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1.
铜催化Ullmann型C—N偶联反应是高效专一构建C—N键最重要的方法之一.水作为绿色清洁溶剂被广泛用于各种有机反应.按照配体结构特点,对配体促进的水介质或纯水相中,铜催化C—N交叉偶联反应研究进展做了全面的归纳,配体类型包括二胺类、酰肼类、邻菲罗啉类、糖类、吡啶-N-氧化物类、喹啉类、肟类和salen等.另外,对于无配体条件下,水介质或纯水相中铜催化C—N偶联反应也进行了综述.  相似文献   

2.
王浩龙  万伯顺 《催化学报》2011,32(7):1129-1132
以邻溴苯甲醛为原料合成了一系列的羰基磷氧化物,用作铜催化的C-S偶联反应的新配体.在较温和的反应条件下可成功催化碘代芳烃或溴代芳烃与硫醇的偶联反应,收率最高达99%.  相似文献   

3.
开发了一种用于实现水相中的铜催化Ullmann型C—N偶联反应的绿色且高效的催化体系.以Cu I为催化剂、N-(2-羟乙基)-β-D-吡喃葡萄糖胺为配体,芳基碘化物、芳基溴化物与N-亲核试剂都能在水中实现偶联反应,芳基碘化物的吸电子取代和供电子取代效应影响较小.偶联产物的收率良好(61%~96%).该催化体系也成功扩展到各种吲哚与4-碘苯甲醚的水相偶联反应中.绿色且可降解的配体、温和的反应条件、绿色的水溶剂和广泛的底物适用性,使得该水相偶联策略具有重要的意义.  相似文献   

4.
以廉价的亚磷酸三乙酯为配体,首次用于Cu催化的碘代芳烃和末端炔烃的偶联反应,考察了不同Cu盐、金属纯度、碱和催化剂用量等条件对反应性能的影响.结果表明,当以高纯度的CuI (99.999%)为铜源,催化剂用量为5mol%时,在KOH作用下,该催化体系成功催化了一系列碘代芳烃和末端炔烃的反应,表现出良好的催化活性,此外,...  相似文献   

5.
彭宗海  付海燕  马梦林  陈华  李贤均 《催化学报》2010,31(12):1478-1482
 以 3-溴苯甲醚为原料合成了新型双膦配体 6,6′-二甲氧基-2,2′-二 (二-N-咔唑基膦)-1,1′联苯, 并将该配体与钯组成的配合物用于对溴苯甲醚和苯硼酸的 Suzuki 偶联反应, 考察了溶剂、碱、底物/催化剂摩尔比、膦/钯摩尔比对偶联反应的影响. 结果表明, 该催化体系在 1,4-二氧六环中催化对溴苯甲醚和苯硼酸的 Suzuki 偶联反应得到 99% 的分离产率. 同时, 该催化体系用于其它芳基溴和苯硼酸的 Suzuki 偶联反应也表现出很好的催化性能, 即使芳基溴有较大的空间位阻或具有取代基也能获得很好的结果.  相似文献   

6.
新法合成乙炔型维A酸   总被引:1,自引:0,他引:1  
合成了一种新型乙炔型维A酸类化合物, 拓展了该类碘代芳香羧酸与苯乙炔直接偶联的无铜 Sonogashira 反应. 以对溴苯甲酸为底物, 研究了无铜条件下PdCl2(PPh3)2的催化性能, 在10倍量的哌啶中, 对溴苯甲酸、苯乙炔和摩尔分数为4%的PdCl2(PPh3)2在85 ℃下反应20 min得到99%的偶联分离产率, 总收率72%. 本方法也适用于相关乙炔型RAs 分子的合成, 具有操作简单、产率高等优点.  相似文献   

