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991.
钨酸钠催化芳香腈高选择性氧化制备芳香酰胺 总被引:5,自引:0,他引:5
The preparation of aryl amides by selective oxidation of aryl nitriles using sodium tungstate as catalyst and sodium percarbonate or sodium carbonate-hydrogen peroxide as the oxidant in a methanol and water solution was studied. Aryl nitriles were converted to aryl amides with very high selectivity of 95%~100% at room temperature. The reactivity of aryl nitriles decreased with increasing their branched chain length. In the oxidation of tolunitriles, the oxidation rate of p-tolunitrile and m-tolunitrile was very fast, but the oxidation rate of o-tolunitrile was very slow. The oxidation rate of p-haloid aryl nitriles and p-nitro aryl nitrile decreased in the order p-nitrobenzonitrile>p-chlorobenzonitrile>p-bromobenzonitrile, while the selectivity for aryl amides was maintained at a high level of 98%~100%. The comparison of the two oxidants showed that when sodium carbonate-hydrogen peroxide was used as oxidant, the oxidation rate and selectivity were better than that when percarbonate was used. The sodium tungstate catalyst and carbonate can be reused and the catalytic activity and selectivity did not change if a suitable amount of hydrogen peroxide was supplied. This work provides a convenient method for the preparation of aryl amides from aryl nitriles under very mild reaction conditions. 相似文献
992.
993.
微波诱导Fe2O3/Al2O3催化剂催化氧化处理水中苯酚 总被引:29,自引:0,他引:29
以γ-Al2O3为载体,采用浸渍-焙烧法制备了Fe2O3/Al2O3催化剂,并将其应用于微波诱导催化氧化处理模拟含酚废水. X射线衍射和X射线荧光光谱测试结果表明,活性组分氧化铁在催化剂中以α-Fe2O3的形式存在,其含量为3.71%. 与载体氧化铝相比,Fe2O3/Al2O3催化剂的比表面积和平均孔径及平均孔容略有降低. 对于100 mg/L的模拟含酚废水,最佳的处理工艺条件为: 微波辐照功率400 W,辐照时间5 min,催化剂加入量60 g/L,H2O2浓度600 mg/L,体系pH>4. 在此工艺条件下,水中苯酚的去除率达97.98%. 催化剂连续使用20次后苯酚去除率仍达96.34%. 表观反应动力学研究表明,在氧化铁催化剂存在的条件下,微波诱导H2O2产生氧化性极强的羟基自由基,整个反应过程可分为微波诱导阶段和催化氧化阶段,两个阶段的氧化过程均符合一级反应动力学规律. 相似文献
994.
考察了加压(0.2~1.0 MPa)条件下BaNi0.3Al11.7O19-δ催化剂对甲烷部分氧化(POM)制合成气反应的催化性能,并且与LiLaNiOx/γ-Al2O3的POM催化性能进行了比较. BaNi0.3Al11.7O19-δ催化剂具有良好的POM催化性能,在850 ℃和1.0 MPa下,可得到75%的甲烷转化率和85%的CO选择性. 在60 h的连续实验中,催化剂活性及选择性基本保持不变,显示出较高的催化稳定性. 用XRD,XPS和TG/DTA表征手段研究了反应前后催化剂的晶体结构、表面性质以及积碳行为,结果表明该催化剂具有较强的抗Ni流失和抗积碳能力. BaNi0.3Al11.7O19-δ 的六铝酸盐结构中Ni离子和相邻原子之间的相互作用使其具有较高的热稳定性及结构稳定性,从而显示出良好的POM催化活性和稳定性. 相似文献
995.
介孔Al2O3负载纳米Au催化剂用于低温催化氧化CO 总被引:2,自引:0,他引:2
用不同模板剂合成了具有较高比表面积和较多表面碱性位的介孔Al2O3载体,并采用均相沉积-沉淀法制备了Al2O3负载纳米Au催化剂,对制备的介孔Al2O3载体及相应催化剂采用低温N2吸附法、TEM和XPS等手段进行了表征,考察了载体表面碱性对纳米Au粒子在载体表面的沉积及相应催化剂在CO氧化反应中催化性能的影响. 以CO2-TPD法测定载体表面碱性,结果表明,介孔氧化铝的表面碱性与其合成过程中所用的模板剂有关. 以表面碱性位较丰富的介孔Al2O3为载体制备的催化剂表面Au粒子分布较均匀且粒径(3.1~3.2 nm)较小,在CO完全氧化反应中催化活性最高,表明载体表面的碱性位有利于稳定其表面沉积的纳米Au粒子. XPS分析结果表明,催化剂表面的Au主要以Au0金属态形式存在,它在CO氧化反应中表现出较高的催化活性. 相似文献
996.
