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1.
以S,S-酒石酸正十二酯和H3BO生成的配合物为手性载体, 通过量热分析结果初步证明该配合物的存在, 采用厚体液膜拆分了普萘洛尔外消旋体. 考察了S,S-酒石酸十二酯浓度和水相pH值对拆分性能的影响, 优化了其拆分操作条件, 同时进行了动力学分析. 得出厚体液膜拆分的一般规律, 即其拆分属于动力学拆分过程, 适当提高手性载体的浓度有利于提高对映单体流量和拆分的立体选择性, 水相pH值对于拆分性能有着重要的影响. 其拆分过程中萃取反应过程为控速步骤, 对映单体的跨膜传递可以用两个串联的准一级不可逆过程进行描述.  相似文献   

2.
本文研究了反萃剂、料液 HCl浓度、温度、 N_(235)浓度对 N_(235)二甲苯醋酸铵大块液膜体系迁移 Cd~(2+)的影响。当膜相添加不同浓度的表面活性剂 Span 80时,测定了膜料液界面的萃取反应表观速率常数 k_1和膜反萃相界面的反萃取表观速率常数 k_2,并进行了相应的动力学分析。实验证明, Cd~(2+)的迁移可用两个连续单向不可逆的一级反应来描述。在本文的液膜体系中, Cd2+的跨膜迁移和 H+的同向迁移耦合。  相似文献   

3.
本文研究了反萃剂,料液HCl浓度、温度、N235浓度对N235-二甲苯-醋酸铵大块液膜体系迁移Cd^2+的影响,当膜相添加不同浓度的表面活性剂Span-80时,测定了膜-料液界面的萃取反应表观速率常数k1和膜-反萃相界面的反萃取表观速率常数k2,并进行了相应的动力学分析。实验证明,Cd^2+的迁称可用两个连续单不可逆的一级反应来描述,在本文的液膜体系中,Cd^2+的跨膜迁移和H^+的同向迁移耦合。  相似文献   

4.
组合手性萃取拆分克伦特罗外消旋体   总被引:1,自引:1,他引:0  
以D-二苯甲酰酒石酸(D-DBTA)和D-二对甲苯甲酰酒石酸(D-DTTA)的组合作为手性选择剂,研究克伦特罗对映体在水相和有机相中的萃取分配行为,优化了手性萃取条件,考察了组合手性选择剂的不同摩尔浓度比、有机溶剂、水相pH值和亲脂性阴离子BPh4-对手性萃取性能的影响,并测定了手性萃取拆分过程中的热力学函数.在优化的手性萃取条件下,有机相中的对映体过量值(e.e.%)可大于10%,而所使用的选择剂量相对大为降低.热力学数据分析表明,该手性萃取过程为焓控过程.  相似文献   

5.
以羟丙基-β-环糊精(HP-β-CD)作为手性添加剂,采用毛细管区带电泳(CZE)成功分离了克伦特罗(Clenbuterol,Cle)对映体.研究了β-CD种类与浓度,缓冲液pH值及浓度,操作温度等对分离的影响.结果表明,以30 mmol/L的HP-β-CD为手性添加剂,50 mmol/L的磷酸盐缓冲溶液(pH 2.5)为缓中液,分离电压24 kV,操作温度20℃,可使Cle对映体实现基线分离,其分离度为6.78.对拆分机理也进行了探讨,测定了HP-β-CD与两对映体的结合常数及热力学参数;对CZE定量能力(线性,精度)进行了考察,R和S型的线性相关系数都大于0.998,两者的相对标准偏差(RSD)均低于2.2%.  相似文献   

6.
以万古霉素和1,6-己二异腈酸酯为单体,通过界面聚合法在聚砜基膜上制备了万古霉素手性高分子膜.利用红外光谱及扫描电子显微镜对该膜进行了表征.将其用于青霉素及头孢菌素类药物的重要中间体苯甘氨酸的手性拆分,通过优化单体摩尔比、界面聚合时间及外消旋体溶液浓度等分离参数,可达到超过70%的D-苯甘氨酸对映体过剩值的手性分离.通过比较研究手性膜吸附、固相萃取、膜色谱、膜渗析和膜超滤过程,发现手性膜上优先吸附的对映体L-苯甘氨酸并不是各种模式下优先透过的对映体,结合外消旋体的缔合特性,提出了"吸附-缔合-扩散"的手性膜分离机理.  相似文献   

