Huo, Zhixia; Chen, Lei published the artcile< Base-deactivated and alkaline-resistant chromatographic stationary phase based on functionalized polymethylsilsesquioxane microspheres>, Formula: C15H24N2O, the main research area is base deactivated chromatog stationary phase functionalized polymethylsilsesquioxane microsphere; basic compounds; co-condensation; functionalization; polymethylsilsesquioxane; silanol activity.
Vinyl, chloropropyl, and mercaptopropyl functionalized particles were prepared by a two-step acidic/alk. catalyzed co-hydrolysis/condensation of methyltrimethoxysilane with a different silane precursor that carries chem. reactive functional group including vinyl, chloropropyl, and mercaptopropyl, resp. The morphol., pore structure, and functional groups of the synthesized packings were studied by SEM, nitrogen adsorption-desorption measurements, and solid-state 13C 29Si NMR spectroscopy, resp. The particles show ordered sphere, narrow particle size distribution, and mesoporous structure. The carbon contents of the microspheres are in the range of 17-19%, comparable to those of octadecyl-bonded silica packings. The three-kind of microspheres were directly used as packing materials for high-performance liquid chromatog. without size classification. The chromatog. performance of the columns was evaluated and compared with a com. available C18 phase. The results revealed that these columns possess typical reversed-phase chromatog. properties with increased hydrophobicity than polymethylsilsesquioxane and sym. peaks for basic compounds They were applied to the simultaneous separation of combination bendazol hydrochlorothiazide capsules containing polar and basic drugs with peaks identified by tandem with mass spectrometry. In general, a novel method is provided for the synthesis of different methyltrimethoxysilane-derived microspheres for high-performance liquid chromatog., which are advantageous for separating basic compounds
Journal of Separation Science published new progress about Chromatographic stationary phases (base-deactivated and alk.-resistant). 6882-68-4 belongs to class naphthyridine, and the molecular formula is C15H24N2O, Formula: C15H24N2O.
Referemce:
1,8-Naphthyridine – Wikipedia,
1,8-Naphthyridine | C8H6N2 – PubChem