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1.
采用磺丁基醚-β-环糊精(SBE-β-CD)为手性流动相添加剂,建立了反相高效液相色谱手性流动相添加剂法拆分分离佐匹克隆对映体的方法。在普通C18色谱柱(250 mm×4.6 mm×5.0μm)上,考察了水相pH、磺丁基醚-β-环糊精浓度、磷酸盐缓冲液浓度、甲醇含量、柱温等对佐匹克隆对映体拆分效果的影响。确定最适用的色谱条件:流动相为水相(5 mmol/L NaH2PO4,含磺丁基醚-β-环糊精5 mmo/L,以H3PO4调pH为3):甲醇=78:22(V/V),检测波长305nm,流速为1 mL/min,柱温为30℃,此条件下佐匹克隆对映体的保留时间分别为23.0和25.6 min,分离度为1.81。两对对映体质量浓度在0.04~0.36g/L范围内线性关系良好(r≥0.9990),保留时间的RSD分别为0.73%和0.80%,峰面积的RSD分别为1.2%和1.1%。  相似文献   

2.
王伟  周晓娟  季一兵  相秉仁 《分析化学》2013,(10):1566-1570
利用毛细管电泳和分子模拟对磺丁基醚-β-环糊精(SBE-β-CD)在莫达非尼手性拆分中的立体选择性差异进行了研究。考察了环糊精浓度和温度对对映体手性拆分的影响。在15~35℃温度范围内,考察了对映体的保留和分离行为。结果表明,随着温度的升高,手性分离变差,并以lnα对1/T作图,得到的Van’t Hoff曲线具有良好线性关系(r=0.995)。热力学结果表明,此手性拆分过程为焓控过程。在5~50 mmol/L范围内,考察了SBE-β-CD浓度对分离的影响,采用双倒数法求得莫达非尼S-和R-对映体与SBE-β-CD的结合常数分别为58.0和70.6 L/mol。分子模拟实验以Gold对接完成,结果表明,莫达非尼R-对映体相比S-对映体与SBE-β-CD结合更稳定,且两对映体与SBE-β-CD结合的差异主要来源与氢键贡献的差异。  相似文献   

3.
固相萃取-毛细管电泳法测定兔血清中的山莨菪碱对映体   总被引:2,自引:0,他引:2  
建立一种可用于定量的毛细管电泳法分离山莨菪碱对映体. 系统研究了三种手性选择剂: 羟丙基-β-环糊精 (HP-β-CD), 甲基-β-环糊精 (Me-β-CD), 羧甲基-β-环糊精(CM-β-CD) 及其浓度、缓冲溶液浓度和 pH 对山莨菪碱拆分的影响. 在110 mmol/L Tris-H3PO4缓冲液中加入20.0 mg/mL HP-β-CD和5.0 mg/mL CM-β-CD (pH 4.0)条件下, 山莨菪碱的4个对映体达到基线分离. 血清样品通过固相萃取预处理和浓缩, 对映体的固相萃取回收率在82.9%~90.7%, 相对标准偏差RSD%均小于7 %. 山莨菪碱的4个对映体血标准溶液浓度与电泳峰面积在77.86~0.39 μg/mL范围内呈良好的线性, r≥0.999, 检出限(S/N=3)为0.08 μg/mL. 平均日间和日内精密度(RSD% )分别小于6.1% 和4.8%, 方法回收率为97.4% 和105.4%. 建立的方法准确、可靠, 应用于监测兔连续3 d口服75 mg 山莨菪碱后血清中山莨菪碱的血药浓度, 结果满意.  相似文献   

4.
建立一种可用于定量的毛细管电泳法分离山莨菪碱对映体.系统研究了三种手性选择剂:羟丙基-β-环糊精(HP-β-CD),甲基-β-环糊精(Me-β-CD),羧甲基-β-环糊精(CM-β-CD)及其浓度、缓冲溶液浓度和pH对山莨菪碱拆分的影响.在110 mmol/L Tris-H3PO4缓冲液中加入20.0 mg/mL HP-β-CD和5.0 mg/mL CM-β-CD(pH 4.0)条件下,山莨菪碱的4个对映体达到基线分离.血清样品通过崮相萃取预处理和浓缩,对映体的固相萃取回收率在82.9%~90.7%,相对标准偏差RSD%均小于7%.山莨菪碱的4个对映体血标准溶液浓度与电泳峰面积在77.86~0.39μg/mL范围内呈良好的线,r≥0.999,检出限(S/N=3)为0.08 μg/mL.平均日内和日间精密度(RSD%)分别小于4.2%和6.5%,方法回收率为95.1%和105%.建立的方法准确、可靠,应用于监测兔连续3 d口服75 mg山莨菪碱后血清中山莨菪碱的血药浓度,结果满意.  相似文献   

