17 results on '"Qu, Qi Shu"'
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2. Monolithic silica xerogel capillary column for separations in capillary LC and pressurized CEC
3. Gold microspheres modified with octadecanethiol for capillary liquid chromatography
4. Equilibrium Phase Diagram of the Ternary 2-Nitrobenzoic acid-3-Nitrobenzoic Acid-Acetone System at 283.15 K and 313.15 K
5. Solid−Liquid Phase Equilibrium and Phase Diagram for the Ternary o-Nitrobenzoic Acid + m-Nitrobenzoic Acid + Ethanol System
6. Open-tubular gas chromatography using capillary coated with octadecylamine-capped gold nanoparticles
7. Preparation of glassy carbon electrode modified by hydrophobic gold nanoparticles and its application for the determination of ethamsylate in the presence of cetyltrimethylammonium bromide
8. Pressurized capillary electrochromatographic assay of trimethoprim impurities using 1μm particle-based columns
9. The simultaneous separation and determination of six flavonoids and troxerutin in rat urine and chicken plasma by reversed-phase high-performance liquid chromatography with ultraviolet–visible detection
10. Characterization, growth mechanism and application of network poly(bromophenol blue)
11. Trace Measurement of Phenothiazine Drugs in Tablets by Micellar-Enhanced Fluorophotometric Method
12. Electrochromatography with a 2.7 mm inner diameter monolithic column
13. Stacking Ionizable Analytes in a Sample Matrix with High Salt by a Transient Moving Chemical Reaction Boundary Method in Capillary Zone Electrophoresis
14. Improving separation efficiency of capillary zone electrophoresis of tryptophan and phenylalanine with the transient moving chemical reaction boundary method
15. Pre-concentration of non-uniform field electrophoresis for sample introduction of capillary electrophoresis
16. Experimental investigation on moving chemical reaction boundary theory for weak-acid–strong-base system with background electrolyte KCl in large concentration
17. Corrections to moving chemical reaction boundary equation for weak reactive electrolytes under the existence of background electrolyte KCl in large concentrations
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