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1.
在共价键合多糖类衍生物的手性固定相(Chiralpak IA,Chiralpak IB,Chiralpak IC)和涂敷型多糖衍生物的手性固定相(Chiralpak AD,Chiralcel OD)上,对非甾体抗炎药物(non-steroidal anti-inflammatory drugs,NSAIDs)进行了对映体拆分.色谱条件:流动相为10%异丙醇/正己烷(V/V)含0.1%三氟乙酸(Chiralpak AD,2%异丙醇/正己烷(V/V)含0.1%三氟乙酸(Chiralpak OD),异丙醇(四氢呋喃、乙酸乙酯、二氯甲烷)/正己烷/0.1%三氟乙酸(Chiralpak IA,Chiralpak IB,Chiralpak IC);流速为1.0 mL/min;紫外检测波长为254 nm.比较了非甾体抗炎药在直链淀粉-三(3,5-二甲基苯基氨基甲酸酯)衍生的手性固定相Chiralpak IA和 Chiralcel AD,纤维素-三(3,5-二甲基苯基氨基甲酸酯)衍生的手性固定相Chiralpak IB和Chiralcel OD上的对映体拆分.结果表明,非甾体抗炎药在Chiralpak IA和Chiralpak IB上的分离效果普遍低于Chiralpak AD和Chiralcel OD.  相似文献   

2.
以R-联萘酚为原料合成了R-(1,1′-二萘基)-20-冠-6,并将其涂敷于C18硅胶(平均粒径5μm,孔径120nm)上制成了可用于高效液相色谱手性拆分的R-(1,1′-二萘基)-20-冠-6冠醚固定相(CSP).在以pH=2的高氯酸溶液为流动相,流速为0.1mL·min-1,柱温为25℃的条件下,研究了CSP对9种α-氨基酸对映体的拆分能力.实验结果表明,有5种手性氨基酸(缬氨酸、苯甘氨酸、对羟基苯甘氨酸、谷氨酸、色氨酸)得到不同程度的拆分,说明CSP能对手性氨基酸进行一定的拆分.  相似文献   

3.
于擎  曹洁  陆刚  汪志祥 《中国科学B辑》2009,39(2):129-134
采用手性冠醚(+)-2,3,11,12-四羧基-18-冠-6(简写为18-C-6-TCA)作为手性参照物,分别以Cu2+和H+为中心离子,对苯丙氨酸(Phe)对映体进行手性识别研究.通过离子键合二聚体[Cu2+(18-C-6-TCA)(Phe)-H+]+和(18-C-6-TCA)(Phe)H+的碰撞诱导解离(CID)反应,总结了上述非对映异构体离子的裂解特征并以其初级产物离子与母离子的相对丰度为依据对Phe对映体进行手性识别.通过实验发现,作为过渡金属代表的Cu2+离子对多齿型配体具有较强的配合能力,Cu2+与Phe对映体形成的非对映异构离子[Cu2+(18-C-6-TCA)(Phe)-H+]+离子的稳定性差异较大,手性识别能力较强.同时,[Cu2+(18-C-6-TCA)(Phe)-H+]+的CID反应只产生[Cu2+(18-C-6-TCA)-H+]+产物离子,而(18-C-6-TCA)(Phe)H+的CID反应除了产生质子化的18-C-6-TCA以外,还有冠醚离子的次级碎片产物.这说明18-C-6-TCA、Phe与Cu2+的键合情况以及亲和势都与H+的情形完全不同.本文将结合量化计算对这一点进行详细讨论.  相似文献   

4.
以R-联萘酚为原料,利用铃木反应改进合成了已有文献报道的R-(3,3'-二苯基-1,1'-二萘基)-20-冠-6,并将其涂敷于C18硅胶(平均粒径5μm,孔径120)上制成了可用于高效液相色谱手性拆分的R-(3,3'-二苯基-1,1'-二萘基)-20-冠-6冠醚固定相(CSP).在以p H=2的高氯酸溶液为流动相,流速为0.1 m L·min-1,柱温为25℃的条件下,研究了R-(3,3'-二苯基-1,1'-二萘基)-20-冠-6冠醚固定相(CSP)对13种α-氨基酸对映体的拆分能力,并将其拆分结果与商品CR(+)柱进行了对比.实验结果表明在此色谱条件下,有11种α-氨基酸对映体(苯甘氨酸、对羟基苯甘氨酸、蛋氨酸、酪氨酸、色氨酸、缬氨酸、亮氨酸、异亮氨酸、苯丙氨酸、谷氨酸、天冬氨酸)能得到不同程度的拆分,并且对其中6种α-氨基酸对映体的拆分效果要好于商品CR(+)柱.研究表明此冠醚手性固定相对α-氨基酸对映体有很好的手性识别能力,在对α-氨基酸对映体的拆分上能与商品CR(+)柱相媲美.  相似文献   

