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1.
复合氧化物AMyA l12-yO19-δ作为功能无机材料,在许多领域已得到广泛的应用研究。例如可以做超导材料、荧光材料的晶体基质、激光材料等[1]。近年来,作为天然气燃烧反应的催化材料正在进行广泛深入的研究,已经引起了人们越来越多的关注[2-4]。研究表明,复合氧化物AMyA l12-yO19  相似文献   

2.
自 1 990年以来 ,由甲烷部分氧化制合成气 ( POM)的反应作为对传统甲烷水蒸气重整反应的一个重大改进而受到高度重视 [1] .目前 ,在 POM反应中 ,研究较多的催化剂体系大致可分为贵金属 ( Pt,Pd,Rh,Ru及 Ir) [2 ,3] 以及以 Ni和 Co为主的 B族过渡金属催化剂[4~ 6 ] .最近 ,Hayakawa等 [7,8] 报道了具有钙钛矿结构的复合氧化物 Ca1- x Srx Ti1- y My O3-δ( M=Cr,Fe,Co或 Ni)在甲烷部分氧化制合成气反应中具有一定的催化活性 .本文以本组开发的钙钛矿型复合氧化物 Ba0 .5Sr0 .5Co0 .8Fe0 .2 O3-δ(简称BSCFO)和 Ba0 .5Sr0 .5…  相似文献   

3.
纳米二氧化钛催化苯乙烯环氧化反应的研究   总被引:5,自引:0,他引:5  
戚建英  杨启云 《分子催化》2000,14(4):294-296
通过烯烃的环氧化反应 ,可制得活泼的有机合成中间体——环氧化物 ,再通过选择性开环或功能团转化 ,可以方便地合成多种有价值的化合物 .因此 ,催化烯烃环氧化的反应得到广泛的研究 ,其中含钛催化剂具有较好的催化性能 ,如 Ti- ZSM- 5沸石 [1,2 ] 、Ti- ZSM- 1 1沸石[3 ,4 ] 在 H2 O2 存在下就有高的催化活性 ;α-和β- [Si W9Ti3 O4 0 ]10 -也有一定的催化活性 [5] ;Sharpless等人 [6]采用 Ti[OCH( CH3 ) 2 ]4和酒石酸二乙酯诱导体 ,可高选择性催化烯丙醇的不对称环氧化反应 .纳米 Ti O2 ,由于颗粒小 ,处于固体表面的原子多 ,表…  相似文献   

4.
纳米结构材料由于其独特的物理化学性质以及在微电子器件、光开关等方面的应用而备受关注. 多孔氧化铝由于具有孔径分布较窄、取向一致和孔密度高等优点而广泛用于模板制备纳米结构材料. 在多孔氧化铝中可以组装金属纳米粒子[1]、半导体纳米粒子[2]、导电高分子[3]以及碳纳米管[4]等.  相似文献   

5.
纳米TiO2-SiO2复合氧化物的制备与性质   总被引:32,自引:0,他引:32  
采用溶胶-凝胶结合CO2超临界干燥方法制备了比表面积大、热稳定性好的纳米TiO2-SiO2复合氧化物.考察了原料组成和焙烧温度对复合氧化物比表面积、热稳定性和酸性的影响,通过加氢脱硫反应考察了该复合氧化物作为加氢精制催化剂载体的可行性.结果表明,采用该方法制备的复合氧化物为纳米颗粒,在n(Ti)/n(Si)=1时,其比表面积和孔容最大;与纯TiO2相比,引入SiO2明显提高了复合氧化物的热稳定性和晶型稳定性;以此复合氧化物为载体的加氢精制催化剂具有很好的低温脱硫活性,TiO2-SiO2复合氧化物载体的酸性特征影响了催化剂的加氢脱硫活性.  相似文献   

6.
采用共沉淀法合成了不同CuZnAl配比的类水滑石,通过不同温度焙烧制备其衍生复合氧化物.采用X-射线衍射(XRD)、差热热重(TG-DTA)、N2吸附-脱附和CO2程序升温脱附法(CO2-TPD)对类水滑石和衍生复合氧化物进行了表征.将所得复合氧化物用于环己醇脱氢制备环己酮的反应中考察其催化活性.实验结果表明:CuZnAl类水滑石衍生复合氧化物对该反应具有很高的催化活性,在反应温度220℃时以CuZnAl[n(Cu)/n(Zn)/n(Al)=1.34/0.66/1.0]类水滑石为前躯体,400℃焙烧所得的衍生复合氧化物表现出最佳的催化活性,环己醇转化率高达94.9%,环己酮的选择性近100%.  相似文献   

