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1.
微波促进离子液体相反应在有机合成中的应用   总被引:1,自引:0,他引:1  
微波促进离子液体相有机合成技术作为一种新型的绿色化学合成法,引起了人们极大的兴趣。在离子液体中,微波辅助下反应快速、收率高、选择性好、后处理简单,离子液体经简单再生后可多次套用。本文综述了以离子液体为反应介质或催化剂的微波辅助技术在多种类型有机反应中的研究成果,主要包括了环合反应、亲核取代反应、金属复分解反应、酰化反应、重排反应、聚合反应、偶联反应、氧化还原反应和选择性脱溴反应等。  相似文献   

2.
以离子液体作为微波吸收介质建立了离子液体-非极性溶剂微波提取法,对人参中的化学成分进行了提取,并将该法与固体微波吸收介质-非极性溶剂微波提取法、极性溶剂微波提取法以及混合溶剂微波提取法进行了对比.结果表明,极性溶剂提取的主要化学成分为极性化合物,而固体微波吸收介质-非极性溶剂微波提取法与离子液体-非极性溶剂微波提取法相比,提取所得的化学成分并无明显差别,说明离子液体是一种较好的微波吸收介质和能量传递材料.所建立的方法具有提取时间短、操作简单及绿色环保等优点,且对后期分析无明显影响,是快速提取化学成分的理想方法.  相似文献   

3.
在离子液体和氟化钾反应体系中,研究了卤代哒嗪化合物的氟代反应,讨论了微波辐射条件下由卤代哒嗪化合物合成氟代哒嗪化合物的方法。用离子液体作为反应介质替代了传统的分子溶剂,提高了产物收率,简化了操作。用微波反应不仅获得了较好的收率,也缩短了反应时间。利用离子液体和微波辐射条件进行氟代反应是一种绿色化学方法。  相似文献   

4.
离子液体作为绿色溶剂和催化剂,具有低挥发性,优良的热稳定性、溶解性以及可回收等优点,近年来广泛应用于有机合成领域中,在提高反应速率,反应选择性等方面发挥了巨大作用.综述了离子液体作为催化剂或溶剂在传统有机合成反应中的最新研究成果,包括Baylis-Hillman反应、Michael加成反应、氧化还原反应、Knoevenagel缩合反应、Aldol缩合反应、Diels-Alder反应、Heck偶联反应、Suzuki反应、不对称反应、Biginelli反应、Mannich反应、Hantzsch多组分反应.分析离子液体结构对反应催化性能的影响,探讨其反应机理,为开发新型结构可调性功能离子液体打下基础.  相似文献   

5.
微波辅助水相有机合成研究进展   总被引:1,自引:1,他引:0  
微波辅助水相有机合成结合了水为溶剂和微波加热的特点,具有反应速率快、产率高、绿色环保等优点.本文介绍了近几年来微波辅助水相(过热水,T≥100 ℃)有机合成的研究进展,主要包括过碳-碳键形成反应、碳-杂键形成反应、环加成反应、Mannich反应、脱保护反应等.并展望了该领域今后的发展方向.  相似文献   

6.
《高等学校化学学报》2014,(3):470+492+581+588
正现代有机合成新技术(第2版)本书共分七章,较为全面而简明扼要地介绍现代有机合成的新技术与合成策略,包括相转移催化反应、非传统溶剂中的有机合成、无溶剂有机合成、超声波促进的有机合成、微波促进的有机合成、多组分反应、碳-氢键活化反应。并通过大量的反应实例反映学科前沿的一些新理论和最新的科研成果。书号:978-7-122-19187-8定价:49.0元出版时间:2014年3月开本:16  相似文献   

7.
丁阳  刘梦格  卜健行  肖雄坤  王炜  盛文兵 《化学通报》2022,85(9):1070-1076,1061
低共熔溶剂(DESs)是一种新型的离子液体(ILs)类似物,与传统有机溶剂、离子液体相比,DESs具有低毒、廉价、易于合成、生物可降解性等特点,因此在众多领域广受关注。近年来DESs在有机合成领域备受关注,被广泛用作合成反应的溶剂、催化剂、反应物等,在有机反应方面存在很大发展空间,本文综述了DESs在有机合成反应中的应用,重点讨论其在氧化还原反应、取代反应、缩合反应、环化反应等方面的研究进展,为其开发应用提供新思路。  相似文献   

