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1.
用8种手性柱纤维素-三(3,5-二甲基苯基氨基甲酸酯)涂敷型固定相(Chiralcel OD)、纤维素-三(3,5-二甲基苯基氨基甲酸酯)键合型固定相(Chiralpak IB)、直链淀粉-三(3,5-二甲基苯基氨基甲酸酯)涂敷型固定相(Chiralpak AD)、直链淀粉-三(3,5-二甲基苯基氨基甲酸酯)键合型固定相(Chiralpak IA)、直链淀粉-三((S)-α-甲基苄基氨基甲酸酯)涂敷型固定相(Chiralpak AS)、Pirkle型固定相((S,S)-Whelk-O1)、弱阴离子交换剂固定相(Chiralpak QN-AX)和替考拉宁固定相(Chirobitotic T柱)对52种外消旋体化合物进行了拆分,并讨论拆分条件对一些手性柱分离情况的影响。结果表明,这8根手性柱对这些对映体具有良好的手性识别效果和互补性。它们对这些样品手性拆分实验结果比较可得出其手性识别能力为:Chirobitotic TODADIAASIB(S,S)-Whelk-O1Chiralpak QN-AX。  相似文献   

2.
Jin Z  Hu F  Wang Y  Liu G  Wang F  Pan F  Tang S 《色谱》2011,29(11):1087-1092
为了扩展多糖类手性固定相的种类,制备了基于淀粉及纤维素三(3-三氟甲基苯基氨基甲酸酯)的涂敷型手性固定相,以正己烷-异丙醇混合液为流动相,对8种手性化合物进行了高效液相色谱拆分。研究表明: 虽然与应用最广泛的分别以淀粉及纤维素三(3,5-二甲基苯基氨基甲酸酯)为手性选择因子的商品化手性柱Chiralpak AD和Chiralcel OD相比,所制备的手性固定相的手性分离能力较低,但纤维素三(3-三氟甲基苯基氨基甲酸酯)手性固定相显示出特异的手性识别能力,一些手性化合物在此固定相上得到了比在Chiracel OD上更好的分离;所制备的手性固定相的手性识别能力随流动相中异丙醇含量的降低而变好,当流动相中正己烷与异丙醇的体积比为95:5时所制备的手性固定相显示出相对较高的手性识别能力;总体来说,淀粉三(3-三氟甲基苯基氨基甲酸酯)手性固定相的手性识别能力稍强于纤维素三(3-三氟甲基苯基氨基甲酸酯)手性固定相,同时两种手性固定相的手性识别能力具有一定的互补性。  相似文献   

3.
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   

4.
正相条件下, 在自制的涂敷型直链淀粉-三(环己基氨基甲酸酯)手性固定相上, 直接拆分了九种不同类型的手性化合物, 考察了流动相中极性添加剂对手性拆分的影响, 并与直链淀粉-三(3,5-二甲基苯基氨基甲酸酯)进行了比较. 研究发现, 此种手性固定相不仅具有较高的手性识别能力, 而且对某些类型手性化合物的选择性与后者明显不同; 探讨了此种固定相可能的拆分机理.  相似文献   

5.
通过糖单元6-位羟基的保护和去保护,运用区域选择性方法合成了6种新型多糖类氨基甲酸酯衍生物,分别为纤维素/直链淀粉-[2,3-二(3,5-二甲基苯基)-6-环己基]氨基甲酸酯、[2,3-二(3,5-二氯苯基)-6-环己基]氨基甲酸酯及[2,3-二(4-氯苯基)-6-环己基]氨基甲酸酯,并将其涂敷在氨丙基硅胶的表面制备HPLC手性固定相.利用1H-NMR与FTIR光谱技术对所合成衍生物进行结构表征和分析,并应用HPLC法评价其对于9种手性化合物的手性识别能力.通过与以手性识别能力高而著称且含有单一取代基的纤维素/直链淀粉-三(3,5-二甲基苯基氨基甲酸酯)等手性固定相的对比分析表明,所合成新型手性固定相对于某些对映体显示出更优的手性识别能力.由进一步分析表明,糖单元2-、3-和6-位取代基的性能对于纤维素和直链淀粉氨基甲酸酯类衍生物的手性识别能力均具有较大影响.  相似文献   