7.
LaMnO_3稀土纳米材料及催化性能   总被引:1,自引:0,他引:1  
钙钛矿型复合氧化物( ABO3)有稳定的结构和良好的高温性能,其中 La-Mn-O系列的钙钛矿材料具有很好的催化活性,但采用固相反应等方法制备的样品其比表面一般不超过 10 m2· g- 1,反应活性受到限制 [1].纳米材料粒径较小,比表面较大,具有独特的物理化学性能,是一种有应用前景的新型催化材料 .目前,纳米材料的制备方法有喷雾冷冻干燥法 [2]、 共沉淀法 [3]或溶胶-凝胶法 [4- 7]等 .本文用 NaOH-Na2CO3共沉淀法制备出纳米级 LaMnO3钙钛矿,并研究了其对 CO、 HC和 NO的催化性能 .1实验1.1样品制备  纳米钙钛矿粉末制备方…  相似文献   

8.
以淀粉为生物模板,LDHs晶核溶液为前驱体,通过共沉淀法、陈化及煅烧过程,制备了一系列复合金属氧化物多孔材料.采用X射线衍射(XRD)、扫描电子显微镜(SEM)、X射线能谱(EDX)、N2吸附-脱附(BET)和X射线光电子能谱(XPS)等手段对样品进行形貌、结构与化学组成的表征,并比较它们H2O2-α-蒎烯催化氧化性能.结果表明,淀粉以"嵌入"式发挥模板作用制备出具有独特形貌、孔径分布在约2~5 nm的介孔及大孔尺寸的多金属复合氧化物多孔材料,其比表面积达760.90 m2/g,具有良好的结晶度;其中Mg Zn Al Fe四元复合氧化物催化性能最佳,在α-蒎烯/H2O2摩尔比为1∶1.2、催化剂用量为10.0 mg、溶剂(V(DMF)∶V(水)=4∶1)2 m L、20℃下反应4 h时,α-蒎烯转化率可达53.8%,产物2,3-环氧蒎烷、马鞭草烯醇、马鞭草烯酮的选择性分别为48.9%、2 9.9%、21.3%.  相似文献   

9.
利用改进的本体溶胶-凝胶过程制备单组分二氧化硅单块   总被引:3,自引:0,他引:3  
溶胶 -凝胶方法具有较低的反应温度 ,可在材料处理的最初阶段即纳米尺度上对材料的结构进行控制 ,所制备材料具有较高均一性和高纯度等优点 ,长期以来引起了众多科学家的关注[1~ 4 ] .然而 ,传统的溶胶 -凝胶工艺存在凝胶时间过长、体积收缩大、形状和尺寸无法控制、严重的龟裂、成本高以及环境污染等缺点 ,限制了其应用 .针对上述问题 ,我们改进了传统的溶胶 -凝胶过程 ,提出本体溶胶 -凝胶技术和复合本体溶胶 -凝胶技术 [1,2 ] .本体溶胶 -凝胶技术由于加入的凝胶促进剂碳酸盐与 Si O2 相容性差 ,存在块体成功率相对较低、表面不光滑和…  相似文献   

10.
在材料的合成与制备、组成与结构、性能及使用效能四者之间存在着强烈的相互依赖关系[1 ] 。一种材料的性质与其组成及结构息息相关 ,而组成与结构又是合成和制备的结果。合成与制备是提高材料质量的关键 ,也是开发新材料、新器件的中心环节。鉴于此 ,本文在前面工作[2~ 4] 的基础上 ,应用正交试验方法[5] ,探讨pH值、温度、搅拌速度三共沉淀反应条件对Sn Zn Fe复合氧化物气敏性能的影响。1 实验部分1 1 敏感材料的制备按表 1设计的正交试验方案 ,取物质的量相同的Sn、Zn、Fe氯化物混合液 ,在不同温度、搅拌速度条件下 ,…  相似文献   