不同CuO/CeO2催化剂上CO低温氧化反应 总被引:10,自引:0,他引:10
分别用热解硝酸铈法和浸渍法制备了不同物性的CeO2粉体和相应的CuO/CeO2催化剂,并用XRD, HRTEM和TPR等对样品进行了表征,利用微反-色谱装置考察了其催化CO低温氧化的活性. 结果表明,热解温度影响CeO2的物性(形貌、粒度大小及分布等). 相同条件下,不同物性的CeO2载体上CuO的负载情况不同, 500 ℃热解获得的CeO2载体上非晶态CuO负载量最高,相应的CuO/CeO2催化剂活性也较高. 非晶态CuO一部分进入CeO2晶格,另一部分高度分散于CeO2表面上. 焙烧温度较低时(≤ 600 ℃), 催化剂活性受焙烧温度的影响较小,而高温(800 ℃)焙烧后,催化剂则因载体粒度增大和CuO烧结团聚等因素导致催化活性明显降低. 相似文献
997.
金溶液pH值及浸泡处理对Au/Al2O3催化剂上CO氧化反应活性的影响 总被引:2,自引:0,他引:2
采用阴离子浸渍法制备了Au/Al2O3催化剂,考察了溶液pH值及浸泡处理对催化剂上CO氧化反应的影响. 结果表明,催化剂的活性随着浸渍液氯金酸溶液pH值的升高而升高. 对于经300 ℃下H2还原处理的Au/Al2O3催化剂,无论用水浸泡还是用氨水浸泡,室温下CO转化率均可达到100%, 且催化剂具有良好的稳定性. 用氨水浸泡的催化剂经氧化处理后依然保持高活性,但用水浸泡的催化剂活性大幅度下降. XPS结果表明,用氨水浸泡的Au/Al2O3催化剂表面含有Al, O, C, N, Na和Au原子,但没有Cl原子存在. 这说明用氨水浸泡催化剂可有效除去Cl-离子而提高其催化活性. 相似文献
998.
The gas-phase reactivity of the metavanadate anion [VO3]- towards methanol and ethanol was examined by a combination of ion-molecule reaction and isotope labelling experiments in a quadrupole ion-trap mass spectrometer. The experimental data were interpreted with the aid of density functional theory calculations. [VO3]- dehydrated methanol to eliminate water and form [VO2(eta2-OCH2)]-, which features an [eta2-C,O-OCH2]2- ligand formed by formal removal of two protons from methanol and which is isoelectronic with peroxide. [VO3]- reacted with ethanol in an analogous manner to form [VO2(eta2-OCHCH3)]-, as well as by loss of ethene to form [VO2(OH)2]-. The calculations predicted that important intermediates in these reactions were the hydroxo alkoxo anions [VO2(OH)(OCH2R)]- (R: H, CH3). These were predicted to undergo intramolecular hydrogen-atom transfer to form [VO(OH)2(eta1-OCHR)]- followed by eta1-O-->eta2-C,O rearrangements to form [VO(OH)2(eta2-OCHR)]-. The latter reacted further to eliminate water and generate the product [VO2(eta2-OCHR)]-. This major product observed for [VO3]- is markedly different from that observed previously for [NbO3]- containing the heavier Group 5 congener niobium. In that case, the major product of the reaction was an ion of stoichiometry [Nb, O3, H2]- arising from the formal dehydrogenation of methanol to formaldehyde. The origin of this difference was examined theoretically and attributed to the intermediate alkoxo anion [NbO2(OH)(OCH3)]- preferring hydride transfer to form [HNbO2(OH)]- with loss of formaldehyde. This contrasts with the hydrogen-atom-transfer pathway observed for [VO2(OH)(OCH3)]-. 相似文献
999.
