The cellulose tris (4-methylbenzoate) has been synthesised by the catalytic method and was supported at Gas Chrom Q. The absorption capability of cellulose tris (4-methylbenzoate) used as a gas chromatographic station...The cellulose tris (4-methylbenzoate) has been synthesised by the catalytic method and was supported at Gas Chrom Q. The absorption capability of cellulose tris (4-methylbenzoate) used as a gas chromatographic stationary phase was characterized by chromatographic method and the Clausius-Clapeyron equation. However, n-alcohols (C-1-C-8) were successfully separated on the column packed with Gas Chrom Q coated with cellullose tris (4-methylbenzoate).展开更多
Several kinds of racemic naproxen ester were successfully separated on CTMB chiral stationary phase with hexane-ethanol (98:2, vol./vol.) as the mobile phase. The influence of mobile phase composition and structure o...Several kinds of racemic naproxen ester were successfully separated on CTMB chiral stationary phase with hexane-ethanol (98:2, vol./vol.) as the mobile phase. The influence of mobile phase composition and structure of racemic naproxen ester on chiral separation was studied and the chiral recognition mechanism of CTMB was discussed.展开更多
在自制的纤维素-三(4-甲基苯基氨基甲酸酯)手性固定相上,成功分离了苯霜灵等手性农药,考察了色谱分离条件对手性拆分的影响。结果表明,在自制的手性柱(150 mm×4.6 mm i.d.)上,以V(正己烷)∶V(正丙醇)=90∶10为流动相,流速0.5 mL/m...在自制的纤维素-三(4-甲基苯基氨基甲酸酯)手性固定相上,成功分离了苯霜灵等手性农药,考察了色谱分离条件对手性拆分的影响。结果表明,在自制的手性柱(150 mm×4.6 mm i.d.)上,以V(正己烷)∶V(正丙醇)=90∶10为流动相,流速0.5 mL/min,检测波长为254 nm时,戊菌唑、苯霜灵等手性农药分别获得了基线或近基线拆分,分离度达到2.01和1.55。展开更多
文摘The cellulose tris (4-methylbenzoate) has been synthesised by the catalytic method and was supported at Gas Chrom Q. The absorption capability of cellulose tris (4-methylbenzoate) used as a gas chromatographic stationary phase was characterized by chromatographic method and the Clausius-Clapeyron equation. However, n-alcohols (C-1-C-8) were successfully separated on the column packed with Gas Chrom Q coated with cellullose tris (4-methylbenzoate).
文摘Several kinds of racemic naproxen ester were successfully separated on CTMB chiral stationary phase with hexane-ethanol (98:2, vol./vol.) as the mobile phase. The influence of mobile phase composition and structure of racemic naproxen ester on chiral separation was studied and the chiral recognition mechanism of CTMB was discussed.