11.
The new diphenolato complexes [{Mo(NO){HB(dmpz)3}Cl}2Q] where dmpz = 3,5-dimethylpyrazolyl and Q = OC6H4(C6H4O (n = 1 or 2), OC6H4CR=CRC6H4O (R = H or Et), and OC6H4CH=CHC6H4CH=CHC6H4O have been prepared and their electrochemical properties (cyclic and differential pulse voltammetry) compared with previously reported analogues where Q = OC6H4O, OC6H4EC6H4O (E = SO2, CO and S), OC6H4 (CO)C6H4 C6H4(CO)C6H4O and 1,5- and 2,7-O2C10H6. The electrochemical interaction between the redox centres in the new complexes is very weak, in contrast to that in the 1,4-benzenediolato and naphthalendiolato species. The EPR spectra of the reduced mixed-valence species [{Mo(NO){HB(dmpz)3}Cl}2Q] where Q = 1,3- and 1,4-OC6H4O and OC6H4SC6H4O shows that they are valence-trapped at room temperature, whereas those of the dianions [{Mo(NO){HB(dmpz)3}Cl}2Q]2− where Q = 1,4-OC6H4O, OC6H4EC6H4O (E = CO or S) and OC6H4CH=CHC6H4CH=CHC6H4O shows that the unpaired spins on each molybdenum centre are strongly correlated (J, the spin exchange integral AMo, the metal-hyperfine coupling constant). The electrochemical properties and the comproportionation constants for the reaction [{Mo(NO){HB(dmpz)3} Cl}2Q] + [{Mo(NO){HB(dmpz)3}Cl}O]2]2−2[{Mo(NO) {HB(dmpz)3}Cl}2Q] where Q = diphenolato bridge, are compared with related compounds containing benzenediamido and dianilido bridges.  相似文献   

12.
Liquid crystalline 4-XC6H4N=NC6H4X-4′ [X = C4H9 (1a), C1OH21 (1b), OC4H9 (1c), OC8H17(1d)] can be easily prepared in high yields from the corresponding anilines. In order to study the influence of metals on the thermal properties of these materials, we have obtained adducts [AuCl 3(4-C4H9OC6H4N=NC6H4OC4H9-4′)] (2) and [Ag(OC1O3)L2] [L = 4-XC6H4N=NC6H4X-4′; X = OC4H, (3a), OC8H17 (3b)]. The silver adducts show themotropic behaviour. Mercuriation of dialkylazobenzenes 1a-b takes place with [Hg(OAc)2] and LiCl to give [Hg(R)Cl] [R = C6H3(N=NC6H4X-4′)-2, X-5; X = C4H9 (bpap) (4a), C10H21 (dpap) (4b)] while dialkoxyazobenzenes 1c–d require [Hg (OOCCF3)2] to obtain [Hg(R)Cl] [R = C6H3(N---NC6H4X-4′)-2, X-5; X = OC4H9 (bxpap) (4c), OC 8H17 (4d)]. 4a-c react with NaI to give [HgR2] [R= bpap (5a), dpap (5b), bxpap (5c), oxpap (5d)l. Both chloroaryl-, 4a and 4c, and diaryl-mercurials, 5a and 5c, act readily as transmetailating agents towards [Me4N] [AuCl4] in the presence of [Me4N]Cl to give [Au(η2-R)Cl2] [R = bpap (6a), bxpap (6b)]. After reaction of [AuCl 3(tht)] (tht = tetrahydrothiophene) with [Me4N]Cl and 4b (1:2:1), [Me4N][Au(dpap)Cl3] (7) can be isolated. C---H activati bxpap (8b)]. None of the complexes 4–8 shows mesomorphic behaviour.  相似文献   

13.
The siloxyanilines o-Me3SiOC6H4NH2 (1) and p-RMe2SiOC6H4NH2 (R=H (2); R=Me (3)), and their N-silylated derivatives p-Me3SiOC6H4NHSiMe3 (4) and p-Me3SiOC6H4N(SiMe3)2 (5) have been prepared from ortho- or para-aminophenol and used in the synthesis of imido complexes. Thus, binuclear [{Ti(η5-C5H5)Cl}{μ-NC6H4(p-OSiMe3)}]2 (6) and mononuclear [TiCl2{NC6H4(p-OSiMe3)}(py)3] (7) imido complexes have been obtained from the reaction of 3 and [Ti(η5-C5H5)Cl3] or [TiCl2(NtBu)(py)3], respectively. In contrast, the reaction of 1 with TiCl4 and tBupy affords the titanocycle [TiCl2{OC6H4(o-NH)---N,O}(tBupy)2] (8). Compound 5 has also been used to prepare the niobium imide complex [NbCl3{NC6H4(p-OSiMe3)}(MeCN)2] (9), by its reaction with NbCl5 in CH3CN. These findings have been applied to the synthesis of polynuclear systems. Thus, chlorocarbosilane Si[CH2CH2CH2Si(Me)2Cl]4 (CS–Cl) has been functionalized with the ortho- and para-aminophenoxy groups to give 10 and 11, respectively. The use of 11 has allowed the formation of the tetranuclear compound 12. Attempts to synthesize terminal imido titanium complexes from 10 and TiCl4 in the presence of tBupy and Et3N, give complex 8 and carbosilane CS–Cl.  相似文献   

