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1.
Bronsted酸性离子液体催化酯化反应研究   总被引:4,自引:0,他引:4  
合成了以2-吡咯烷酮和N-甲基咪唑为阳离子([Hnhp] [Hmim] ),HSO4-,H2PO4-和BF4-为阴离子的一系列Br(o)Pnsted酸性离子液体.考察了这些离子液体的热稳定性和酸性.以乙酸和异戊醇酯化合成乙酸异戊酯的反应考察了不同离子液体分别在不分水与分水条件下的催化效果,结果表明.不分水时,当醇/酸/[Hnhp]HSO4物质的量比为1.2∶1∶0.2,100℃下回流反应2 h,酯收率可达93.6%,反应结束后[Hnhp]HSO4体系可以顺利分相,[Hnhp]BF4则不能;分水时,[Hnhp]BF4可与酯自动分相,当醇/酸/[Hnhp]BF4物质的量比为1.2∶1∶0.01,120℃下回流反应1.5 h时,酯收率可达96.8%,比相同条件下[Hnhp]HSO4的略高.这两种体系中的离子液体均具有良好的重复使用性能.实验中还探讨了不同离子液体的酸性和催化酯化反应后与酯产物的分相效果对其催化活性的影响,结果表明,离子液体的酸性和与酯的不可混溶性对其在不同体系中酯化反应的催化活性有不同程度的影响.此外,在上述不分水酯化条件(醇∶酸∶催化剂物质的量比均为1.2∶1∶0.2,100℃油浴)下回流浸渍6 h比较离子液体[Hnhp]HSO4/BF4,[Hmim]HSO4/BF4和硫酸对奥氏体316不锈钢的腐蚀性,测得离子液体腐蚀率比硫酸低;除了[Hnhp]BF4,离子液体[Hnhp]HSO4,[Hmim]HSO4和[Hmim]BF4的腐蚀性呈现随酸性递减而下降的趋势.所测离子液体中[Hnhp]BF4腐蚀性最高.[Hnhp]BF4和硫酸中试样的腐蚀率分别为20.1和41.8g/(m2·h).  相似文献   

2.
吡咯烷酮酸性离子液体的合成及其对酯化反应的催化活性   总被引:19,自引:0,他引:19  
合成并表征了 2-吡咯烷酮硫酸氢盐([Hnhp]HSO4)、 1-甲基-2-吡咯烷酮硫酸氢盐([Hnmp]HSO4)、 1-甲基咪唑硫酸氢盐([Hmim]HSO4)、 1-(3-磺酸基)-丙基-3-甲基咪唑硫酸氢盐([C3SO3Hmim]HSO4)和1-(3-磺酸基)-丙基-2-吡咯烷酮硫酸氢盐([C3SO3Hnhp]HSO4)等以HSO-4为阴离子的质子酸离子液体,并以乙酸和正丁醇的酯化反应考察了这些离子液体的催化活性.结果表明,当n(n-BuOH):n(MeCO2H):n([C3SO3Hnhp]HSO4)=1.2:1:0.005,反应温度为120 ℃和反应时间为 1 h 时,酯收率可达99%以上;反应结束后离子液体与酯产物可分成两相,而且该离子液体重复使用8次,催化活性没有明显下降.探讨了阳离子结构及Brnsted酸性对催化活性的影响,考察了离子液体与酯化反应相关组分的互溶性.结果表明,离子液体的分相性能对催化效果有较大的影响,离子液体的催化活性与其酸性、溶解性密切相关.  相似文献   

3.
酸性离子液体萃取/催化二苯并噻吩氧化脱硫反应的优化   总被引:4,自引:1,他引:4  
ö以Brönsted酸性离子液体N-甲基-2-吡咯烷酮磷酸二氢盐(\[Hnmp\]H2PO4)为萃取剂和催化剂,双氧水为氧化剂,二苯并噻吩(DBT)溶于正辛烷为模型油,利用正交实验法优化了DBT氧化脱硫反应工艺。所优化的反应条件为:反应温度60℃,模型油与离子液体体积比为1∶1,氧/硫摩尔比为16, 氧化时间5h;在此条件下模型油脱硫率达99.8%,实际柴油脱硫率为64.3%。由正交实验极差可知,各因素对DBT脱硫率影响的大小依次为:反应温度>反应时间>氧/硫摩尔比>剂油比;离子液体循环利用6次,脱硫率下降不明显。  相似文献   