5.
《色谱》2016,(1)
为了探讨功能基团对苯甲酰胺基-β-环糊精手性固定相手性拆分性能的影响,本文采用点击化学制备了两种手性固定相:全取代-4-氯-3-甲基苯甲酰氨基-6A-三唑基-β-环糊精键合硅胶手性固定相(CSP1)和全取代-5-氯-2-甲基苯甲酰氨基-6A-三唑基-β-环糊精键合硅胶手性固定相(CSP2)。利用核磁共振、红外光谱及元素分析等手段对固定相的结构进行了表征;在反相高效液相色谱条件下,通过对9种黄烷酮消旋体的拆分,对比研究了两种固定相的手性拆分性能。研究结果表明CSP1的拆分性能优于CSP2。这两种手性固定相仅在水与甲醇体系下即可实现对黄烷酮的手性拆分,展现了较好的应用前景。  相似文献   

6.
合成了一种新型奎宁-冠醚组合型手性固定相(QN-CR CSP)并用于氨基酸手性对映体的直接拆分,该固定相对12种氨基酸对映体有良好的手性拆分能力。基于氨基酸手性识别中离子交换和络合的协同作用,建立了一种新型的等温吸附模型。通过迎头特殊点洗脱法(FACP)测定色氨酸(Trp)在不同金属离子添加剂条件下的等温吸附线,验证了模型的合理性。流动相中的Li+、Na+、K+等金属离子与氨基酸竞争固定相中的冠醚络合位点,随着金属离子与冠醚的络合作用力和络合吸附平衡常数增大,固定相对Trp的手性拆分能力下降。该模型的建立对理解氨基酸在此类固定相中的手性保留行为以及固定相结构的进一步优化具有重要意义。  相似文献   

7.
本文用不同溶剂的冠醚溶液为流动相,硅胶G为固定相,对碱金属离子的薄层层析行为进行了研究。探讨了冠醚种类及浓度、不同阴离子种类及浓度、展开剂的酸度、薄层厚度和活化温度对R_f值的影响。结果表明,冠醚浓度增加,络合能力增强,其顺序为18-C-6>B-15-C-5>D B-24-C-8。相匹配的阴离子不同,络合物的R_f值也各异,顺序是三氯乙酸>苦味酸。当选用三氯甲烷-甲醇-甲酸(9:9:2,V/V)的18-C-6(0.1mol/L)溶液为展开剂时,可以分离(R_f)K~+(0.70)-Rb~+(0.48)-Cs~+(0.33)的混合物。  相似文献   

8.
将C18柱与手性冠醚柱串联,建立了一种反相高效液相色谱法用于3种芳香族氨基酸对映体同时拆分的方法.考察了反相色谱流动相的组成、pH值、柱温、流速对对映体拆分的影响.实验结果表明,当流动相为HClO4-乙睛溶液(86:14,V/V,pH 2.0)、柱温20℃、流速0.4 mL/min时,3种氨基酸对映体可获得基线分离.进一步对比了C18柱、冠醚手性柱和串联顺序不同的4种分离模式,结果表明,C18柱不能拆分氨基酸对映体,仅能分离不同种类氨基酸;冠醚手性柱可分离氨基酸映体,但不同种类氨基酸色谱峰出现重叠;串联模式能实现3种氨基酸对映体的基线分离,实现双柱优势互补,而串联顺序对分离影响不大,仅影响色谱峰的峰形.  相似文献   

9.
郭丹丽  张华  胡秋云  蔡三燕  陈梓云  翁文 《应用化学》2013,30(10):1231-1236
以微晶纤维素和3,5-二甲基苯基氨基甲酸酯为原料,合成了纤维素-三(3,5-二甲基苯基氨基甲酸酯)(CDMPC),将其分别涂敷于小孔硅胶(SG)、氨丙基化小孔硅胶(APS-SG)和介孔SBA-15微球上,制得3种手性固定相:SG@CDMPC(CSP1)、APS-SG@CDMPC(CSP2)及SBA-15@CDMPC(CSP3),正相条件下考察了12种中性或酸性手性化合物在自制手性固定相上的拆分效果,并与商品柱Chiralcel OD-H的拆分性能进行了对比。 6个手性化合物在CSP1上获得比在商品柱上更高的柱效,其中2个手性化合物获得比在商品柱上更高的分离因子和分离度,而CSP2和CSP3的拆分效果总体较CSP1和商品柱的差。 探讨了自制手性固定相对华法令的拆分和定量测定,华法令在CSP1上的检测限为10 μg/L,在0.05~5 g/L范围内线性关系良好。  相似文献   