Lee SH Han JH Kwak H Lee SJ Lee EY Kim HJ Lee JH Bae C Lee SN Kim Y Kim C 《Chemistry (Weinheim an der Bergstrasse, Germany)》2007,13(33):9393-9398
Mononuclear nonheme iron(III) complexes of tetradentate ligands containing two deprotonated amide moieties, [Fe(Me(2)bpb)Cl(H(2)O)] (3 a) and [Fe(bpc)Cl(H(2)O)] (4 a), were prepared by substitution reactions involving the previously synthesized iron(III) complexes [Et(3)NH][Fe(Me(2)bpb)Cl(2)] (3) and [Et(3)NH][Fe(bpc)Cl(2)] (4). Complexes 3 a and 4 a were characterized by IR and elemental analysis, and complex 3 a also by X-ray crystallography. Nonheme iron(III) complexes 3, 3 a, 4, and 4 a catalyze olefin epoxidation and alcohol oxidation on treatment with m-chloroperbenzoic acid. Pairwise comparisons of the reactivity of these complexes revealed that the nature of the axial ligand (Cl(-) versus H(2)O) influences the yield of oxidation products, whereas an electronic change in the supporting chelate ligand has little effect. Hydrocarbon oxidation by these catalysts was proposed to involve an iron(V) oxo species which is formed on heterolytic O-O bond cleavage of an iron acylperoxo intermediate (FeOOC(O)R). Evidence for this iron(V) oxo species was derived from KIE (k(H)/k(D)) values, H(2) (18)O exchange experiments, and the use of peroxyphenylacetic acid (PPAA) as the peracid. Our results suggest that an Fe(V)=O moiety can form in a system wherein the supporting chelate ligand comprises a mixture of neutral and anionic nitrogen donors. This work is relevant to the chemistry of mononuclear nonheme iron enzymes that are proposed to oxidize organic substrates via reaction pathways involving high-valent iron oxo species. 相似文献
1000.
Odom SA Lancaster K Beverina L Lefler KM Thompson NJ Coropceanu V Brédas JL Marder SR Barlow S 《Chemistry (Weinheim an der Bergstrasse, Germany)》2007,13(34):9637-9646
Five diamines with thiophene-based bridges--(E)-1,2-bis{5-[bis(4-butoxyphenyl)amino]-2-thienyl}ethylene (1), 5,5'-bis[bis(4-methoxyphenyl)amino]-2,2'-bithiophene (2), 2,6-bis[bis(4-butoxyphenyl)amino]dithieno[3,2-b:2',3'-d]thiophene (3), N-(4-tert-butylphenyl)-2,6-bis[bis(4-methoxyphenyl)amino]dithieno[3,2-b:2',3'-d]pyrrole (4 a) and N-tert-butyl-2,6-bis[bis(4-methoxyphenyl)amino]dithieno[3,2-b:2',3'-d]pyrrole (4 b)--have been synthesised. The syntheses make use of the palladium(0)-catalysed coupling of brominated thiophene species with diarylamines, in some cases accelerated by microwave irradiation. The molecules all undergo facile oxidation, 4 b being the most readily oxidised at about -0.4 V versus ferrocenium/ferrocene, and solutions of the corresponding radical cations were generated by addition of tris(4-bromophenyl)aminium hexachloroantimonate to the neutral species. The near-IR spectra of the radical cations show absorptions characteristic of symmetrical delocalised species (that is, class III mixed-valence species); analysis of these absorptions in the framework of Hush theory indicates strong coupling between the two amine redox centres, stronger than that observed in species with phenylene-based bridging groups of comparable length. The strong coupling can be attributed to high-lying orbitals of the thiophene-based bridging units. ESR spectroscopy indicates that the coupling constant to the amino nitrogen atoms is somewhat reduced relative to that in a stilbene-bridged analogue. The neutral species and the corresponding radical cations have been studied with the aid of density functional theory and time-dependent density functional theory. The DFT-calculated ESR parameters are in good agreement with experiment, while calculated spin densities suggest increased bridge character to the oxidation in these species relative to that in comparable species with phenylene-based bridges. 相似文献