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  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Chromatographia 21 (1986), S. 467-472 
    ISSN: 1612-1112
    Keywords: Column liquid chromatography ; Bonded stationary phases ; Phenyl-modified glasses ; Antiepileptic drugs
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology
    Notes: Summary The retention and selectivity behaviour of some antiepileptic drugs were studied by micro high-performance liquid chromatography on nine types of phenyl-modified glasses, prepared with xylene solution containing phenyldimethylchlorosilane (P), diphenylmethylchlorosilane (D) or triphenylchlorosilane (T), using three types of glass with various mean pore diameters and/or specific surface areas. From elemental analysis data for carbon, the maximum number of accessible phenyl surface groups per 100Å2 of glass (mean pore diameter: 335Å, specific surface area: 69m2/g) in P, D and T gel was calculated to be 2.38, 1.58 and 0.76, respectively. Using various CH3CN−0.01 M KH2PO4 mixtures as eluents, the antiepileptic drugs were separated on all the glasses studied, but with different degrees of resolution. With an increase in the specific surface area, the k′ values of some antiepileptic drugs also increased.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1612-1112
    Keywords: Liquid column chromatography ; Porous glass ; Octadecyl-modified glasses ; Antiepileptic drugs
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology
    Notes: Summary The retention behaviour of typical antiepileptic drugs or PTH amino acids was studied by high-performance liquid chromatography on four types of octadecyl-modified glasses, prepared with dry toluene solution containing octadecyldimethylchlorosilane (ODS) or trimethylchlorosilane, using two types of glass with various mean pore diameters and specific surface areas. From elemental analysis data for carbon, the maximum number of accessible ODS surface groups per gram of glass was calculated as 0.323×1021.
    Type of Medium: Electronic Resource
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