4.
微波促进酸性离子液体催化水杨酸酯化   总被引:2,自引:0,他引:2  
用自制的硫酸氢1-甲基-3-(3-磺酸基丙基)咪唑([MIMPS]HSO4)酸性离子液体作为水杨酸与醇的酯化反应催化剂,考察了温度、时间、物料配比和离子液体用量等因素对酯化反应的影响,优化的最佳反应条件为: 微波辐射时间20 min,反应温度95 ℃,醇与酸摩尔比3∶1(水杨酸的量为0.02 mol),[MIMPS]HSO4用量10 mmol,水杨酸甲酯的产率和选择性分别为91.9%和99.0%。 离子液体回收循环使用4次,催化效率不变。 与热催化酯化反应相比,微波辐射可缩短反应时间;水杨酸与不同碳链醇的酯化产率随着碳链的增加而降低,同碳链的伯醇酯化率比仲醇高。  相似文献   

5.
Brönsted酸性离子液体催化醛(酮)与二元醇的缩合反应   总被引:1,自引:0,他引:1  
研究了以Brönsted酸性离子液体1-正丁基-3-甲基咪唑磷酸二氢盐(BMImH2PO4)为催化剂,在不使用其它有机溶剂且无需脱水的条件下,于室温下进行醛(酮)与二元醇的缩合反应,得到了由中至高的转化率和高选择性. 产物1,3-二口恶戊烷可以和反应物自动分层,后处理操作简单. 过量的醇与离子液体可以多次重复使用,且醛(酮)的转化率无明显降低.  相似文献   

6.
合成了一系列双子型酸性离子液体,该类型离子液体以乙二铵为连接链,由碳链长度可调的双子型阳离子与不同的阴离子组成。因此,具有相分离催化剂的性质,并应用于高级脂肪酸与醇的酯化反应,以合成生物柴油。详细考察了各参数的影响。结果表明,[C12Sb][p-CH3C6H4SO3]表现出高催化活性及可重复使用性能。  相似文献   

7.
乙酸和异戊醇在酸性离子液体[Hmim]HSO4的催化下反应生成乙酸异戊酯。在优化的反应条件下离子液体用量2.5mL,异戊醇与乙酸的物质的量比为1:2.25,回流时间40min,收率可达到79%;催化剂可重复利用,易纯化,对环境无污染。  相似文献   

8.
a王媛媛  b李伟  a戴立益 《中国化学》2008,26(8):1390-1394
首次报道了Brønsted酸性离子液体介质中的二甘醇的脱水环化反应,考察了不同的离子液体、离子液体/二甘醇摩尔比、反应温度和时间对反应的影响。结果表明,Brønsted酸性离子液体作为反应介质能够促进脱水环化反应的有效进行,且在离子液体1-(3-磺酸根丙基)-3-甲基咪唑硫酸氢盐([SPmim]HSO4)中,二甘醇的转化率和1,4-二氧六环的选择性更高。采用Hammett指示剂法测定了离子液体的酸度函数H0,其酸性强弱顺序为[SPmim]HSO4 > [Bmim]HSO4 > [Amim]HSO4 > [Hmim]BF4> [Bmim]H2PO4 >[Amim]H2PO4 > [Hmim]Tsa,这与离子液体在脱水环化反应中的催化效果一致。当温度为170 ˚C,离子液体/二甘醇摩尔比为1:1时,二甘醇在[SPmim]HSO4中反应2 h,转化率可达到97.0%,1,4-二氧六环的选择性为89.3%。  相似文献   

9.
张海波  丁琼  谢音 《大学化学》2015,30(4):36-41
综合了物理化学和有机化学等实验的原理和基本操作,以Br?nsted酸性离子液体作催化剂制备乙酸丁酯,探讨了实验的化学动力学原理、动力学方程式及有关计算。结果显示,假设的动力学方程与实验结果相符。  相似文献   

10.
BrФnsted acid ionic liquids were successfully applied to the electrochemical synthesis of polyaniline films on platinum electrode surfaces by using cyclic voltammetry. The scanning electron micrographs showed distinct changes in morphological structures. The films exhibited quite dense packing and good ordering of polymer dendrite as compared with those prepared using conventional hydrochloric acid, indicating that Bronsting acid ionic liquids might be promising alternatives to dual medium-dopants in the synthesis of conducting polymers.  相似文献   