5.
用羟丙基-β-环糊精(HP-β-CD)作为手性流动相添加剂,在UFCN(220×4.6 mm×5μm)氰基柱上通过反相高效液相色谱实现了4-氯扁桃酸(4-Cl MA)对映体的拆分。考察了水相HP-β-CD浓度,NaH_2PO_4浓度,p H,流动相中甲醇的比例及柱温等因素对分离度的影响。确定的最优色谱条件为:水相(5 mmol/L HP-β-CD,8 mmol/L NaH_2PO_4,p H 2.8),V水相/V甲醇=95:5,柱温25℃,流速1 m L/min。此条件下4-Cl M A对映体的分离度可达1.80。同时在此色谱条件下考察了3-氯扁桃酸(3-Cl MA),2-氯扁桃酸(2-Cl MA)与扁桃酸(MA)对映体的色谱拆分结果。结果发现在此条件下,3-Cl M A对映体分离度为1.51,而2-Cl M A与M A完全没有分开。对方法进行了验证,(S),(R)-4-Cl MA两对映体低、中、高浓度日内和日间精密度的RSD均小于1.1%;(S),(R)-4-Cl M A两对映体回收率分别为101.0%和100.6%;(S),(R)-4-Cl M A两对映体检出限与定量限分别为0.028,0.030 mg/L与0.093,0.098 mg/L。  相似文献   

6.
以高磺化-β-环糊精为毛细管电泳手性选择剂,建立了有效分离7种手性芳香仲醇对映体的方法.在20 mmol/L H3PO4-三乙醇胺为背景电解质(pH 2.5),6%(m/V) 高磺化-β-环糊精为手性选择剂(S-β-CD),柱温20 ℃,操作电压-15 kV,检测波长214 nm等优化条件下,所有芳香仲醇对映体均实现基线分离.以本方法测定了7种芳香酮不对称氢转移反应产物7种手性芳香仲醇的百分对映体过量值(% ee),其测定结果与高效液相色谱、气相色谱测定结果完全一致.本方法可以用于手性芳香仲醇光学纯度的测定.  相似文献   

7.
高效液相色谱手性流动相添加剂法拆分氯噻酮对映体   总被引:3,自引:1,他引:3  
应用反向高效液相色谱,以羟丙基-β-环糊精(HP--βCD)作为手性流动相添加剂,拆分了氯噻酮(Chlorthalidone)对映体。对主要的影响因素如羟丙基-β-环糊精浓度、流动相pH值、三乙胺(TEA)、甲醇、柱温、流速等进行了系统研究,建立了羟丙基-β-环糊精流动相添加剂法拆分氯噻酮对映体的方法。使用HarbonLichrospher-C18色谱柱(5μm,150 mm×4.6 mm),流动相为V(甲醇)∶V(水相)=20∶80(水相含30 mmol/L HP--βCD0、.1 mol/L Na2HPO4、体积分数2%的TEA、pH5),流速为0.8 mL/min,室温下拆分,氯噻酮对映体可得到良好分离。  相似文献   

8.
本文利用环糊精修饰毛细管胶束电动色谱法(CD-MEKC)同时分离检测橙皮苷和柚皮苷对映体。实验优化的条件为:以60mmol/L胆酸钠(SC)+30mmol/L羟丙基-β-环糊精(HP-β-CD)+20 mmol/L NaH2PO4-100 mmol/L NaOH(pH=9.0,97%(V/V))+3%(V/V)甲醇为运行缓冲液,分离电压25kV,紫外检测波长214nm。在上述最佳条件下,橙皮苷和柚皮苷对映体在9min内得到完全分离,橙皮苷对映体的检测限(S/N=3)分别为0.13μg/mL和0.25μg/mL;柚皮苷对映体的检测限(S/N=3)分别为0.14μg/mL和0.07μg/mL。将所建立的方法用于胃苏颗粒制剂中橙皮苷和柚皮苷的对映体测定,回收率在86.0%~113.2%之间。  相似文献   

