A silica-bonded bovine serum albumin(BSA) chiral monolithic stationary phase for capillary electrochromatography(CEC) was introduced. An inorganic-organic hybrid monolithic column was firstly prepared by sol-gel chemi...A silica-bonded bovine serum albumin(BSA) chiral monolithic stationary phase for capillary electrochromatography(CEC) was introduced. An inorganic-organic hybrid monolithic column was firstly prepared by sol-gel chemistry with homogeneously distributed aminopropyl groups throughout the silica matrix. Then the chiral stationary phase was synthesized by the in situ covalent immobilization of BSA on the monolithic column activated with glutaraldehyde. The effects of pH value and concentration of phosphate buffer on the separation of D,L-tryptophan were investigated. The separation factor of D,L-tryptophan reached 3.37 on CEC mode.展开更多
将胰蛋白酶酶解牛血清白蛋白产生的多肽与环糊精键合,用羰基咪唑法键合到硅胶上,得到新型多肽键合环糊精硅胶手性固定相.反相液相色谱法拆分手性化合物利胆醇,考察了流动相的pH梯度变化时间、离子强度以及流速对利胆醇手性拆分的影响,...将胰蛋白酶酶解牛血清白蛋白产生的多肽与环糊精键合,用羰基咪唑法键合到硅胶上,得到新型多肽键合环糊精硅胶手性固定相.反相液相色谱法拆分手性化合物利胆醇,考察了流动相的pH梯度变化时间、离子强度以及流速对利胆醇手性拆分的影响,探讨了该新型多肽键合环糊精硅胶手性柱对利胆醇的手性识别机理及利胆醇在该柱上的手性拆分重复性.实验表明:流动相组成为60 mol/L磷酸盐缓冲液;pH梯度为1 min 5.6,10 min 6.4;流速为0.5 mL/min时分离效果最佳.展开更多
文摘A silica-bonded bovine serum albumin(BSA) chiral monolithic stationary phase for capillary electrochromatography(CEC) was introduced. An inorganic-organic hybrid monolithic column was firstly prepared by sol-gel chemistry with homogeneously distributed aminopropyl groups throughout the silica matrix. Then the chiral stationary phase was synthesized by the in situ covalent immobilization of BSA on the monolithic column activated with glutaraldehyde. The effects of pH value and concentration of phosphate buffer on the separation of D,L-tryptophan were investigated. The separation factor of D,L-tryptophan reached 3.37 on CEC mode.
文摘将胰蛋白酶酶解牛血清白蛋白产生的多肽与环糊精键合,用羰基咪唑法键合到硅胶上,得到新型多肽键合环糊精硅胶手性固定相.反相液相色谱法拆分手性化合物利胆醇,考察了流动相的pH梯度变化时间、离子强度以及流速对利胆醇手性拆分的影响,探讨了该新型多肽键合环糊精硅胶手性柱对利胆醇的手性识别机理及利胆醇在该柱上的手性拆分重复性.实验表明:流动相组成为60 mol/L磷酸盐缓冲液;pH梯度为1 min 5.6,10 min 6.4;流速为0.5 mL/min时分离效果最佳.