6.
合成出了直链淀粉-三(3,5-二甲基苯基氨基甲酸酯)手性固定相.用该固定相首次拆分了一系列硒代甘油醚对映异构体.讨论了流动相组成和样品结构对保留和拆分的影响.  相似文献   

7.
黄虎  金京玉  李元宰 《色谱》2009,27(4):467-471
考察了多糖类手性固定相在含有酸性或碱性添加剂的流动相下高效液相色谱法拆分β受体阻滞剂对映体的效果。色谱条件: 流动相为10%~30%(体积分数,下同)乙醇-正己烷(含0.1%三氟乙酸)和10%~30%乙醇-正己烷(含0.1%三乙胺),流速1.0 mL/min,紫外检测波长254 nm。结果表明,在直链淀粉-三(3,5-二甲基苯基氨基甲酸酯)衍生物手性固定相(Chiralpak AD和Chiralpak IA)上拆分β受体阻滞剂对映体,酸性添加剂的流动相体系与碱性添加剂的流动相体系相比,碱性添加剂的流动相的拆分效果比酸性添加剂的流动相要好。而在纤维素-三(3,5-二甲基苯基氨基甲酸酯)衍生物的手性固定相(Chiralcel OD和Chiralpak IB)上分离β受体阻滞剂,比较酸性添加剂的流动相与碱性添加剂的流动相的拆分效果,发现酸性添加剂的流动相条件下对映体的保留减弱,但对映体的选择性增大,特别是在Chiralcel OD上,酸性添加剂的流动相体系对对映体的选择性非常理想,而且随着流动相中酸性添加剂含量的增加,β受体阻滞剂对映体的分离效果更佳。  相似文献   

8.
通过区域选择性方法制备了两种新型淀粉衍生物,分别为淀粉2-苯甲酸酯-3-(4-甲基苯基氨基甲酸酯)-6-(3,5-二氯苯基氨基甲酸酯)和淀粉2-苯甲酸酯-3-(3,5-二氯苯基氨基甲酸酯)-6-(4-甲基苯基氨基甲酸酯),将二者分别涂覆于氨丙基硅胶后用作液相色谱手性固定相。研究表明:所制备的手性固定相显示出特异的手性识别能力,其手性识别能力明显高于均匀取代淀粉衍生物——淀粉三(3,5-二氯苯基氨基甲酸酯),取代基的性质及在葡萄糖单元上的位置对手性固定相的手性识别能力有较大的影响。一些未在商品化的手性柱Chiralpak AD上得到有效分离的手性化合物在所制备的固定相上得到了更好的分离。所测试的8对对映体在淀粉2-苯甲酸酯-3-(4-甲基苯基氨基甲酸酯)-6-(3,5-二氯苯基氨基甲酸酯)固定相上均得到了分离,因而此固定相的手性识别能力较强,具有潜在的应用价值。  相似文献   

9.
采用纤维素-三(3,5-二甲基苯基氨基甲酸酯)手性固定相(Chiralcel OD)和纤维素-三(4-甲基苯基甲酸酯)手性固定相(Chiralcel OJ),在正相高效液相(N-HPLC)模式下,基线拆分了两个系列共13个结构类似的三唑类手性化合物,结果发现,当手性固定相(Chiral Stationary Phase,CSP)可以与溶质分子之间形成较强氢键时,Chiralcel OD的手性识别能力明显优于Chiraleel OJ,当手性固定相(CSP)与溶质分子之间不能或难于形成氢键时,两种CSP的手性拆分能力相似;提高流动相中极性改性剂的极性有利于手性化合物的拆分。在反相高效液相(R-HPLC)模式下,共基线拆分了8个三唑类手性化合物,实验发现,OJ-CSP的手性拆分能力明显优于OD-CSP.它们对对映体分子的选择性主要受CSP与溶质分子间的π-π相互作用的影响。  相似文献   

