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1.
评述了近年来以环己烯为底物,双氧水为氧源,分别采用钨酸盐、钨酸、杂多酸及杂多酸盐、功能化分子筛和负载离子液体等为催化剂催化合成己二酸的研究进展.  相似文献   

2.
采用酸化-乙醚萃取法制备了不同钒取代数目的 Keggin结构的磷钨钒杂多酸,并进一步通过离子交换法合成了磺酸功能化的杂多酸离子液体催化剂,采用核磁、元素分析、红外、紫外、X射线衍射、热重-差示扫描、电位滴定等分析手段对所得样品进行了表征,考察了所得样品对氯乙酸和正戊醇的酯化反应性能和重复使用性能。结果表明,所制备的杂多酸离子液体是一种具有温度响应特性的无定型结构化合物,仍保留Keggin结构和较高的酸强度,该催化剂在反应温度下与反应物形成一相,而反应结束温度降低后,催化剂和产物又形成两相,通过简单的倾倒法就可以快速分离催化剂和反应产物。与杂多酸以及未磺酸化的杂多酸离子液体相比,磺酸功能化的杂多酸离子液体具有更高的酯催化活性。在优化的反应条件下,[PyPS]4PW11VO40(PyPS为1-(3-磺酸基)丙基吡啶)对氯乙酸的转化率可达到97.6%,重复使用4次后转化率为91.9%,而催化剂的结构未有明显变化。  相似文献   

3.
离子液体功能化二氧化硅催化Knoevenagel反应   总被引:5,自引:0,他引:5  
在100 ℃, 无外加溶剂条件下, 离子液体功能化二氧化硅催化一系列芳醛和活泼亚甲基化合物进行Knoevenagel 缩合反应, 以高产率生成相应产物. 当反应底物为水杨醛与氰基乙酸乙酯的时候, 产物为3-乙氧基羰基香豆素, 这是水杨醛和氰基乙酸乙酯缩合关环, 再发生氰基醇解的产物. 采用离子液体功能化二氧化硅作为反应催化剂, 反应后催化剂可回收再利用.  相似文献   

4.
离子液体具备熔点低、不可燃性、热稳定性好、溶解性好、可设计性及可重复利用性等一系列优点,因此常以催化剂、溶剂的形式应用于有机合成领域中.从离子液体阳离子电荷中心所在位置的不同出发,分别介绍了近年来非环类、环类及负载型功能化离子液体在Knoevenagel缩合反应中的应用进展,并对功能化离子液体的结构特点、催化活性及某些催化剂可能的催化机理等方面展开了论述.  相似文献   

5.
设计新型液液两相催化体系:π配体离子液体   总被引:6,自引:0,他引:6  
陶国宏  陈知宇  何玲  寇元 《催化学报》2005,26(3):253-260
 π配体催化剂与离子液体体系相结合有助于解决反应效率、产物分离和催化剂循环等一系列均相催化体系不易解决的难题. 近几年相关的研究逐渐深入,由简单地使用离子液体作为π配体催化反应的介质向利用离子液体自身结构的方向发展,相继出现了几类不同的研究思路. 例如,利用π配体催化剂与离子液体形成络合物,使用离子型π配体改善催化剂在离子液体中的溶解性,以及合成功能化阳离子或功能化阴离子的π配体离子液体. 本文结合这几类离子液体化学键联π配体(简称π配体离子液体)的研究进展,从离子液体功能化设计的角度探讨了π配体离子液体的合成思路,为设计具有更好催化性能的功能化离子液体体系提供借鉴.  相似文献   

6.
氧化石墨烯由于其独特的结构和性能赋予了它作为催化剂的先天优势,功能化的氧化石墨烯为其应用领域的拓展和效果提升提供了更多的发展契机,成为目前的研究趋势,离子液体功能化的氧化石墨烯结合二者自身优势的基础上,并由于协同作用具有更加优异的催化性能,广泛应用于众多反应中.我们针对离子液体共价键功能化的氧化石墨烯负载催化剂常见的催化反应,包括环加成反应,氧化反应,偶联反应,酯交换反应,乌尔曼反应,重排反应,光催化和电催化在近年来的研究进展进行了相关综述.  相似文献   

7.
离子液体是一类新型的催化CO_2环加成反应的催化剂,因其具有结构可设计性、催化活性高、绿色高效等优点而被广泛应用于催化合成环状碳酸酯.本文主要综述了近几年来各种常规型离子液体及功能化离子液体对CO_2和环氧化合物反应的催化性能的研究进展,其中常规型离子液体主要有咪唑类、季铵盐、季鏻盐、吡啶类等离子液体,而功能化离子液体包括氨基功能化、羟基功能化、羧基功能化、氨基酸类等离子液体.同时对各类离子液体催化CO_2与环氧化合物合成环状碳酸酯的研究中存在的问题进行了分析,并对其应用前景进行了展望.  相似文献   