14.
Non-symmetric bent-core mesogens with one terminal vinyl group   总被引:1,自引:0,他引:1  
Two series of non-symmetric banana-shaped compounds, both with one alkyl and one alkenyl terminal tail, have been synthesized and studied. Both series were compared with the corresponding series with two saturated terminal alkyl tails. All the compounds have a bent central 1,3-phenylene bis(4-benzoyloxy)benzoate core; their mesophases were characterized by polarizing optical microscopy, differential scanning calorimetry, X-ray diffraction and switching current response experiments. In all four series one of the terminal tails is varied from OC8H17 to OC16H33. The other terminal tails are OC11H23, O(CH2)9CH = CH2, OC10H21 and O(CH2)8CH = CH2. The short-tailed compounds show monotropic or enantiotropic B1 phases and the long-tailed compounds the B2 phase. The introduction of one terminal vinyl group slightly lowers the transition temperatures. The introduction of a second terminal vinyl group further suppresses the liquid crystalline properties. All compounds with B2 phases have layer spacings that suggest a tilt of ∼45° of the bent molecules in the layers, and their switching behaviour is antiferroelectric.  相似文献   

15.
The electrochemical behaviour of the set of tetracoordinate rhodium(I) complexes [Rh(OO)(CO)L] [OO=MeC(O)CHC(O)Me (acac), L=CO (1), P(NC4H4)3 (2), PPh(NC4H4)2 (3), PPh2(NC4H4) (4), PPh3 (5), PCy3 (6), P(OPh)3 (7) or PPh2(C6H4OMe-4) (8); OO=PhC(O)CHC(O)Me (bac), L=CO (9) or PPh3 (10); OO=PhC(O)CHC(O)CF3(bta), L=CO (11) or PPh3 (12)] and of the pentacoordinate [RhH(CO)L3] [L=P(NC4H4)3 (13), PPh3 (14), P(OPh)3 (15) or P(OC6H4Me-4)3 (16)] and [RhHL4] [L=PPh3 (17) or P(OC6H4Me-3)3 (18)] was studied by cyclic voltammetry and controlled potential electrolysis, in aprotic medium, at a Pt electrode. They present a single-electron oxidation wave (I) (irreversible or quasi-reversible) that can be followed, at a higher potential, by a second and irreversible one (II). The values of first oxidation potential for the tetracoordinate complexes fit the additive Lever's electrochemical parameterisation, and the ligand electrochemical Lever EL and Pickett PL parameters were estimated for the N-pyrrolyl phosphines PPhn(NC4H4)3−n (n=0, 1 or 2) and for the organophosphines PCy3 and PPh2(C6H4OMe-4), the former behaving as weaker net electron donors (the electron donor ability decreases with the increase of the number of N-pyrrolyl groups) than the latter phosphines. The pentacoordinate hydride complexes 13–18 fit a distinct relationship which enabled the estimate of the EL ligand parameter for the phosphites P(OC6H4Me-3)3 and P(OC6H4Me-4)3. Electrochemical metal site parameters were obtained for the square planar and the pentacoordinate Rh(I)/Rh(II) couples and, for the former, the redox potential is shown to present a much higher sensitivity to a change of a ligand than the octahedral redox couples investigated so far. Linear relationships were also observed between the oxidation potential and the PL ligand parameter (for the series [Rh(acac)(CO)L]) or the infrared ν(CO) frequency, and a generalisation of the former type of correlation is proposed for series of square-planar 16-electron complexes [M′SL] with a common 14-electron T-shaped binding metal centre {M′S}. Oxidation of 5 by Ag[PF6] leads to the dimerisation of the derived Rh(II) species.  相似文献   

