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1.
手性相转移催化是不对称催化领域的重要分支之一,扮演着越来越重要的角色。本论文综述了几类新型手性季鏻盐催化剂的设计合成,及其在催化不对称Henry反应、不对称氢磷酰化反应、不对称烷基化反应、不对称Michael加成反应、不对称Mannich反应、不对称aldol反应、不对称质子化反应及不对称胺化反应中的催化活性和对映选择性,重点介绍了不同催化剂和反应底物之间立体效应和电子效应的影响,并对手性季鏻盐催化剂的发展进行了展望。  相似文献   

2.
Baeyer-Villiger氧化反应能控制产物的立体化学结构,在有机合成中对功能基转化和环扩张有重要的意义,因此氧化所得的产物可以广泛应用于合成许多天然产物和药物中间体以及一些高分子材料的单体等,是目前有机化学研究的热点之一。随着对该反应研究的深入,其催化剂的类型也在不断地增多,包括均相催化剂、非均相催化剂、生物催化剂。均相催化剂选择性和转化率虽高,但不及非均相催化剂重复利用率高。生物催化剂绿色环保,是未来研究的重点之一。本文从均相催化、非均相催化和生物催化三个方面对Baeyer-Villiger氧化反应相关的研究新进展进行了阐述,重点介绍了不同催化体系下催化剂与反应底物之间的作用,总结了有关催化反应的机理,并对Baeyer-Villiger氧化反应的发展进行了展望。  相似文献   

3.
稀土金属的配位数较高,可通过容纳大型手性配体,构筑手性环境,催化不对称反应的定向发生,在工业生产特别是制药工程中具有重要应用价值。本文以Henry反应、Mannich反应和Strecker反应为例,总结回顾了稀土金属催化剂在此类反应中的设计思路、性能特点与应用前景,旨在展现稀土金属催化剂兼具融合均相催化与异相催化的优势,不断发展,以满足实际生产需求的过程。  相似文献   

4.
对环己酮的合成实验进行了改进。以WO3为催化剂、H2O2为氧化剂、四丁基溴化铵(TBAB)为相转移催化剂,催化氧化环己醇制备环己酮。确定了催化剂、氧化剂和相转移催化剂的用量,并研究了反应温度和时间等条件对反应的影响。  相似文献   

5.
均相催化剂的负载化是解决催化剂分离与回收的一条有效途径,也是绿色化学研究的重要内容。可溶性高分子,尤其是树状大分子作为另一类催化剂载体近年来受到了越来越多的关注。通过选择合适的反应介质,可溶性高分子负载催化剂可以在均相条件下催化有机反应,反应结束后通过外加不良溶剂的固/液相分离、温度等调控的液/液相分离以及膜过滤等方法进行催化剂的分离与回收。本文概述了在可溶性高分子负载催化剂研究中取得的新进展,重点介绍了负载手性催化剂在不对称催化反应中的应用。  相似文献   

6.
金属卟啉催化剂应用于均相氧化反应的研究进展   总被引:3,自引:0,他引:3  
详细介绍了金属卟啉作为催化剂应用于各种均相氧化反应, 包括烷烃、烯烃、醇、醛、酚、硫化物、氮化物等化合物的氧化反应研究进展, 认为金属卟啉模拟酶催化剂在均相氧化反应中将有更大的应用前景.  相似文献   

7.
 研究了以硒为催化剂,三乙胺为助催化剂,对氯硝基苯和二甲胺水溶液(33%)为反应底物,经高选择性氧化还原羰基化一步合成灭草隆除草剂。在温度135℃和CO压力3.0 MPa条件下,反应4小时,转化率达到54%以上,灭草隆选择性达到99.5%以上。在本催化反应体系中,硒在反应前以固态存在,反应过程中与CO结合生成能溶于反应体系的羰基硒,反应结束后又以固态硒析出,兼具多相催化与均相催化的优点,产物易于分离,首次提出反应过程相转移催化概念。  相似文献   

8.
本研究报告了在相转移催化剂存在下,水玻璃与有机锡化合物反应,可以得到高粘性液体产物。考察了各种条件对反应的影响,结果表明:水相的pH在一定范围内反应才能进行;有机溶剂种类对产物分子量的大小有明显影响;相转移催化剂的效率与过去报道的水-苯体系的结论相一致。  相似文献   

9.
微波作用下乙酰苯胺的N—烷基化反应   总被引:1,自引:0,他引:1  
张晓辉  由业诚 《合成化学》1998,6(2):220-222
探讨了在微波照射下,用相转移催化剂进行了乙酰苯胺的N-烷基化反应,该反应速度快,产率令人满意。  相似文献   