8.
离子液体由于具有良好的溶解能力、配位能力、热及化学稳定性、结构及性质可调、环境友好等特点,被认为是传统非环保型、有毒、污染严重的溶剂和催化剂潜在的替代品,已被广泛应用于有机合成及催化领域。本文综述了近年来离子液体在羰基化反应中的应用及催化反应机理研究进展,包括烯烃、醇类化合物、芳烃、胺/胺醇、卤代芳烃及甲醛的羰基化反应,羰基源主要包括CO、CO2和碳酸二甲酯,涉及到了酸性离子液体、碱性离子液体、金属类离子液体、负载型离子液体等多种类型的功能化及非功能化离子液体。在上述反应中离子液体不仅可以提高反应活性和选择性,而且简化了催化剂分离过程,在部分反应中实现了回收和循环使用。并对羰基化反应的发展及应用前景进行了展望。  相似文献   

9.
功能化离子液体在缩醛(酮)反应中催化性能的研究   总被引:3,自引:2,他引:1  
研究了磺酸功能化离子液体在缩醛(酮)反应中的催化性能.系统考察了离子液体催化剂、反应时间、反应温度、底物用量比和催化剂用量等因素的影响以及底物的适用性.研究结果表明:磺酸功能化离子液体[C4H8SO3Hm im]p-TSA是缩醛(酮)反应有效的催化剂,其催化活性主要由阳离子决定;该催化体系具有很好的重复使用性,经十次循环后催化活性未见明显降低.  相似文献   

10.
周成亮  刘晔 《催化学报》2010,31(6):656-660
 无共氧化剂参与条件下, 以氧气为氧化剂, 在含膦或含氮配体功能化离子液体和普通离子液体 (溶剂) 组成的混合体系中, RuCl3•3H2O 能有效催化多种醇的选择氧化, 高选择性地生成相应的醛或酮. 其中, 配位能力较弱的含氮配体功能化离子液体更有利于提高钌催化剂的活性和选择性, 但体系无法有效实现钌催化剂的循环使用. 配体功能化离子液体本身的氧化降解是导致钌催化剂失活的根本原因.  相似文献   

11.
In this study, quinazolinone derivatives have been synthesized via a suitable and efficient procedure by one-potmulti-component reactions of 3-amino-1,2,4-triazole or 2-aminobenzimidazole, dimedone and aromatic aldehydes in the presence of Fe3O4@TiO2-IL as nanocatalyst under solvent-free condition. The products were prepared in good to excellent yields using Fe3O4@TiO2-IL magnetic nanocatalyst. The Fe3O4@TiO2 magnetic nanoparticles (MNPs) were prepared using beet juice extract and functionalized with IL based on DABCO. Moreover, the core-shell structured magnetic Fe3O4@TiO2-IL has been characterized by different techniques such as 1H-NMR, FT-IR, VSM, XRD, SEM, TGA, TEM and EDX. To the best of our knowledge, the prepared ionic liquid displayed a good protective and activator agent for magnetic nanocatalyst.  相似文献   

12.
利用电沉积法将不溶于常规无机和有机溶剂的多金属氧酸盐基的配位聚合物1, [{La(H2O)5·(dipic)}{La(H2O)(dipic)}]2{Mo8O26}·10H2O溶解于离子液体[RMIM][HT]或[RMIM][HP]中, 在恒电位下电解, 得到多金属氧酸盐基的配位聚合物膜. 应用红外光谱、X射线光电子能谱和XRD粉末衍射等方法研究多金属氧酸盐基配位聚合物膜的结构, 发现其与多金属氧酸盐基配位聚合物有相同的结构. 实现了多金属氧酸盐基配位聚合物在电极上的重构设计以及多金属氧酸盐基的配位聚合物的二次加工成型.  相似文献   

13.
As a part of developing extraction chromatography technology for minor actinides (MA(III); Am and Cm) recovery from spent fast reactor fuels, improvement on the TODGA/SiO2-P adsorbent to enhance its desorption efficiency was carried out. Batchwise adsorption/elution experiments showed that optimizations in amount of the extractant impregnated in the support of the SiO2-P which is the porous silica coated with polymer and degree of the cross linkage of polymer succeeded in finding the optimum values. Inactive column separation experiments with the simulated high level liquid waste and the optimized adsorbent revealed that decontamination factors of fission products can also be improved as well as the recovery yields.  相似文献   