7.
通过恒界面池研究了羟丙基-β-环糊精(HP-β-CD)萃取苯基琥珀酸对映体(PSA)动力学.采用伴随化学反应的萃取理论获得萃取动力学.实验分别考察了搅拌速率、界面面积、对映体浓度和萃取剂浓度等条件对PSA对映体萃取动力学的影响.实验结果表明:HP-β-CD萃取PSA对映体的反应为快反应;对对映体反应是一级反应,对萃取剂反应是二级反应;R-PSA,S-PSA反应速率常数分别为3.4×10-2m6mol-2s-1,9.96×103m6mol-2s-1.这些数据对萃取过程的设计是很重要的.  相似文献   

8.
唐课文  李洪建  刘永兵 《化学学报》2011,69(22):2696-2702
以羟丙基-β-环糊精(HP-β-CD)和L-酒石酸异丁酯(L-IBTA)分别为水相和有机相中手性选择体构成双相识别手性萃取体系, 研究其对佐匹克隆(ZPC)对映体的萃取动力学. 分别考察了搅拌速度、两相接触面积、水相中ZPC对映体浓度、水相及有机相中手性选择体浓度以及水相pH值对ZPC对映体萃取动力学的影响. 结果表明, L-IBTA萃取ZPC对映体的反应为“快反应”|对ZPC对映体反应是一级反应, 对L-IBTA反应是二级反应|对R-ZPC和S-ZPC反应速率常数分别为31.25×10-5和48.74×10-5 mol-2•m6•s-1. 萃取速率随HP-β-CD浓度的增加而降低. 以上研究结果将为手性萃取的工程设计提供参考.  相似文献   

9.
本工作研究了2-乙基己基膦酸单2-乙基己基酯(即EHEHPA)从醋酸醋酸钠缓冲介质中萃取Co(Ⅱ)的动力学和机理。萃取反应在改进的恒界面池中进行,并建立了连续、自动测量萃取动力学数据的研究系统。在动力学坪区测定了一系列初始萃取速率和反萃速率,比界面积和表面活性剂等对萃取速率的影响表明化学反应发生在液液界面,低于30℃时的表观活化能为82kJ·mol-1,高于30℃时为31kJ·mol-1,宽的组分浓度变化也会引起传质控制过程的转变。由此可以认为:EHEHPA萃Co(II)的动力学过程在萃取速率较低时为化学反应控制,随着反应速率的加快转变为组分在界面膜的扩散控制。  相似文献   

10.
以P507-煤油HCl-Sm为实验体系,在两种聚偏氟乙烯中空纤维膜器中研究了溶胀性能、反萃酸度对基于水相的总传质系数及中空纤维膜孔径的影响,考察了料液酸度、萃取剂浓度、钐离子浓度与萃取速率的关系。获得了相应的反应级数。根据界面反应动力学,得到了速率常数值和动力学方程。  相似文献   

11.
用溶胶-凝胶法以磷钼酸(MPA)的镍盐溶液水解钛酸四丁酯制备了NiPMo/TiO2催化剂.使用ICP、 XRD、 TG-DTA、 IR、 TPD-MS和微反应技术研究了催化剂的化学组成、热稳定性、化学吸附性质和催化反应性能.杂多钼酸盐与TiO2通过O2-在TiO2表面发生了键合.在623 K下,杂多阴离子仍保持原有的Keggin结构.CO2在Lewis酸位Ni(Ⅱ)和Lewis碱位Ni-O-Mo的桥氧协同作用下生成CO2卧式吸附态Ni(Ⅱ)←O-(CO)←(O--Ni).丙烯有多种吸附态在催化剂上吸附.在563 K、 1 MPa和空速1500 h-1的反应条件下,丙烯的摩尔转化率为3.2%,产物MAA选择性为95%.  相似文献   

12.
Different approaches for the synthesis of 1-benzyloxypyrazin-2(1H)-one derivatives from simple amino acids have been investigated. A library of 33 precursors for the preparation of N-hydroxy pyrazinones was obtained in moderate to good yields.  相似文献   

13.
In the context of the preparation of camptothecin and luotonin A analogs, the synthesis of some key keto-precursors and their use in Friedländer condensation are described. This paper also focuses on the stability of these keto intermediates and emphasizes the major differences between indolizinones and pyrroloquinazolinones series. Noteworthy is also the report of some original structures isolated as by-products of some experiments.  相似文献   