8.
离子液体作溶剂、催化剂进行有机合成反应是近几年来各国化学家关注的热点之一[1].究其原因主要是离子液体具有低熔点、不挥发、不易燃易爆等特点,使其能代替传统有机合成与工业催化工程中的易挥发性溶剂(VOCs).再就是离子液体作为一种离子溶剂,可能存在1018种二元离子液体,而现在实际应用中的分子溶剂大概600种,离子液体的多样性使得在实际应用中可以通过调节离子液体的结构来调节离子液体的性质,从而为反应提供合适的溶剂环境,从而提高反应的产率、选择性以及立体选择性等[2].手性离子液体的合成和离子液体中的不对称催化一直都是离子液体研究的一个重要方面.Wasserscheid等[3,4]最近报道了从"手性池"(Chiral pool)衍生的新手性离子液体的合成和特性.最近我们报道一类简单的胍盐室温离子液体的合成及性质[5,6],新型胍盐离子液体由于其独特的性质得到了大家的关注[7-8].而手性胍盐离子液体还未见文献报道,因此我们从简单易得的手性胺出发合成了一系列的手性胍盐离子液体(Scheme 1),以新的手性胍盐离子液体作为不对称性催化反应新体系的工作正在进行.  相似文献   

9.
聚乙二醇功能化离子液体作为一个新的研究方向受到了化学研究者关注,该类离子液体已经成功地应用于许多有机合成反应中,可以明显改善催化剂性能,并可在一定程度上解决传统催化剂使用中遇到的难分离、难回收再利用的问题。本文介绍了聚乙二醇功能化离子液体的发展历程、制备方法和其作为反应介质、溶剂或催化剂在有机合成反应中应用的最新研究成果,主要包括加成反应、缩合反应、还原反应、酯化反应、硝化反应、氧化反应、水解反应、Heck 反应以及Suzuki-Miyaura反应等。  相似文献   

10.
胡燚  李恒  黄和  韦萍 《有机化学》2007,27(10):1188-1194
阐述了功能性离子液体支载液相有机合成的概念、特点及其在小分子杂环化合物、多肽、寡糖合成等有机反应中的应用, 以及功能性离子液体支载的催化剂和试剂在液相有机合成中的应用. 研究表明功能性离子液体作为一种新型的高负载量的可溶性载体可以广泛应用于液相有机合成中, 有效地促进了反应的进行, 简化了分离手段, 显著地提高了反应的选择性和收率.  相似文献   

11.
综述了离子液体催化CO2与环氧化物的环加成反应制备环状碳酸酯的研究进展。目前报道的离子液体主要包括咪唑盐、季铵盐、季鏻盐等。对比了传统离子液体与功能化离子液体对CO2环加成反应的催化活性、选择性以及催化作用机制。与传统的离子液体相比,功能化离子液体的羟基或羧基等官能团与卤素离子等Lewis碱之间存在协同效应,使得其对CO2与环氧化物的环加成反应具有更好的催化活性;将功能化离子液体固载于无机材料(SiO2,SBA-15,MCM-41等)或聚合物所得的多相催化剂不仅保持了官能团与阴离子之间的协同效应,而且载体与离子液体活性组分之间也显示出协同效应,使得该类催化剂具有很好的催化活性,稳定性好,可以多次重复使用,具有较好的工业化前景,是值得深入研发的一类催化材料。此外,离子液体对于手性环状碳酸酯的合成也具有较好的催化活性和立体选择性。  相似文献   

12.
Ionic liquids(ILs), especially basic ILs with unique physicochemical properties, have wide application in catalysis. Using basic ILs as catalysts for the conversion of cheap, abundant, nontoxic, and renewable CO_2 into value-added organic carbonates is highly significant in view of environmental and economic issues. This review aims at giving a detailed overview on the recent advances on basic ILs promoted chemical transformation of CO_2 to cyclic and linear carbonates. The structures of various basic ILs, as well as the basic ILs promoted reactions for the transformation of CO_2 to organic carbonates are discussed in detail,including the reaction conditions, the yields of target products, the catalytic activities of basic ILs and the reaction mechanism.  相似文献   

13.
不同离子液体反应介质在生物催化中的应用研究进展   总被引:1,自引:0,他引:1  
离子液体(ILs)因其独特物理化学性质成为新型反应溶剂和催化剂,在生物催化反应中有着广阔的应用前景。根据不同ILs的水溶性,其与水可形成4种反应介质,即微水ILs单相体系、亲水性ILs-水单相体系、疏水性ILs-水两相体系和ILs微乳液体系。本文分别介绍了不同ILs反应体系中生物催化剂的催化活性、稳定性和选择性,综述了这些体系中的生物催化反应研究进展。  相似文献   

14.
Ionic liquids (ILs), which are used as solvents for chemical reactions, are different from conventional organic solvents owing to their designability. Physicochemical parameters of the ILs, such as polarity and viscosity, that affect chemical equilibria and reaction kinetics can be tuned by changing the combination of anions and cations or by varying the lengths of the alkyl chains present in the cations. We were interested in knowing how these physicochemical parameters affect fundamental chemical reactions in ILs. Therefore, in this personal account, we investigate our recent work on two different photochemical reactions in ILs, namely excited-state intramolecular proton transfer of hydroxyflavone and photodissociation of aminodisulfide, using time-resolved spectroscopic techniques. Interestingly, the roles of the ILs in these chemical reactions are quite different. The effect of the cationic species of the ILs (i. e., the head groups and number of alkyl carbons) on the solvation environment upon photoexcitation and reaction rate are discussed.  相似文献   