10.
周志强  王鹏  江树人  王敏 《色谱》2003,21(1):44-45
合成了直链淀粉-三(3,5-二甲基苯基氨基甲酸酯),涂于氨基丙烷化硅胶上制得高效液相色谱手性固定相,并利用该固定相对外消旋丙烯菊醇对映体进行了拆分。考察了流动相中异丙醇含量对分离效果的影响。  相似文献   

11.
The polysaccharide chiral stationary phases (CSPs) Chiralcel OD and Chiralpak AD, and the brush-type (R,R)-Whelk-01 chiral stationary phases have been evaluated to separate new synthetic pyrrolylphenylethanoneamine racemic compounds, potentially monoamine oxidase (MAO) inhibitors, under various mobile phase compositions, using various temperatures. The enantioseparation was evaluated by comparing the (R,R)-Whelk-01 column performance with those of Chiralpak AD and Chiralcel OD. Significant differences were observed in their chiral recognition, as revealed from their retention, selectivity, resolution and elution order. Performances of the Chiralpak AD column were superior to those of the Chiralcel OD and (R,R)-Whelk-01 columns. Some of the racemic compounds were resolved by semipreparative chromatography on Chiralpak AD column in order to study the chiroptical proprieties of the single enantiomers.  相似文献   

12.
Ghanem A  Hoenen H  Aboul-Enein HY 《Talanta》2006,68(3):602-609
A direct liquid chromatographic enantioselective separation of a set of β-blocker enantiomers on the new immobilized and conventional coated amylose tris-(3,5-dimethylphenylcarbamate) chiral stationary phases (Chiralpak IA and Chiralpak AD, respectively) was studied using methanol as mobile phase and ethanolamine as an organic modifier (100:0.1, v/v). The separation, retention and elution order of the enantiomers on both columns under the same conditions were compared. The effect of the immobilization of the amylose tris-(3,5-dimethylphenylcarbamate) chiral stationary phase on silica (Chiralpak IA) on the chiral recognition ability was noted when compared to the coated phase (Chiralpak AD) which possesses a higher resolving power than the immobilized one (Chiralpak IA). A few racemates, which were not or poorly resolved on the immobilized Chiralpak IA were most efficiently resolved on the coated Chiralpak AD. However, the immobilized phase withstand solvents like dichloromethane when used as an eluent or as a dissolving agent for the analyte. The versatility of the immobilized Chiralpak IA in monitoring reactions performed in dichloromethane using direct analysis techniques without further purification, workup or removal of dichloromethane was studied on a representative example consisting of the lipase-catalyzed irreversible transesterification of a β-blocker using either vinylacetate or isopropenyl acetate as acyl donor in dichloromethane as organic solvent.  相似文献   

13.
Summary Resolution of the enantiomers of new racemic diphosphines, which are very useful ligands for stereoselective catalysts, and of the corresponding phosphine oxides has been investigated by high-performance liquid chromatography (HPLC) on four different chiral stationary phases (CSP)—Chiralpak AD, Whelk-01, and Supelcosil naphthylurea and phenylurea columns. The mobile phases were optimized to achieve separation of the enantiomers. α andR S values ranged from 1.05 to 5.17 and from 0.37 to 6.57, respectively, for the Chiralpak AD and (R,R)-Whelk-01 columns. For the Supelcosil LC-(R)-phenylurea and Supelcosil LC-(S)-naphthylurea columns α values ranged from 1.05 to 1.62 andR S from 0.35 to 3.61.  相似文献   

