Ⅰ. INTRODUCTION 4-(2-Thiazolylazo)-resorcinol (TAR)can form colored complexes with many metal ions and has been widely used as a color producing reagent for spectrophotometry. Most of its complexes with metal ions ha...Ⅰ. INTRODUCTION 4-(2-Thiazolylazo)-resorcinol (TAR)can form colored complexes with many metal ions and has been widely used as a color producing reagent for spectrophotometry. Most of its complexes with metal ions have the maximum absorbance within the wavelengths of 500—550 nm and molar absorptivities of 2×10~4—6×10~4.展开更多
The capillary electrophoretic separation of Fe 2+ , Co 2+ , Zn 2+ and Ni 2+ in a phosphate buffer solution by complexing with 4 (2 thiazolylazo)resorcinol was investigated. The influences of some crucial parameters th...The capillary electrophoretic separation of Fe 2+ , Co 2+ , Zn 2+ and Ni 2+ in a phosphate buffer solution by complexing with 4 (2 thiazolylazo)resorcinol was investigated. The influences of some crucial parameters that included chelating ligand in the electrophoretic running buffer and sample solution, pH value and concentration of buffer were examined. Under optimum conditions (10mmol·l -1 NaH 2PO 4 Na 2HPO 4 buffer containing 1×10 -4 mol·l -1 TAR, pH 7 5), a baseline separation of these metals was accomplished within 3 min. The detection limits (S/N=3) ranged from 0 013—0 14 μg·ml -1 . The method was applied to analyze trace metal ions in the environmental samples.展开更多
文摘Ⅰ. INTRODUCTION 4-(2-Thiazolylazo)-resorcinol (TAR)can form colored complexes with many metal ions and has been widely used as a color producing reagent for spectrophotometry. Most of its complexes with metal ions have the maximum absorbance within the wavelengths of 500—550 nm and molar absorptivities of 2×10~4—6×10~4.
文摘The capillary electrophoretic separation of Fe 2+ , Co 2+ , Zn 2+ and Ni 2+ in a phosphate buffer solution by complexing with 4 (2 thiazolylazo)resorcinol was investigated. The influences of some crucial parameters that included chelating ligand in the electrophoretic running buffer and sample solution, pH value and concentration of buffer were examined. Under optimum conditions (10mmol·l -1 NaH 2PO 4 Na 2HPO 4 buffer containing 1×10 -4 mol·l -1 TAR, pH 7 5), a baseline separation of these metals was accomplished within 3 min. The detection limits (S/N=3) ranged from 0 013—0 14 μg·ml -1 . The method was applied to analyze trace metal ions in the environmental samples.