15.
《先进技术聚合物》2018,29(6):1727-1732
Using ionic liquids (ILs) as the reaction solvent for the synthesis of prepolymer polyamide of poly(p‐phenylene benzoxazole) (PBO) was investigated. The optimum condition of prepolymer preparation was determined in ILs. A series of 1,3‐dialkylimidazolium ILs were used to be the reaction media of the polycondensation. The relationship between the molecular weight of prepolymer and the structure of ILs was analysed by changing the structure of the cation and species of anion of ILs. In order to prove the feasibility of the transformation, the prepolymer was used to prepare PBO in polyphosphoric acid media, and the conversion process was analyzed. The spinnability of the PBO solution was explored by the preparation of PBO fibers. The basic mechanical properties of PBO single fiber were tested. In a word, using 1,3‐dialkylimidazolium ILs as the reaction solvents was feasible for the synthesis of high‐molecular‐weight PBO prepolymer, which could be a promising PBO preparation method.  相似文献   

16.
Ionic liquids (ILs), especially basic ILs with unique physicochemical properties, have wide application in catalysis. Using basic ILs as catalysts for the conversion of cheap, abundant, nontoxic, and renewable CO2 into value-added organic carbonates is highly significant in view of environmental and economic issues. This review aims at giving a detailed overview on the recent advances on basic ILs promoted chemical transformation of CO2 to cyclic and linear carbonates. The structures of various basic ILs, as well as the basic ILs promoted reactions for the transformation of CO2 to organic carbonates are discussed in detail, including the reaction conditions, the yields of target products, the catalytic activities of basic ILs and the reaction mechanism.  相似文献   

17.
The Friedel–Crafts alkylations of benzene in pyridinium-based ionic liquids (ILs) were investigated. The effects of catalyst–IL composition, reactant composition, quantity of catalyst and reaction temperature on this reaction were studied. The reactions were found to proceed under mild conditions with conversion; a simple product isolation procedure was achieved. The ILs rendered this reaction green characteristics. The ILs could also be recycled and reused as opposed to traditional solvent–catalyst systems.  相似文献   

18.
This work presents an approach toward the shape-controlled synthesis of Ag crystals with hierarchical structures by exploitation of ionic liquids (ILs) as a shape-regulating agent. The synthesis of Ag crystals involves the reduction of AgNO(3) by EG in the presence of ILs, specifically 1-butyl-3-methylimidazolium methylsulfate (bmim-MeSO(4)). In accordance with non-classical crystallization growth mechanism, the primary Ag nanoparticles were formed at the early stage of the reaction, and then self-organized into 1D or 3D Ag superstructures via an IL-mediated self-assembly process. Their final morphologies were strongly dependent on the reaction conditions such as the concentration of ILs in the reaction mixture and the reaction temperature, which suggests that ILs play an important role in controlling the shape of the Ag crystals.  相似文献   

19.

Abstract  

Several achiral and chiral basic ionic liquids (ILs) were prepared and tested as the medium for Ru-catalyzed hydrogen-transfer reduction of different aromatic ketones. Hydrogen-transfer reduction of ketones proceeded well in achiral basic ILs using chiral catalysts. The interesting observation was made that raising the reaction temperature did not have a negative effect on enantioselectivity of the reaction. On the other hand no reaction was observed in chiral ILs.  相似文献   

20.
This paper describes the author's recent work on the preparation and properties of thermally stable ionic liquids (ILs) containing siloxane frameworks. Quaternary ammonium and imidazolium salt-type ILs containing random oligosilsesquioxane frameworks were successfully prepared via the hydrolytic condensation of the corresponding organotrialkoxysilanes by using an aqueous superacid bis(trifluoromethanesulfonyl)imide (HNTf2) solution as a catalyst and solvent. Imidazolium salt-type ILs containing polyhedral oligomeric silsesquioxane (POSS) frameworks were also prepared through a reaction similar to that described above by using a water/methanol mixed solution of HNTf2. In addition, amorphous POSSs with two types of ionic groups randomly distributed in the side chain were prepared. These POSSs were ILs exhibiting fluidity at relatively low temperatures. Furthermore, imidazolium and ammonium salt-type ILs containing cyclic oligosiloxane frameworks were prepared through a reaction similar to that of the corresponding organodialkoxysilanes. The thermal decomposition temperatures of the above ILs containing siloxane frameworks were higher than those of general ILs.  相似文献   

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