14.
The direct HPLC enantioseparation of a novel series of chiral pyridazin-3(2H)-one derivatives with α-aminophosphonate moiety was performed on two immobilized polysaccharide chiral stationary phases (Chiralpak IA, Chiralpak IC) using n-hexane (n-Hex)/dichloromethane (DCM) mobile phase with 5% alcohol additive. Good baseline separation of the enantiomers was achieved using amylose tris-(3,5-dimethylphenylcarbamate) chiral stationary phases (Chiralpak IA) on analytical scale. The analytical method was further scaled up to semi-preparative loading to obtain small amounts of both the enantiomers of pyridazin-3(2H)-one derivative. The semi-preparative resolution of all compounds was successfully achieved with n-hexane/dichloromethane/ethanol (EtOH) as mobile phase using a semi-preparative Chiralpak IA column. The first fractions were isolated with purities of >99.9% (enantiomeric excess (e.e.), and the second fractions were obtained with purities of >98.2% (enantiomeric excess). The assignment of the absolute configuration was established for the F1 fraction of compound a-2 by single-crystal X-ray diffraction method.  相似文献   

15.
崔欣  付芳敏  朱槿  迟永祥  彭小华  廖建  邓金根 《分析化学》2002,30(12):1494-1496
考察了奥美拉唑、兰索拉唑对映体及其拆分剂联二萘酚在4种手性柱(chiralcel OD、chiralpak AD、kromasil CHI-TBB和chiral-AGP)上的色谱行为。实验结果表明:Chiralpak AD、 Chiral-AGP柱分离度大,柱效稳定,并且这两种柱子的配合使用实现了对包结拆分的全过程监控。此外,本文根据对映体在不同手性柱的出峰顺序进行了讨论。  相似文献   

16.
李冬艳  吴锡  郝芳丽  杨洋  陈小明 《色谱》2016,34(1):80-84
采用超临界流体色谱法(SFC),在多糖固定相Chiralpak IA、IB、IC、ID、IE和IF上成功拆分了11种手性化合物。分离结果表明,这6支手性色谱柱对这些手性化合物具有良好的手性识别互补性,均可以在10 min之内得到良好的分离结果,具有较好的实用性。改性剂甲醇、乙醇和异丙醇对手性化合物的保留时间以及手性选择性均具有良好的调节作用,需要根据不同手性物质在手性柱上的分离情况加以区别,选择使用,并调节改性剂至合适的比例。针对键合型固定相溶剂通用性的特征,特殊改性剂的应用也有助于优化手性分离。  相似文献   

17.
Two chiral stationary phases derived from derivatized amylose (Chiralpak AD-H and Chiralpak IA) have been used to separate the enantiomers of new diethyl benzamidoarylmethylphosphonates. The data obtained indicate that all the studied compounds could be easily baseline resolved on both columns. Owing to the different techniques involved in their preparation, the two stationary phases differ in their abilities to effect enantiomeric separation. The semi-preparative separation of all compounds was executed successfully in n-hexane/EtOH on the new immobilized Chiralpak IA column. The analytical assessment of the enantiomeric excess values of all collected fractions was higher than 97%. The stereochemical configuration for the F1 fraction of a diethyl benzamidoarylmethylphosphonate was determined by X-ray diffraction structure analysis.  相似文献   

18.
The solvent versatility of Chiralpak IA, a new chiral stationary phase (CSP) containing amylose tris(3,5-dimethylphenylcarabamate) immobilized onto silica gel, is investigated for the enantioselective separation of a set of cyclopropane derivatives using ethyl acetate or dichloromethane (DCM) as non-standard mobile phase eluent and diluent, respectively in high-performance liquid chromatography (HPLC). A comparison of the separation of cyclopropanes on both immobilized and coated amylose tris(3,5-dimethylphenylcarbamate) chiral stationary phases (Chiralpak IA and Chiralpak AD, respectively) in HPLC using a mixture of n-hexane/2-propanol (90/10 and 99/1, v/v) as mobile phase with a flow rate of 0.5 ml/min and UV detection at 254 nm, is demonstrated. The optimized method of separation is used for an online HPLC monitoring for the Rh(II)-catalyzed asymmetric intermolecular cyclopropanations in dichloromethane. Direct analysis techniques without further purification, workup or removal of dichloromethane were summarized. The method provides an easy and direct determination of the enantiomeric excess of the cyclopropanes and selectivity of the catalyst used without any further work up.  相似文献   

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