10.
脱氢松香酸合成新型手性荧光衍生试剂的研究   总被引:1,自引:0,他引:1  
手性药物开发与应用的兴起,促进了手性分离和检测方法的发展.随着高效液相色谱(HPLC)、毛细管电泳(CE)等现代分析技术的深入发展,手性荧光衍生试剂也得到越来越广泛的应用[1],手性荧光衍生试剂主要用于高灵敏度检测手性药物的光学纯度和不对称合成反应产物对映体过量(ee%值)等.但是手性荧光衍生试剂却很少,且价格昂贵,为了开发新型廉价的手性荧光衍生试剂,我们利用廉价易得的松香衍生物的手性骨架和荧光基团,合成了脱氢松香酸酰氯(A)和脱氢松香酰肼(B),并进一步做了衍生化反应,成功获得了衍生化产物(C,D).  相似文献   

11.
Chiral 2-arylcarboxylic acid esters are important intermediates in preparation of enantioenriched 2-arylpropionic acids type Non-steroidal anti-inflammatory drugs (NSAIDs). Enantiomer separation of 2-arylcarboxylic acid esters is crucial for evaluation of the asymmetric synthesis efficiency and the enantiomer excess of chiral 2-arylcarboxylic acid derivatives. The capillary gas chromatography (CGC) enantiomer separation of 17 pairs of 2-arylcarboxylic acid esters enantiomers was conducted by using seven different β-cyclodextrin derivatives (CDs) as chiral stationary phases. It was found that for the 7 pairs of 2-phenylpropionates enantiomers, CDs with both alkyl and acyl substituents especially 2,6-di-O-pentyl-3-O-butyryl-β-cyclodextrin exhibited better enantiomer separation abilities than the other CDs examined. For the 7 pairs of 2-(4-substituted phenyl)propionates enantiomers, 2,3,6-tri-O-methyl-β-cyclodextrin possessed better enantiomer separation abilities than the other CDs. Among the 3 pairs of 2-phenylbutyrates enantiomers examined, only methyl 2-phenylbutyrate enantiomers could be separated by three CDs among the 7 CDs tested, while enantiomers of ethyl 2-phenylbutyrate and isopropyl 2-phenylbutyrate couldn't be separated by any of the 7 CDs tested. Besides the structures of CDs, the structures of 2-arylcarboxylic acid esters including different ester moieties, substituents of phenyl, and different carboxylic acids moieties in 2-arylcarboxylic acid esters also affected the enantiomer separation results greatly. The CGC enantiomer separation results of 2-arylcarboxylic acid esters on different CDs are useful for solving the enantiomer separation problem of 2-arylcarboxylic acid esters.  相似文献   

12.
Enantiomer separations were performed by capillary electrophoresis-mass spectrometry (CE-MS) with (+)-(18-crown-6)-2,3,11,12-tetracarboxylic acid (18C6H4) as a chiral selector. In order to prevent the introduction of the nonvolatile chiral, selector, 18C6H4, into the nozzle of the CE-MS interface and/or the orifice plate, a partial filling technique was employed in this study. By the partial filling technique, the contamination caused by the nonvolatile chiral selector was avoided not only during the analysis but also during the washing of capillary with the separation solution prior to the run. Several racemic compounds having a primary amino group were successfully separated. Racemic 3-aminopyrrolidine and racemic alpha-amino-epsilon-caprolactam have no strong UV absorption, but such compounds were detected with a high sensitivity by MS detection. In this paper, the effects of the length of separation zone and those of the 18C6H4 concentration were described. As the length of the separation zone was longer or as the concentration of 18C6H4 was higher, the enantiomer resolution was enhanced more and more. However, the optimization of 18C6H4 concentration was practically enough to obtain the baseline separation.  相似文献   

13.
环糊精衍生物气相色谱手性固定相研究进展   总被引:6,自引:0,他引:6  
评述近年环糊精衍生物气相色谱手性固定相的研究进展,对环糊精衍生物进行分类并总结了近年来其在GC手性分离上的应用,介绍环糊精衍生物的手性分离机制及纯度问题进展,展望环糊精衍生物作GC手性固定相的应用前景。  相似文献   