7.
在最近的几十年里,金属钯催化的Suzuki-Miyaura偶联反应已经得到了越来越多的关注,被广泛应用于药物、天然产物以及新材料的合成.与此同时均相催化剂发展迅速,高效的配体和大量的设计被用于Suzuki-Miyaura偶联反应中,但是钯催化剂的配体通常很昂贵和难以合成,因此钯催化剂系统的回收是非常有价值的,不仅是经济上的原因,同时也避免了产品的污染,所以发展非均相催化剂是必要的.近年来,研究学者们致力于设计非均相的钯催化剂,如将钯纳米颗粒负载到金属有机骨架、介孔分子筛以及活性炭等多种材料上得到的非均相钯催化剂并应用于Suzuki-Miyaura偶联反应中.我们主要介绍了钯纳米颗粒被负载在含磷配体的交联的聚苯胺材料上制得负载的钯催化剂,首先通过钯催化的三(4-碘苯基)胺与金刚烷基膦的C–P偶联,再由钯催化三(4-碘苯基)胺与对苯二胺的C–N偶联,进而得到钯纳米颗粒负载在含金刚烷基膦的聚苯胺材料上的催化剂Pd@PAN-Ad-0.5(钯含量为0.58 wt%),同时我们对催化剂进行了一些表征,如TEM,SEM,XRD,EDX,XPS,FT-IR,ICP等.通过TEM分析,我们发现钯纳米颗粒在聚合物表面分布均匀,并且金属钯的平均粒径为2–3 nm;EDX检测显示催化剂含有C,N,P,Pd,I元素,说明钯负载到含金刚烷基膦的聚苯胺材料上的催化剂Pd@PAN-Ad-0.5已经形成,并被用于Suzuki-Miyaura偶联反应.我们对反应体系中的各种影响因素进行了优化,包括溶剂、碱、反应时间、催化剂加入量以及不同的催化剂的优化,最终确定了最佳反应条件;对于带有不同取代基(如腈基、甲氧基、醛基、酮基以及硝基)的氯代芳烃和溴代芳烃与苯硼酸的Suzuki-Miyaura反应,以较少的催化剂使用量(0.075 mol%Pd)就能获得较高的相应的联苯产物收率.此外,催化剂Pd@PAN-Ad-0.5在偶联反应中具有较高的反应活性的同时,还具有较好的回收使用能力(至少能够回收使用5次),循环使用4次以后还具有较高的催化活性.为了探索催化剂Pd@PAN-Ad-0.5在工业上的应用,由于4'-氯-2-硝基-1,1'-联苯是合成啶酰菌胺药物的重要中间体,因此我们使用催化剂Pd@PAN-Ad-0.5催化2-硝基氯苯与4-氯苯硼酸的偶联反应,目标产物4'-氯-2-硝基-1,1'-联苯的收率高达96%.我们相信这类催化剂应用于实验室或工业上合成联苯化学品具有较大的潜力.  相似文献   

8.
陈欢生  王全瑞  陶凤岗 《中国化学》2009,27(7):1382-1386
P-Phos [2,2′6,6′-四甲氧基吡啶-4,4′-二(二苯基膦)-3,3′-联吡啶]是一类对空气稳定的杂环磷配体。本文以较简单的方法合成了rac-P-Phos配体,并用IR、1H NMR、13C NMR和元素分析等方法进行了表征。首次将P-Phos配体用于催化卤代芳烃和胺的偶联反应中。通过对碱、溶剂和催化剂用量等的筛选,确立了最优化的反应条件。配体对溴代芳烃的催化效果很好,对具有吸电子存在的氯代芳烃,特别是氯代吡啶同样得到了令人满意的结果,分离产率高达97%。催化剂对水和空气的稳定性很好,对胺偶联反应的催化效果很理想,因此是一种有应用前景的催化剂。  相似文献   

9.
刘蒲  张鹏  王向宇 《分子催化》2006,20(4):339-345
水杨醛与壳聚糖反应制得壳聚糖席夫碱配体,此配体与钯盐反应得到壳聚糖席夫碱钯催化剂.研究了该催化剂对碘代苯(PhI)与苯乙烯偶联生成反式-二苯乙烯的催化性能.考察了不同反应因素(原料比、缚酸剂种类及其用量、反应温度、溶剂、催化剂用量、反应时间)对该反应的影响,由此确定了该催化反应的最佳反应条件.该催化剂经过滤分离、溶剂洗涤,循环使用6次仍有较高的催化活性,该催化剂对取代碘苯与苯乙烯的反应也有较高的催化活性.  相似文献   

