A novel chiral stationary phase(CysCSP) for ligand exchange chromatography was prepared by firstly synthesizing N,S-di(2-hydroxyl-3-octoxyl)propyl-L-cysteine as chiral selector via reaction of L-cysteine with glycidyl...A novel chiral stationary phase(CysCSP) for ligand exchange chromatography was prepared by firstly synthesizing N,S-di(2-hydroxyl-3-octoxyl)propyl-L-cysteine as chiral selector via reaction of L-cysteine with glycidyl octyl ether and then coating it on YWG-C-{18} bonded stationary phase. The enantiomeric resolutions of some D,L-α-amino acids were achieved on CysCSP by using cupric acetate aqueous solution as the mobile phase, under the conditions of column temperature 20 ℃ and detection at UV 254 nm. The enantioselectivities α of D,L-α-amino acids separated were found to be in the range from 1.11 to 1.38 with the resolution R-s ranging from 1.1 to 2.8 and the column efficiency being from 5 000 to 9 000 n/m. The elution order of D-isomer before L-isomer was obersaved for all D,L-amino acids used.展开更多
文摘A novel chiral stationary phase(CysCSP) for ligand exchange chromatography was prepared by firstly synthesizing N,S-di(2-hydroxyl-3-octoxyl)propyl-L-cysteine as chiral selector via reaction of L-cysteine with glycidyl octyl ether and then coating it on YWG-C-{18} bonded stationary phase. The enantiomeric resolutions of some D,L-α-amino acids were achieved on CysCSP by using cupric acetate aqueous solution as the mobile phase, under the conditions of column temperature 20 ℃ and detection at UV 254 nm. The enantioselectivities α of D,L-α-amino acids separated were found to be in the range from 1.11 to 1.38 with the resolution R-s ranging from 1.1 to 2.8 and the column efficiency being from 5 000 to 9 000 n/m. The elution order of D-isomer before L-isomer was obersaved for all D,L-amino acids used.
文摘目的寻找能将氨基酸侧链的羟基、巯基与二元羧酸连接成酯的方法。方法分别以L 丝氨酸和L 半胱氨酸为起始物 ,采用叔丁氧羰基、苄酯或二苯甲酯形式保护 ,分别与丁二酸单苄酯、草酸单苄酯、丁二酸单叔丁酯缩合成酯 ,合成了 3个未见文献报道的化合物O (4 苄氧丁二酰基 ) N 叔丁氧羰基 L 丝氨酸苄酯 (4 )、O (2 苄氧草酰基 ) N 叔丁氧羰基 L 丝氨酸苄酯 (8)、S (4 叔丁氧丁二酰基 ) N 叔丁氧羰基 L 半胱氨酸二苯甲酯 (12 )。化合物 4经氢解合成未见文献报道的化合物O 丁二酰基 N 叔丁氧羰基 L 丝氨酸 (5 )。化合物 5经酸解得到O 丁二酰基 L 丝氨酸(6)。结果与结论目标化合物的结构经光谱确证。通过这种方法二元羧酸能与氨基酸的羟基。