11.
Haiming Wang 《Tetrahedron》2006,62(17):3985-3988
A temperature-controlled highly selective dimerization of α-methylstyrene to produce 2,4-diphenyl-4-methyl-1-pentene and 1,1,3-trimethyl-3-phenylindan was catalyzed by Brönsted acidic ionic liquid [Hmim]+BF4. At 60 °C, 2,4-diphenyl-4-methyl-1-pentene was formed in 93% selectivity with >92% conversion under a solvent-free condition while 1,1,3-trimethyl-3-phenylindan could be obtained in 100% selectivity when the reaction temperature was increased to 170 °C. The ionic liquid [Hmim]+BF4 could be reused with almost no loss of activity.  相似文献   

12.
An alternative synthetic pathway to prepare norfloxacin analogues is presented. Three Lewis acids (CeCl3·7H2O, AlCl3·6H2O, ZnCl2) and one Brönsted acid (TsOH) were tested as catalysts in the preparation of 3,4-difluoroacrylate. Cyclization of this acrylate at 55 °C was achieved with the use of Eaton's reagent (P2O5/MeSO3H) a known Brönsted acid. The fluoroquinolone-boron complex presented high yields on C-7 nucleophilic substitution of the fluorine atom by different heterocyclic amines with low, medium and strong nucleophilic character.  相似文献   

13.
Fundamental aspects of Brønsted acidity in ionic liquid systems, in relation to those of simple protic molecules in the gas phase, pure protic molecules in the condensed phase and solutions of protic molecules in molecular systems, are presented. The variety of acidities possible, beyond those observed in aqueous systems, is emphasised and discussed in terms of differences of solvent levelling, ionisation, dissociation, homo‐/hetero‐conjugate ion speciation and the stabilisation of proton‐transfer products from solvent to solvent. It is argued that data regarding aqueous systems do not necessarily explain acid/base behaviour in other liquids satisfactorily. Methods of measuring acidity are reviewed, particularly by spectrophotometry and electrochemistry and recommendations proffered for estimating speciation and acidity of ionic liquids of various complexities.  相似文献   

14.
[AAE]X composed of amino acid ester cations is a sort of typically “bio-based” protic ionic liquids (PILs). They possess potential Brønsted acidity due to the active hydrogens on their cations. The Brønsted acidity of [AAE]X PILs in green solvents (water and ethanol) at room temperature was systematically studied. Various frameworks of amino acid ester cations and four anions were investigated in this work from the viewpoint of structure–property relationship. Four different ways were used to study the acidity. Acid dissociation constants (pKa) of [AAE]X determined by the OIM (overlapping indicator method) were from 7.10 to 7.73 in water and from 8.54 to 9.05 in ethanol. The pKa values determined by the PTM (potential titration method) were from 7.12 to 7.82 in water. Their Hammett acidity function (H0) values (0.05 mol·L−1) were about 4.6 in water. In addition, the pKa values obtained by the DFT (proton-transfer reactions) were from 7.11 to 7.83 in water and from 8.54 to 9.34 in ethanol, respectively. The data revealed that the cationic structures of [AAE]X had little effect and the anions had no effect on the acidity of [AAE]X. At the same time, the OIM, PTM, Hammett method and DFT method were reliable for determining the acidic strength of [AAE]X in this study.  相似文献   

15.
沈江汉  王华  孙颖  刘红超  刘中民 《催化学报》2007,28(11):1009-1012
考察了Br(o)nsted酸性离子液体同时作为溶剂和催化剂催化异丁醛和叔丁醇缩合制备 2,5-二甲基-2,4-己二烯的反应性能.结果表明,Br(o)nsted酸性离子液体具有良好的催化性能,反应后反应产物与离子液体自动分层易分离,离子液体经过真空干燥处理后可以作为溶剂和催化剂循环使用.调变离子液体中的阳离子或阴离子的结构对催化性能有较大的影响.  相似文献   

16.
1,1''-Butylenebispyridinium hydrogen sulfate is an efficient, halogen-free and reusable Brönsted ionic liquid catalyst for the synthesis of ethyl-4-aryl/heteryl-hexahydro-trimehtyl-5- oxoquinoline-3-carboxylates by the one-pot condensation of dimedone, aryl/heteryl aldehydes, ethyl acetoacetate, and ammonium acetate under solvent-free conditions. This method has the advantages of high yield, clean reaction, simple methodology, and short reaction time. The ionic liquid can be recycled five times without significant loss of the catalytic activity.  相似文献   

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