9.
高效液相色谱手性流动相添加剂分离西孟坦对映体   总被引:9,自引:0,他引:9  
以 β 环糊精作为手性流动相添加剂 ,研究了DL 西孟坦在反相HPLC系统中的拆分。考察了缓冲盐的浓度、pH、β 环糊精的浓度、流动相中甲醇的比例、流动相流速和温度对手性分离的影响 ,建立了 β 环糊精动态手性固定相法分离西孟坦对映体的方法。色谱条件为 :ZirchromKromasilODS 1(5 μm ,15 0mm× 4 .6mm)色谱柱 ,流动相为 2 0mmol/L磷酸盐缓冲液 (pH 6 .0 )含 12mmol/Lβ 环糊精∶甲醇 (70∶30 ,V/V) ,流速为 0 .8mL/min ,温度为 17℃。DL 西孟坦对映体的保留时间分别为 2 2 .5和 2 4 .5min ,分离度为 1.5 7。  相似文献   

10.
利用反相液相色谱(RP-HPLC)法,以羟丙基-β-环糊精(HP-β-CD)为手性流动相添加剂,研究了苯基琥珀酸(PSA)对映体的色谱保留机制.苯基琥珀酸对映体达到基线分离的最佳色谱分离条件为:10 mmol/L HP-β-CD,20% (体积分数)乙腈,0.05%(体积分数)三氟乙酸,pH 2.5,柱温25 ℃,流速1.0 mL/min,进样量为20 μL,检测波长为254 nm.该文建立了保留因子(k)与ce(HP-β-CD)、ce(H+)、包结平衡常数以及苯基琥珀酸的解离常数的关系式,并结合实验对该关系式进行了验证.保留因子的倒数1/k对ce(HP-β-CD)呈良好的线性关系,证明HP-β-CD与苯基琥珀酸对映体形成了包合比1 ∶ 1的包合物.在低酸度值下,包结平衡常数的计算结果显示,R-(-)-苯基琥珀酸与HP-β-CD所形成的包合物的包结平衡常数(162.5)比S-(+)-苯基琥珀酸(97.4)的大很多.手性拆分过程中热力学参数的计算结果表明,HP-β-CD对苯基琥珀酸对映体的分离过程主要是一个焓驱动的过程,包合过程是一个放热过程.通过比较手性选择体结构,探讨了HP-β-CD拆分苯基琥珀酸对映体的机理. 研究表明,分子尺寸大小相匹配以及构象诱导作用大小不同可能是HP-β-CD拆分苯基琥珀酸对映体的主要因素.  相似文献   

11.
Despite their versatility, chiral pyryliums are almost unknown in the literature. Reported here is the synthesis of several new chiral pyrylium salts and the corresponding pyridines and phosphinines. This work more than doubles the number of reported chiral pyryliums, and also represents the first racemizable/epimerizable pyryliums. The derived phosphinines and pyridines represent rare α-chiral ligands for transition metals.  相似文献   

12.
We report the synthesis and chiroptical properties of novel chiral carbon nanorings S p-/Rp-[12]PCPP containing a planar chiral [2.2]PCP unit, and demonstrate that S p-/Rp-[12]PCPP can not only host crown ether 18-Crown-6 to form ring-in-ring complexes with a binding constant 3.35×103 M−1, but also accommodate the complexes of 18-Crown-6 and S/R-protonated amines to form homochiral S @Sp -/ R @Rp - and heterochiral S @Rp -/ R @Sp - ternary complexes, displaying significantly larger binding constants of up to 3.31×105 M−1 depending on the chiral guests. Importantly, homochiral S @Sp -/ R @Rp - ternary complexes exhibit an enhanced CD signal, while the heterochiral S @Rp -/ R @Sp - ones have a constant CD signal compared with the chiral carbon nanorings, respectively, which suggests that homochiral S @Sp -/ R @Rp - ternary complexes display a highly narcissistic chiral self-recognition for S/R-protonated chiral amines, respectively. Finally, the chiral ternary complexes can be further applied to determine the ee values of chiral guests. The findings highlight a new application of carbon nanorings in supramolecular sensors, beyond the common recognition of π-conjugated molecules.  相似文献   

13.
Various chiral dicationic benzimidazolophanes were obtained from optically pure (S)-BINOL, benzimidazole and a suitable aryl alkyl dibromide.  相似文献   