10.
在最近的几十年里,金属钯催化的Suzuki-Miyaura偶联反应已经得到了越来越多的关注,被广泛应用于药物、天然产物以及新材料的合成.与此同时均相催化剂发展迅速,高效的配体和大量的设计被用于Suzuki-Miyaura偶联反应中,但是钯催化剂的配体通常很昂贵和难以合成,因此钯催化剂系统的回收是非常有价值的,不仅是经济上的原因,同时也避免了产品的污染,所以发展非均相催化剂是必要的.近年来,研究学者们致力于设计非均相的钯催化剂,如将钯纳米颗粒负载到金属有机骨架、介孔分子筛以及活性炭等多种材料上得到的非均相钯催化剂并应用于Suzuki-Miyaura偶联反应中.我们主要介绍了钯纳米颗粒被负载在含磷配体的交联的聚苯胺材料上制得负载的钯催化剂,首先通过钯催化的三(4-碘苯基)胺与金刚烷基膦的C–P偶联,再由钯催化三(4-碘苯基)胺与对苯二胺的C–N偶联,进而得到钯纳米颗粒负载在含金刚烷基膦的聚苯胺材料上的催化剂Pd@PAN-Ad-0.5(钯含量为0.58 wt%),同时我们对催化剂进行了一些表征,如TEM,SEM,XRD,EDX,XPS,FT-IR,ICP等.通过TEM分析,我们发现钯纳米颗粒在聚合物表面分布均匀,并且金属钯的平均粒径为2–3 nm;EDX检测显示催化剂含有C,N,P,Pd,I元素,说明钯负载到含金刚烷基膦的聚苯胺材料上的催化剂Pd@PAN-Ad-0.5已经形成,并被用于Suzuki-Miyaura偶联反应.我们对反应体系中的各种影响因素进行了优化,包括溶剂、碱、反应时间、催化剂加入量以及不同的催化剂的优化,最终确定了最佳反应条件;对于带有不同取代基(如腈基、甲氧基、醛基、酮基以及硝基)的氯代芳烃和溴代芳烃与苯硼酸的Suzuki-Miyaura反应,以较少的催化剂使用量(0.075 mol%Pd)就能获得较高的相应的联苯产物收率.此外,催化剂Pd@PAN-Ad-0.5在偶联反应中具有较高的反应活性的同时,还具有较好的回收使用能力(至少能够回收使用5次),循环使用4次以后还具有较高的催化活性.为了探索催化剂Pd@PAN-Ad-0.5在工业上的应用,由于4'-氯-2-硝基-1,1'-联苯是合成啶酰菌胺药物的重要中间体,因此我们使用催化剂Pd@PAN-Ad-0.5催化2-硝基氯苯与4-氯苯硼酸的偶联反应,目标产物4'-氯-2-硝基-1,1'-联苯的收率高达96%.我们相信这类催化剂应用于实验室或工业上合成联苯化学品具有较大的潜力.  相似文献   

11.
反应控制相转移催化兼具均相和非均相催化的优点,有助于解决催化剂催化活性低及分离回收困难等问题,符合环境友好的要求,所以一直以来备受关注。反应控制相转移现象的形成与催化剂的阴、阳离子结构和溶剂等反应条件密切相关。本文就目前应用广泛的反应控制相转移催化剂的阴、阳离子的结构特点进行综述,最后就反应控制相转移催化体系可能存在的问题和创新方向作了展望。  相似文献   

12.
Although quaternary onium salt-catalyzed phase-transfer reactions are generally believed to require base additives, we discovered even without any base additives conjugate additions of 3-substituted oxindoles proceeded smoothly in the presence of lipophilic quaternary onium bromide under water-organic biphasic conditions. The mechanism of this novel base-free neutral phase-transfer reaction system was investigated, and the assumed catalytic cycle was presented together with interesting effects of water and lipophilicity of the phase-transfer catalyst. The base-free neutral phase-transfer reaction system could be applied to highly enantioselective conjugate additions, aldol reaction, sulfenylation, and chlorination under the influence of chiral bifunctional onium bromides as key catalysts.  相似文献   

