Journal of Liquid Chromatography · 1980 · 173 citations · 26 references
Materials ScienceOrganic Material ChemistryPore StructureEngineeringSurface FunctionalizationSurface ChemistrySurface ScienceAbstract MonochlorosilanesHplc Using MonochlorosilanesOrganic ChemistryLiquid ChromatographyChemistryChromatographic AnalysisHalogenationHybrid MaterialsCatalytic HydrosilylationChromatography
Abstract Monochlorosilanes have been prepared with yields of about 80% through a catalytic hydrosilylation of terminal olefins. Subsequently, the silanes are chemically bonded to silica to obtain: (i) n-octyldimethylsilyl bonded phases with reproducible surface coverage ranging from 0.8 to 3.5 μmol/m2, (ii) propyldimethylsilyl bonded phases with different functional groups at the γ-position, all showing a nearly equal surface coverage of some 3.3 μmol/m2, and (iii) n-alkyldimethylsilyl bonded phases with chainlengths ranging from 1 to 22 carbon atoms and with surface coverages ranging from 3.9 μmol/m2 for RP-1 to 3.0 μmol/m2 for the RP-22 bonded phase. A simplified model based on the pore structure of silica allows an explanation and estimation of the maximum surface coverage as a function of the chainlength of the bonded phase.
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Studies on pore systems in catalysts V. The t method
B.C. Lippens · Journal of Catalysis · 1965 · 2.2K citations