14.
A new type of amido-oxazoline ligands was conveniently synthesized from inexpensive and commercially available materials in high yields and enantiomeric excesses. The corresponding chiral copper complexes with this class of ligands [C2 symmetric S,S-bis(amido-oxazoline-Cu(II) complex] were synthesized accordingly. The ORTEP diagram of ligand 6a and complex 6a-copper were compared and characterization of the complex confirmed the involvement of both dentate parts of the ligands, the oxygen and nitrogen atoms, in complexation with copper. The utilization of this amido-oxazoline ligands in the copper-catalyzed enantioselective esterification of allylic CH bonds of cyclic olefins with tert-butyl-4-nitrobenzoperoxoate resulted in the highest activities, yields (up to 95%) and enantioselectivities (up to 96%) in the presence of HZSM-5 zeolite. These new findings highlight the protocol as one of the most attractive and useful methods for the oxidation of the asymmetric allylic CH bond of cycloalkenes compared to other methodologies reported in the literature.  相似文献   

15.
烯烃的有机催化不对称环氧化反应   总被引:4,自引:0,他引:4  
郑炎松  田振锋  江岸 《化学通报》2002,65(4):261-264
介绍了用手性酮,手性亚胺盐为催化剂以及手性胺为催化剂前体的新型有机催化不对称环氧化反应。  相似文献   

16.
Cellulose 3,5-dimethylphenylcarbamate was successfully immobilized onto bare silica gel for HPLC through the intermolecular polycondensation of triethoxysilyl groups, which were introduced onto the cellulose derivative via epoxide ring-opening reaction under acidic conditions. The immobilized-type chiral packing material (CPM) exhibited high chiral recognition ability and could be used with various eluents, which are incompatible with the conventional CPMs prepared by coating the derivative onto silica gel.  相似文献   

17.
18.
Zengwei Luo 《Tetrahedron letters》2007,48(10):1753-1756
Two benzo[de]isoquinoline 1,3-dione amino acids 1 and 2 were readily prepared, and their enantiodiscriminating ability were investigated by 1H NMR spectroscopy. It was found that 1 exhibited an excellent chiral recognition ability toward chiral α-phenylethylamine and some of its derivatives, leading to clear baseline separation of the multiplet of the probe groups in two enantiomers. The stoichiometric ratio and association constants of some host-guest complexes were determined. The interactions between the hosts and guest 3 were further studied by intermolecular NOE experiment and ESI-MS.  相似文献   

19.
含磷手性化合物在多聚糖类手性固定相上的手性分离   总被引:4,自引:0,他引:4  
在纤维素 三(3,5 二甲基苯基氨基甲酸酯)(ChiralcelOD)和直链淀粉 三(3,5 二甲基苯基氨基甲酸酯)(ChiralpakAD H)手性固定相上,采用高效液相色谱正相条件,分离了系列含磷手性化合物。考察了流动相中有机改性剂的种类及浓度对手性分离的影响;研究了化合物的结构与保留及对映体选择性的关系;并探讨了手性识别机理。  相似文献   

20.
Enantioseparation of chiral products has become increasingly important in a large diversity of academic and industrial applications. The separation of chiral compounds is inherently challenging and thus requires a suitable analytical technique that can achieve high resolution and sensitivity. In this context, CE has shown remarkable results so far. Chiral CE offers an orthogonal enantioselectivity and is typically considered less costly than chromatographic techniques, since only minute amounts of chiral selectors are needed. Several CE approaches have been developed for chiral analysis, including chiral EKC and chiral CEC. Enantioseparations by EKC benefit from the wide variety of possible pseudostationary phases that can be employed. Chiral CEC, on the other hand, combines chromatographic separation principles with the bulk fluid movement of CE, benefitting from reduced band broadening as compared to pressure-driven systems. Although UV detection is conventionally used for these approaches, MS can also be considered. CE-MS represents a promising alternative due to the increased sensitivity and selectivity, enabling the chiral analysis of complex samples. The potential contamination of the MS ion source in EKC-MS can be overcome using partial-filling and counter-migration techniques. However, chiral analysis using monolithic and open-tubular CEC-MS awaits additional method validation and a dedicated commercial interface. Further efforts in chiral CE are expected toward the improvement of existing techniques, the development of novel pseudostationary phases, and establishing the use of chiral ionic liquids, molecular imprinted polymers, and metal-organic frameworks. These developments will certainly foster the adoption of CE(-MS) as a well-established technique in routine chiral analysis.  相似文献   

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