14.
A chiral stationary phase (CSP) has been prepared by chemically bonding a chiral pseudo-18-crown-6 type host having a 1-phenyl-1,2-cyclohexanediol unit to 3-aminopropyl silica gel. The chiral column was prepared by the slurry-packing method in a stainless steel HPLC column. Normal mobile phases can be used with this CSP in contrast to conventional dynamic coating type CSPs. Enantiomers of 20 out of 30 amino compounds, including 20 amino acids, 2 amino acid methyl esters, 6 amino alcohols, and 2 lipophilic amines, were efficiently separated on columns with this CSP. It is noteworthy that 15 amino compounds out of 30 were separated with better separation factors and shorter retention times compared to the corresponding CSP having pseudo-18-crown-6 with 1-phenyl-1,2-ethanediol as a chiral unit. In view of the correlation between the enantiomer selectivities observed in chromatography and those obtained in gas phase FABMS-EL methods and solution phase titrations, chiral recognition in the host-guest interaction likely contributes to enantiomer separation.  相似文献   

15.
The liquid chromatographic enantiomer separation of N-fluorenylmethoxycarbonyl (FMOC) protected alpha-amino acids and their ethyl ester derivatives was performed on polysaccharide-derived chiral stationary phases, Chiralcel OD, Chiralpak AD, and Chiralpak AS. In general, Chiralcel OD and Chiralpak AD showed good performance for resolution of N-FMOC alpha-amino acids and their ethyl esters, respectively. All investigated N-FMOC alpha-amino acid enantiomers were baseline separated on Chiralcel OD or Chiralpak AD, whereas N-FMOC alpha-amino acid ethyl ester enantiomers were baseline resolved (alpha = 1.15-3.03) on Chiralpak AD, except for two analytes. The L-enantiomers of all examined FMOC alpha-amino acid ethyl ester derivatives are preferentially retained on Chiralpak AD, while the elution orders of the other enantiomer separations are not consistent.  相似文献   

16.
17.
Enantiomer separation of chiral pharmaceuticals by capillary electrochromatography (CEC) is achieved with open-tubular capillaries (o-CEC), with packed capillaries (p-CEC) or with monolithic capillaries. In o-CEC, capillaries are coated with a thin film containing cyclodextrin derivatives, cellulose, proteins, poly-terguride or molecularly imprinted polymers as chiral selectors. In p-CEC, typical chiral HPLC stationary phases such as silica-bonded cyclodextrin or cellulose derivatives, proteins, glycoproteins, macrocyclic antibiotics, quinine-derived and 'Pirkle' selectors, polyacrylamides and molecularly imprinted polymers are used as chiral selectors. Chiral monolithic stationary phases prepared by in situ polymerization into the capillary were also developed for electrochromatographic enantiomer separation.  相似文献   

18.
A feasibility study on the fast enantioselective two-dimensional HPLC separation of racemic amino acid derivatives is presented. The method involves the on-line coupling of a narrow-bore C18 RP column in the first dimension to a short enantioselective column based on nonporous 1.5 μm particles modified with quinidine carbamate as chiral selector in the second dimension. Conceptually, the system was designed to enable both time-controlled repeated transfer of fractions of the eluate and detector-controlled transfer of selected fractions from column 1 to column 2. To avoid volume overloading of the second chiral column, a narrow-bore reversed phase column was installed in the first dimension. Due to the fast (less than 1.5 minutes) enantiomer separation that occurs in the second dimension, the overall analysis time for the two-dimensional separation of a mixture of nine racemic 3,5-dinitrobenzoyl amino acids was optimized at 16 minutes.  相似文献   

19.
New chiral stationary phases of polydimethylsiloxane anchored with (S)-(-)-t-leucine derivatives were provided for use in enantiomer separation of pharmaceuticals by capillary gas chromatography. Fifteen pharmaceuticals were separated into their enantiomeric pairs by converting them into pentafluoropropionyl and heptafluorobutyryl derivatives. The separation factor and resolution obtained from the new phases were superior to those from the conventional Chirasil-Val capillary column.  相似文献   

20.
纤维素衍生物手性固定相用于高效液相色谱对映体分离   总被引:16,自引:0,他引:16  
纤维素衍生物是目前高效液相色谱 (HPLC)中应用最为广泛的手性固定相之一 ,对各种类型的外消旋体都表现出了很高的对映体选择性 ,因其负载量大特别适用于对映体制备分离。本文对纤维素衍生物手性固定相的种类、影响手性选择性的因素以及手性识别的机理进行了较为全面的评述 ,并展望了研究前景  相似文献   

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