13.
The oxidative coupling reaction of 2,6-dimethylphenol may result in either a desired polymeric substance (i.e. the polyphenylene ether, PPE) or the undesired “dimeric” species diphenoquinone, DPQ. The relative amounts of each product depend on the experimental conditions and the used catalytic system. Usually copper amine compounds are used as a catalyst for the oxidative coupling reactions. They have the advantage of easy access and produce high yields of high molecular PPE; however, other metal coordination compounds, like those of Mn, may also be used as catalysts. The present paper focuses on mechanistic studies with various copper (aliphatic and aromatic) amine compounds as catalysts. Owing to the steric constraints of the amine ligands, dinuclear Cu(II) compounds, with small bridging anionic ligands, are easily formed. Such species are believed to be the catalyst precursors. Upon addition of a base (1:1 on copper) and excess phenol, phenolate ligands coordinate as bridging ligands to copper. After a two-electron transfer reaction, the resulting phenoxonium ligand, which is a rather poor ligand, remains attached to the Cu(I), probably coordinating via its aromatic ring. Nucleophilic attack by a phenol to the phenoxonium ion at the 4-position is likey to be most important to the coupling reaction. In the beginning of the reaction the undesired side product DPQ is also formed via a C–C coupling reaction. With copper(II) compounds containing imidazole-type chelating ligands, good activity was obtained; in the case of pyrazole-based and bridging S-donor chelating ligands, that no or very weak activity was found. In a study of the mechanism of the propagation reaction the rate-determining reaction was thought to be probably a one-step, two-electron transfer, during which the two Cu(II) ions in the dinuclear complex oxidize the phenolate to phenoxonium. After the phenoxium ion is formed the bonding with the (then) Cu(I) species is weakened and the reactions with phenolic end groups can take place. The effect of the amine ligands appears to be both steric and electronic. With certain ligands the reoxidationof the reduced catalyst is not possible.  相似文献   

14.
The stereoselective vinylogous Mannich reaction of dicyanoalkylidenes under phase-transfer catalytic conditions utilizing stable alpha-amido sulfones as imine precursors is presented; a rigid pyrrolidinium salt acts as the phase-transfer catalyst, giving access to the amino alkylated products in generally good yield and up to 95% ee.  相似文献   

15.
Metal‐catalyzed cross‐coupling reactions belong to the most important transformations in organic synthesis. Copper catalysis has received great attention owing to the low toxicity and low cost of copper. However, traditional Ullmann‐type couplings suffer from limited substrate scopes and harsh reaction conditions. The introduction of several bidentate ligands, such as amino acids, diamines, 1,3‐diketones, and oxalic diamides, over the past two decades has totally changed this situation as these ligands enable the copper‐catalyzed coupling of aryl halides and nucleophiles at both low reaction temperatures and catalyst loadings. The reaction scope has also been greatly expanded, rendering this copper‐based cross‐coupling attractive for both academia and industry. In this Review, we have summarized the latest progress in the development of useful reaction conditions for the coupling of (hetero)aryl halides with different nucleophiles. Additionally, recent advances in copper‐catalyzed coupling reactions with aryl boronates and the copper‐based trifluoromethylation of aromatic electrophiles will be discussed.  相似文献   

16.
Enantioselective direct aldol reaction of α-substituted nitroacetates with aqueous formaldehyde for the synthesis of α-alkyl serines has been achieved under base-free neutral phase-transfer conditions with a bifunctional chiral phase-transfer catalyst.  相似文献   

17.
By screening the copper catalysts, ligands, and the reaction conditions, a simple CuCl/DMEDA/TEMPO catalyst system readily available from commercial sources is developed for a direct and selective synthesis of the useful nitriles by an aerobic oxidation reaction of primary amines using air as an advantageous oxidant under mild conditions.  相似文献   

18.
A simple and practical protocol has been developed for the cross-coupling of azoles and aryl iodides under ligand-free copper(I) oxide catalyzed conditions in water. The protocol uses tetrabutylammonium bromide (TBAB) as the phase-transfer catalyst, and water as the solvent, and shows good tolerance towards various functional groups.  相似文献   

19.
A series of aliphatic and aromatic polytrithiocarbonates was prepared using a novel “one-pot” synthesis procedure employing a phase-transfer catalyst. The starting reagents were either an aliphatic or an aromatic dihalide and an excessive amount of carbon disulfide. The effects of the phase-transfer catalyst and reaction conditions on yield were studied. The structure and composition of the polymers and reaction side-products were determined from infrared, ultraviolet, 1H-NMR spectra, and elemental analyses. The polymers were further characterized by viscosity measurement and thermal analysis. © 1993 John Wiley & Sons, Inc.  相似文献   

20.
In this study, we report a copper-catalyzed ligand-free Cadiot–Chodkiewicz coupling reaction. No additives or ligands are required for this Cu-catalyzed C(sp)–C(sp) coupling reaction of terminal alkynes with alkynyl halides. The low cost of copper catalyst, excellent yield of the products, suppression of side-products and mild reaction conditions are the major advantages of this protocol.  相似文献   

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