10.
季铵盐催化氧化法合成硝基苯甲酸   总被引:6,自引:0,他引:6  
研究了季铵盐A-1催化KMnO4分别氧化邻、对硝基甲苯合成邻、对硝基苯甲酸的反应。考察了不同相转移催化剂的催化活性及催化剂用量、反应温度、反应时间、KMnO4用量和反应体系酸碱性对反应的影响。在优化反应条件下,即以季铵盐A-1为相转移催化剂,KMnO4与硝基甲苯摩尔比为2.5:1,反应温度为95℃,反应时间为3h,在中性条件下进行反应,邻位、对位产物收率分别可达95%和92%。实验表明,季铵盐A-1对于KMnO4氧化硝基甲苯合成硝基苯甲酸的反应是一种优良的相转移催化剂。  相似文献   

11.
报道了水溶性铑膦配合物组成的复合催化体系催化1-十二烯氢甲酰化反应中,双子表面活性剂[二溴化-(N,N,N′,N′-四甲基)-N,N′-二(十六烷基)-乙二铵]形成胶束的助催化作用.结果表明,在水/有机两相中,双子表面活性剂比单链表面活性剂CTAB具有更好加速催化反应的作用,并使烯烃氢甲酰化的区域选择性显著提高.这归因于双子表面活性剂有较低的cmc,可形成更加紧密规整的胶束结构,有利于增溶在胶束中的烯烃与铑催化剂配位和生成正构醛.  相似文献   

12.
有机电解质在胶束催化聚苯乙烯氯甲基化反应中的作用   总被引:1,自引:0,他引:1  
在实施聚苯乙烯氯甲基化反应的胶束催化体系中加入四丁基溴化铵 ((Bu)4NBr, TBAB), 研究了有机电解质TBAB对胶束催化反应的影响规律. 实验结果表明, 在非离子表面活性剂NP-10及阴离子表面活性剂SDS的胶束催化体系中, TBAB的加入使聚苯乙烯氯甲基化反应的速率明显增大, 前者尤为突出;而在阳离子表面活性剂CTAB的胶束催化体系中, TBAB的加入几乎对反应速率无促进作用. 这种结果一方面归因于加入电解质TBAB会降低SDS的临界胶束浓度, 从而增强对聚苯乙烯四氯化碳溶液的增溶能力;更主要的原因是TBAB的丁基与表面活性剂碳氢链间的疏水相互作用会使季铵离子(Bu)4N+嵌入SDS的胶束之中, 结合到NP-10的胶束表面, 使SDS胶束的阴离子头基对亲核取代反应(控制步骤)的禁阻作用得以减缓, 使NP-10的胶束表面携带了正电荷, 显著促进亲核取代反应的进行, 而对于CTAB的胶束, 由于静电排斥作用, 季铵离子(Bu)4N+不能接近CTAB的胶束, 故TBAB的加入对聚苯乙烯氯甲基化反应不产生作用.  相似文献   

13.
The physicochemical properties of a mixed surfactant system were studied under various conditions. The surfactants were anionic sodium dodecyl benzene sulfonate and nonionic Triton X 100. Variation of specific conductivity with concentration was used to determine the critical micelle concentration of anionic as well as the mixed surfactants. Iodine solubilization method was used to determine the CMC of the nonionic surfactant. The interaction parameter between the surfactant molecules were calculated. The wetting, foaming and detergent properties of mixed surfactant systems were studied. The variation of contact angle of the solution with teflon surface as a function of surfactant concentration was found to be a reasonably good method to determine the critical micelle concentration. Viscosity and cloud points were also determined. All these quantities are discussed. Received: 14 January 1998 Accepted: 11 June 1998  相似文献   

14.
The promotion effect of cationic gemini surfactants for the hydroformylation of 1-dodecene in the organic/aqueous biphasic catalytic system is reported. The hydroformylation reaction in the presence of gemini surfactant occurred with higher turnover frequency and higher selectivity for linear aldehyde than using conventional monomeric surfactant CTAB.  相似文献   

15.
李敏  何玉萼等 《分子催化》2001,15(6):416-418
研究了RhCl(CO)(TPPTS)2催化-1-十二烯氢甲酰化反应中,十六烷基三甲基溴化铵(CTAB)与十二烷基硫酸钠(SDS)形成的混合胶束对反应的促进作用。研究结果表明,随SDS在混合表面活剂溶液中比例的增大,1-十二烯生成醛的转华率先增大后又降低,并从混合胶束的临界胶束浓度及混合胶束对底物增溶作用的变化对这一结果进行了讨论。  相似文献   