14.
Nb-containing polyoxometalates (POMs) of the Wells-Dawson class inhibit HIV-1 protease (HIV-1P) by a new mode based on kinetics, binding, and molecular modeling studies. Reaction of alpha(1)-K(9)Li[P(2)W(17)O(61)] or alpha(2)-K(10)[P(2)W(17)O(61)] with aqueous H(2)O(2) solutions of K(7)H[Nb(6)O(19)] followed by treatment with HCl and KCl and then crystallization affords the complexes alpha(1)-K(7)[P(2)W(17)(NbO(2))O(61)] (alpha(1)()1) and alpha(2)-K(7)[P(2)W(17)(NbO(2))O(61)] (alpha(2)()1) in 63 and 86% isolated yields, respectively. Thermolysis of the crude peroxoniobium compounds (72-96 h in refluxing H(2)O) prior to treatment with KCl converts the peroxoniobium compounds to the corresponding polyoxometalates (POMs), alpha(1)-K(7)[P(2)W(17)NbO(62)] (alpha(1)()2) and alpha(2)-K(7)[P(2)W(17)NbO(62)] (alpha(2)()2), in moderate yields (66 and 52%, respectively). The identity and high purity of all four compounds were confirmed by (31)P NMR and (183)W NMR. The acid-induced dimerization of the oxo complexes differentiates sterically between the cap (alpha(2)) site and the belt (alpha(1)) site in the Wells-Dawson structure (alpha(2)()2 dimerizes in high yield; alpha(1)()2 does not). All four POMs exhibit high activity in cell culture against HIV-1 (EC(50) values of 0.17-0.83 microM), are minimally toxic (IC(50) values of 50 to >100 microM), and selectively inhibit purified HIV-1 protease (HIV-1P) (IC(50) values for alpha(1)()1, alpha(2)()1, alpha(1)()2, and alpha(2)()2 of 2.0, 1.2, 1.5, and 1.8 microM, respectively). Thus, theoretical, binding, and kinetics studies of the POM/HIV-1P interaction(s) were conducted. Parameters for [P(2)W(17)NbO(62)](7)(-) were determined for the Kollman all-atom (KAA) force field in Sybyl 6.2. Charges for the POM were obtained from natural population analysis (NPA) at the HF/LANL2DZ level of theory. AutoDock 2.2 was used to explore possible binding locations for the POM with HIV-1P. These computational studies strongly suggest that the POMs function not by binding to the active site of HIV-1P, the mode of inhibition of all other HIV-1P protease inhibitors, but by binding to a cationic pocket on the "hinge" region of the flaps covering the active site (2 POMs and cationic pockets per active homodimer of HIV-1P). The kinetics and binding studies, conducted after the molecular modeling, are both in remarkable agreement with the modeling results: 2 POMs bind per HIV-1P homodimer with high affinities (K(i) = 1.1 +/- 0.5 and 4.1 +/- 1.8 nM in 0.1 and 1.0 M NaCl, respectively) and inhibition is noncompetitive (k(cat) but not K(m) is affected by the POM concentration).  相似文献   

15.
The role of the central atom X in the structure and reactivity of di-Ru-substituted gamma-Keggin polyoxometalates (POMs), gamma-[(Xn+O4)RuIII2(OH)2(MFM)10O32](8-n)-), where MFM = Mo and W, and X = AlIII, SiIV, PV, and SVI., was computationally investigated. It was shown that for both MFM = Mo and W the nature of X is crucial in determining the lower lying electronic states of the polyoxoanions, which in turn likely significantly impacts their reactivity. For the electropositive X = AlIII, the ground state is a low-spin state, while for the more electronegative X = SVI the ground state is a high-spin state. In other words, the heteroatom X can be an "internal switch" for defining the ground electronic states of the gamma-M2-Keggin POMs. The obtained trends, in general, are less pronounced for MFM = Mo than for W. On the basis of the comparison of the calculated energy gaps between low-spin and high-spin states of polytungstates and polymolybdates, we predict that the gamma-M2-Keggin polytungstates could be more reactive than their polymolybdate analogues. For purposes of experimental verification the computationally predicted and evaluated polytungstate gamma-[(SiO4)RuIII2(OH)2(OH2)2W10O32]4- was prepared and characterized.  相似文献   