14.
The Langevin paramagnetic theory can’t describe the relation between magnetization of ferrofluids and applied magnetic field. The structuralization of ferrofluids, which is considered the main influence factor of the magnetization, is regarded. The part of magnetization works is deposited when the structure is forming. This action influences the magnetization of ferrofluids directly or indirectly. On the base of the “compressing” model, the Langevin function that usually describes the magnetization of ferrofluid is modified, and a well-fitted curve is obtained. An equation of the relation between the equivalent volume fraction after being “compressed” and the intensity of magnetic field is discovered, which approximately describes the process of magnetization. The relation between the approximate initial susceptibility and the volume fraction can be obtained from modified formula.  相似文献   

15.
The highly regioselective Buchwald–Hartwig amination at C-2 of the cheap and readily accessible reagent, 2,4-dichloropyridine with a range of anilines and heterocyclic amines is described. This new methodology is robust and provides a facile access to 4-chloro-N-phenylpyridin-2-amines on 0.25 mol scale. These intermediates undergo a further Buchwald–Hartwig amination at higher temperature to enable rapid exploration of the chemical space at C-4 and to provide a library of 2,4-bisaminopyridines.  相似文献   

16.
KMnO4-mediated oxidative CN bond cleavage of tertiary amines producing secondary amine was introduced, which was trapped by electrophiles (acyl chloride and sulfonyl chloride) to form amides and sulfonamides. The reaction could take place at mild condition, tolerating a wide range of function groups and affording products in moderate to excellent yields.  相似文献   

17.
The review contains a concise historical account and information on the most significant researches undertaken by the staff at the A. E. Favorsky Irkutsk Institute of Chemistry, Siberian Branch of the Russian Academy of Sciences on the Chemistry of Heterocyclic Compounds. Dedicated to Academician of the Russian Academy of Sciences B. A. Trofimov on his 70th jubilee. Translated from Khimiya Geterotsiklicheskikh Soedinenii, No. 10, pp. 1443–1502, October, 2008.  相似文献   

18.
A general synthesis of previously unknown semicarbazone-based α-amidoalkylating reagents, 4-(tosylmethyl)semicarbazones, has been developed. The synthesis involved three-component condensation of semicarbazones of aliphatic or aromatic aldehydes with the same or other aldehydes and p-toluenesulfinic acid. The scope and limitations of this reaction were investigated. The compounds obtained were demonstrated to be an efficient α-(4-semicarbazono)alkylating agents. They were reacted with H- (sodium borohydride), O- (sodium methylate), S- (sodium phenylthiolate), N- (pyrrolidine, sodium succinimide), P- (trialkyl phosphites), and C-nucleophiles (sodium diethyl malonate) to give the corresponding products of the tosyl group substitution, 4-substituted semicarbazones, including analogues of nitrofurazone. Among the prepared compounds tested in vitro for antibacterial and antifungal activity, three nitrofuryl-containing semicarbazones exhibited high biological activities with minimum inhibitory concentration (MIC) values of 8–32 μg/mL.  相似文献   

19.
Zhanhui Yang  Shiyi Yang  Jiaxi Xu 《Tetrahedron》2017,73(23):3240-3248
Regiospecific and direct imidation of the methyl C(sp3)–H bond of thioanisoles is realized under mild and metal-free conditions with N-fluorobis(benzenesulfonyl)imide as an oxidant and nitrogen source. Proposed mechanism suggests that thionium ion intermediates and a Pummerer-type reaction are involved. The imidation has advantages such as high step-economy, excellent functionality tolerance, and regiospecificity, giving structurally diverse imidation products.  相似文献   

20.
A small library of new chiral bidentate hydroxyalkyl-imidazolium salts 1 is conveniently synthesized on multi-gram scale from inexpensive and commercially available chiral pool amino acids. The corresponding carbenes, generated by deprotonation of imidazolium salts 1, in combination with palladium(II) chloride were tested in the Mizoroki–Heck coupling reaction. The most significant results in terms of yields and reactivities were achieved with low catalyst loading. The catalytic activities of these imidazolium salts were also investigated in the asymmetric addition of diethylzinc to benzaldehyde. The use of MgO nanoparticles as an additive in conjunction with these ligands played a crucial role in increasing the efficiency of these reactions.  相似文献   

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