16.
The structure and texture characteristics of the hybrid organic–inorganic adsorbents, which were obtained by using of two-component systems of “structure-forming agent/trifunctional silane”, are compared as follows: the first component is Si(OC2H5)4 or (C2H5O)3Si–A–Si(OC2H5)3, where A = –(CH2)2– or –C6H4–; the second one is alkoxysilane with amine (–NH2, NH, –NH(CH2)2NH2) and thiol (–SH) groups. The adsorbents, derived from TEOS, have more accessible functional groups (2.6–4.2 mmol/g) than xerogels, which are based on bis(triethoxysilanes) (1.0–2.6 mmol/g). On another hand xerogels derived from bis(triethoxysilanes) have a more extended porous structure (Ssp =516–968 m2/g, Vs = 0.418–1.490 cm3/g, d = 2.5–15.0 nm) than those that are based on TEOS (Ssp = 4–631 m2/g, Vs = 0.005–1.382 cm3/g, d = 2.3–17.7 nm). The geometric dimensions of functional groups have a more essential effect on the parameters of porous structure in the case of TEOS-derived xerogels. Using solid-state NMR spectroscopy, it has been shown that in synthesis of xerogels with the use of TEOS, the molecular frame of globules is formed by structural units Qn (n = 2,3,4), and the functional groups exist as structural units of Tn (n = 2,3). The xerogels obtained with using bis(triethoxysilanes) consist only of structural units of Tn-type (n = 1,2,3).  相似文献   

17.
X-ray measurements on hexakis(4-(4'-alkyloxy)biphenoxy)cyclotriphosphazenes [PN-(OC6H4C6H4OCnH2n + 1)2]3 (HACP, n = 7-9), confirm the previous mesophase identification. The apparent molecular length measured in the mesophase compares to twice the length of an alkyloxybiphenyl side group. Specific features are added to the usual features of the nematic and smectic diffraction patterns which show that the molecular arrays in directions parallel and perpendicular to the director both reflect the peculiar shape of the cyclotriphosphazenes.  相似文献   

18.
Reaction of ansa-cyclopentadienyl pyrrolyl ligand (C5H5)CH2(2-C4H3NH) (2) with Ti(NMe2)4 affords bis(dimethylamido)titanium complex [(η5-C5H4)CH2(2-C4H3N)]Ti(NMe2)2 (3) via amine elimination. A cyclopentadiene ligand with two pendant pyrrolyl arms, a mixture of 1,3- and 1,4-{CH2(2-C4H3NH)}2C5H4 (4), undergoes an analogous reaction with Ti(NMe2)4 to give [1,3-{CH2(2-C4H3N)}25-C5H3)]Ti(NMe2) (5). Molecular structures of 3 and 5 have been determined by single crystal X-ray diffraction studies.  相似文献   

19.
块状TiO2气凝胶的制备及其表征   总被引:12,自引:1,他引:11  
随着以溶胶-凝胶法和超临界干燥技术为基础的气凝胶制备方法的逐步完善,已不断制备出多种气凝胶[1~3].由于TiO2具有半导体特性,它常被作为光催化剂而受到重视,但是TiO2气凝胶的结构强度远比SiO2气凝胶小,在制备过程中极易碎裂粉化,所以至今未见制备块状TiO2气凝胶的报道.Dagan等[4]曾用异钛酸丁酯为母体制得TiO2气凝胶,并发现水杨酸在TiO2气凝胶存在下的光解速率是一般TiO2粉末的10倍,但获得的仅为TiO2气凝胶粉末.张敬畅等[5]以无机盐为原料,采用溶胶-凝胶法结合超临界干燥技术制备了纳米级TiO2气凝胶,也未能得到块状TiO2气凝胶材料. 本文报道以正钛酸丁酯为原料制备块状TiO2气凝胶的方法,并用TEM,SEM,XRD和IR等手段对所获得的气凝胶进行了结构表征.  相似文献   

20.
New syntheses of PEG-(OCH2C5H4N)2 and PEG-(OC6H4PPh2)2 (PEG: poly(ethylene glycol)) conjugates are reported. An iridium hydrogenation catalyst 1, is shown to catalyze hydrogenation in a water/substrate two-phase system. Attachment of 1 to PEG to make 2 and 3 succeeds in making the complex water-soluble and allows it to retain some of its catalytic ability, but leads to micelle formation that inhibits the separation of organic and aqueous phases.  相似文献   

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