16.
Summary The interaction between anionic (sodium dodecyl benzene sulfonate) surfactant and nonionic (Tri and Tetra propylene glycol monomethyl ether) surfactant was studied using nuclear magnetic resonance measurement. It was observed that the addition of sodium dodecyl benzene sulfonate to the solution of nonionic surfactant (Tri and Tetra propylene glycol mono methyl ether) caused an upfield shift of the central protons of the nonionic surfactants. The aromatic protons of sodium-dodecyl benzene sulfonate undergo a very small, almost negligible, downfield shift. The changes in the chemical shift values and the integration values of the polypropylene protons and benzene protons was interpreted in terms of mixed micelle formation with the simultaneous presence of highly fluid mixed micelles of varying compositions.With 2 figures and 2 tables  相似文献   

17.
The behavior of mixed cationic/anionic and cationic/nonionic surfactants solutions have been studied by viscosimetry. The systems studied were sodium dodecyl sulfate (SDS)/cetyltrimethylammonium bromide (CTAB) and CTAB/Brij (polyoxyethylene lauryl ether, n = 10 and 23) in aqueous and sodium chloride solutions. The relative viscosity of single nonionic surfactant solutions is larger than that of SDS or CTAB solutions. It increases with the number of ethylene oxide groups. In the mixed systems, viscosity deviates from ideal behavior. The deviation results from electrostatic interactions. The surfactant mixture composition affects the self-assembled microstructure and rheology. A new mixed system that forms clear micellar solution above CMC was detected. In CTAB/Brij systems, the experimental data also deviate from ideal behavior due to mixed micelle formation and electroviscous effect. This effect is less pronounced than that of SDS/CTAB system and could be suppressed by adding an electrolyte (NaCl).  相似文献   

18.
合成了几种具有刚性连接基团的双子表面活性剂,研究了它们在Rh-TPPTS体系中催化长链烯烃氢甲酰化反应中的助催化作用.结果表明,在水/有机两相催化体系中,新型双子表面活性剂的助催化作用比单链表面活性剂CTAB更好,在较低的表面活性剂浓度下能得到较高的反应转化率.这归因于此类表面活性剂有较低的cmc,降低界面张力的能力和对1-十二烯的增溶能力比CTAB更强.  相似文献   

19.
Surface tension, micelle formation, surface adsorption, and solubilization of dimethylaminoazobenzene (DMAB) are studied in aqueous solutions of 3-alkoxyl-2-hydroxypropyl trimethylammonium chloride (alkoxyl = CnH2n+1O, n = 8, 12, 14, 16), of sodium dodecyl sulfonate, and of mixtures of these cationic surfactants and the anionic surfactant at 40°C. Synergistic effects on micelle formation, surface tension reduction, and solubilization enhancement of DMAB are observed in the cationic–anionic mixed surfactant systems. The experimental results are discussed in the light of the interactions between the two kinds of surfactant ions.  相似文献   

20.
At low pH conditions and in the presence of anionic, cationic, and nonionic surfactants, hydrophobically modified alkali-soluble emulsions (HASE) exhibit pronounced interaction that results in the solubilization of the latex. The interaction between HASE latex and surfactant was studied using various techniques, such as light transmittance, isothermal titration calorimetry, laser light scattering, and electrophoresis. For anionic surfactant, noncooperative hydrophobic binding dominates the interaction at concentrations lower than the critical aggregation concentration (CAC) (C < CAC). However, cooperative hydrophobic binding controls the formation of mixed micelles at high surfactant concentrations (C > or = CAC), where the cloudy solution becomes clear. For cross-linked HASE latex, anionic surfactant binds only noncooperatively to the latex and causes it to swell. For cationic surfactant, electrostatic interaction occurs at very low surfactant concentrations, resulting in phase separation. With further increase in surfactant concentration, noncooperative hydrophobic and cooperative hydrophobic interactions dominate the binding at low and high surfactant concentrations, respectively. For anionic and cationic surfactant systems, the CAC is lower than the critical micelle concentration (CMC) of surfactants in water. In addition, counterion condensation plays an important role during the binding interaction between HASE latex and ionic surfactants. In the case of nonionic surfactants, free surfactant micelles are formed in solution due to their relatively low CMC values, and HASE latexes are directly solubilized into the micellar core of nonionic surfactants.  相似文献   

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