plots over the entire temperature range studied. Examination of the individual non-linear plots revealed two linear regions of 10 °C-20 °C and 20 °C-40 °C. Transition from one linear region to the other at 20 °C indicates alterations of chiral stationary phase conformation and/or enantioseparation mechanism as a result of temperature changes.


Subject(s)
Amines/chemistry , Amylose/chemistry , Alcohols/chemistry , Temperature , Thermodynamics
2.
J Chromatogr A ; 1218(29): 4689-97, 2011 Jul 22.
Article in English | MEDLINE | ID: mdl-21665217

ABSTRACT

Analysis of biogenic amines is critical to pharmaceutical and food industry due to their biological importance. For many years, the determination of biogenic amines has relied on high performance liquid chromatography (HPLC) coupling with pre-, on-, or post-column derivatization procedures to enable UV or fluorescent detections. In this study, 14 biogenic amines were separated on a Phenomenex Luna Phenyl-Hexyl column by an ion-pair liquid chromatography method using perfluorocarboxylic acids as ion-pair reagents and detected by a chemiluminescent nitrogen detector (CLND). This direct separation and detection HPLC method eliminated the time consuming and cumbersome derivatization procedures. Compared with HPLC-UV (post-column derivatization with ninhydrin) and HPLC-charged aerosol detector (CAD) methods, this HPLC-CLND technique provided narrower peaks, better baselines, and improved separations and detections. Excellent linearity was acquired by CLND for each of the 14 biogenic amines ranging from less than 1 ng to about 1000 ng (on-column weights). The relative response factors determined by this LC-CLND method were proportional to the numbers of nitrogen atoms in each compound, which has been the characteristic of the equimolar determinations by CLND. In addition, a number of samples including beer, dairy beverage, herb tea, and vinegar were analyzed by the LC-CLND method with satisfactory precision and accuracy.


Subject(s)
Beverages/analysis , Biogenic Amines/isolation & purification , Chromatography, Liquid/methods , Luminescent Measurements/methods , Acetic Acid/chemistry , Biogenic Amines/analysis , Fluorocarbons/chemistry , Linear Models , Nitrogen/analysis , Nitrogen/chemistry , Reproducibility of Results , Sensitivity and Specificity
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