16.
Efficient polyoxometalate (POM)-based Lewis acid-base catalysts of the rare-earth-metal-containing POMs (TBA(6)RE-POM, RE = Y(3+), Nd(3+), Eu(3+), Gd(3+), Tb(3+), or Dy(3+)) were designed and synthesized by reactions of TBA(4)H(4)[γ-SiW(10)O(36)] (TBA = tetra-n-butylammonium) with RE(acac)(3) (acac = acetylacetonato). TBA(6)RE-POM consisted of two silicotungstate units pillared by two rare-earth-metal cations. Nucleophilic oxygen-enriched surfaces of negatively charged POMs and the incorporated rare-earth-metal cations could work as Lewis bases and Lewis acids, respectively. Consequently, cyanosilylation of carbonyl compounds with trimethylsilyl cyanide ((TMS)CN) was efficiently promoted in the presence of the rare-earth-metal-containing POMs via the simultaneous activation of coupling partners on the same POM molecules. POMs with larger metal cations showed higher catalytic activities for cyanosilylation because of the higher activation ability of C═O bonds (higher Lewis acidities) and sterically less hindered Lewis acid sites. Among the POM catalysts examined, the neodymium-containing POM showed remarkable catalytic performance for cyanosilylation of various kinds of structurally diverse ketones and aldehydes, giving the corresponding cyanohydrin trimethylsilyl ethers in high yields (13 substrates, 94-99%). In particular, the turnover frequency (714,000 h(-1)) and the turnover number (23,800) for the cyanosilylation of n-hexanal were of the highest level among those of previously reported catalysts.  相似文献   

17.
Based on the incorporation of polyoxometalates (POMs) into TiO2 film, the photoelectrochemical performance of POMs/TiO2 anode was elucidated by comparative investigation on the electron transport and electron–hole recombination in POMs/TiO2 anode. The photoelectrochemical performance of the POMs/TiO2 anode was clearly dependent on the type and content of POMs. Compared to the TiO2 anode, the POMs/TiO2 anode with low POMs loadings (0.75%) displayed the enhanced photoelectrochemical performance, while the excessive content (7.5%) of POMs could almost cause a negative effect. Thus, POMs could act as either “shallow electron trap” or “deep electron trap” depending on the different types and contents of POMs. This study reveals that the introduction of POMs into TiO2 anode could facilitate photogenerated electron transfer and reduce electron–hole recombination, which is urgently desired to develop advanced composite materials of POMs/TiO2 for application in photoelectrochemical catalysis and solar cells.  相似文献   

18.
Carbon nanotubes, carbon nanobelts, and carbon nanoparticles can be prepared directly from active carbon powders by a polyoxometalates (POMs)-assisted mild hydrothermal process. After the hydrothermal reaction the POMs are changed into heteropoly blues, which can be converted into the POMs by a small amount of H2O2 solution.  相似文献   

19.
Core-shell structured Ag/SiO2 nanocomposite has been synthesized by a cyclohexane/Igepal/water reverse micelle system. The spherical nanocomposite particles were washed and concentrated with high performance liquid chromatography (HPLC) to remove the surfactant added during synthesis. Spherical SiO2 micrometer-scale particles were packed in the HPLC column as a stationary phase for the washing and dispersing of Ag/SiO2 nanocomposite particles. Surface modification of Ag/SiO2 nanocomposite particles and SiO2 microspheres with silane coupling agent enhanced the surface charge of the particles and improved the efficiency of washing with HPLC. Well-dispersed Ag/SiO2 stable suspensions were successfully attained in ethanol/water mixed solvents after HPLC washing. The state of dispersion for the Ag/SiO2 nanocomposite suspension was systematically assessed using dynamic light scattering (DLS) and transmission electron microscope (TEM) and spin coat/atomic force microscope (AFM) analyses. The mechanism of the enabling HPLC washing protocol for SiO2-based nanoparticles is discussed.  相似文献   

20.
TiO2 microspheres were synthesized by the sol–gel method using the ionic liquid (IL) 1-vinyl-3-propylimidazolium iodide (VPIM+I?) as a reaction medium, then calcined at 500 °C. The samples were characterized by X-ray diffraction, scanning electron microscopy, and ultraviolet–visible (UV–Vis) diffuse reflectance spectroscopy. The phase of TiO2 microspheres is anatase, and VPIM+I? is able to favor the growth of anatase phase and prevents the collapse of small pores. The photocatalytic activity of TiO2-IL was tested by degradation of 2-nitrophenol under UV light illumination. The photocatalytic activity of TiO2-IL was higher than that of samples prepared in the reaction medium without VPIM+I?.  相似文献   

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