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51.
盛凤军 《江苏化工》2007,35(4):38-40
分别以廉价硅酸钠与正硅酸乙酯为硅源,通过复合模板剂制备了介孔二氧化硅,并利用吸附相反应技术合成了TiO2/SiO2复合催化剂。用X射线衍射(XRD)、红外谱图分析(FT-IR)等手段对其结构进行了表征,通过苯酚的羟基化反应考察了催化剂的催化性能。  相似文献   
52.
P. Kim  J.B. Joo  H. Kim  W. Kim  Y. Kim  I.K. Song  J. Yi 《Catalysis Letters》2005,104(3-4):181-189
Mesoporous Ni–alumina catalysts (Ni–alumina-pre and Ni–alumina-post) were synthesized by one-step sol–gel method using micelle complex comprising lauric acid and nickel ion as a template with metal source and using aluminum sec-butoxide as an aluminum source. The Ni–alumina catalysts showed relatively high surface areas (303 m2/g for Ni–alumina-pre and 331 m2/g for Ni–alumina-post) and narrow pore size distributions centered at ca. 4 nm. Highly dispersed Ni particles were observed in the Ni–alumina catalysts (ca. 5.2 nm for Ni–alumina-pre and ca. 6.8 nm for Ni–alumina-post) after reduction at 550 °C, while a catalyst prepared without a template (NiAl-comp) exhibited inferior porosity with large metal particles (ca. 12.3 nm). Mesoporous Ni–alumina catalysts with different porosity were obtained by employing different hydrolysis step of aluminum source. When aluminum source was hydrolyzed under the presence of micelle complex, a supported Ni catalyst with highly developed framework mesoporosity was obtained (Ni–alumina-post). On the other hand, when aluminum source was pre-hydrolyzed followed by mixing with micelle solution, the resulting catalyst (Ni–alumina-pre) retained high portion of textural porosity. It was revealed that the hydrolysis method employed in this research affected not only textural properties but also metal-support interaction in the Ni–alumina catalysts. It was also found that the Ni–alumina-pre catalyst exhibited weaker interaction between nickel and alumina than the Ni–alumina-post, leading to higher degree of reduction in the Ni–alumina-pre catalyst. In the hydrodechlorination of o-dichlorobenzene, the Ni–alumina catalysts exhibited better catalytic performance than the NiAl-comp catalyst, which was attributed to higher metal dispersion in the Ni–alumina catalysts. In particular, the Ni–alumina-pre catalyst showing 1.5 times higher degree of reduction and larger amounts of o-dichlorobenzene adsorption exhibited better catalytic performance than the Ni–alumina-post catalyst.  相似文献   
53.
Type-A zeolite evenly covered with hydroxyapatite thin layers was prepared using hydrothermal treatment at 120°C for 8 h under autogenous pressure. The hydroxyapatite needlelike nanocrystals, 100–200 nm in diameter and 30 nm in thickness, were grown under the reaction between discharged Ca2+ ions from type-A zeolite and PO43− ions in (NH4)3PO4 solution. The preferential orientations of the c -axis of hydroxyapatite crystals perpendicular to a zeolite surface were observed using transmission electron microscopy. The crystal structure of type-A zeolite was not destroyed under the reaction, but the surface morphology was changed only with complete covering of scaly hydroxyapatite particles.  相似文献   
54.
Bromination and subsequent ethylenediamine substitution of the CC double bond in mesoporous ethylenesilica were carried out to explore the characteristics of this periodic mesoporous organosilica. The structures of the products (BrPMO and EDA–BrPMO, respectively) were analysed by IR, Br K-edge EXAFS and NMR spectroscopies, as well as X-ray diffraction and nitrogen adsorption. We showed (1) that the formulae of the two products that formed were [CHBrSiO1.5]0.45[CHSiO1.5]0.55 and [NH2CH2CH2NHCHSiO1.5]0.05 [CHBrSiO1.5]0.40[CHSiO1.5]0.55, respectively, (2) that the addition of Br2 at room temperature occurred on the CC double bonds with disturbing the framework structure, (3) that IR absorption band of CC bonds that reacted with Br2 is significantly different from that of inactive CC bond, (4) that the length of the C–Br bond was considerably longer than in conventional alkyl bromides, and (5) that a large proportion of the ν(C–Br) band remained at the same position in the IR absorption spectrum after the ethylenediamine (EDA) substitution, while a new ν(C–Br) absorption also appeared. The mechanisms of these reactions are discussed at both the micro and mesoscopic levels.

Arsenate adsorption on EDA–BrPMO, in which the EDA is directly bound to the “surface” of the mesopores, was compared with adsorption on EDA–Pr–PMO, which was prepared by the direct synthesis of 3-chloropropyl-functionalized mesoporous ethanesilica followed by the substitution of Cl with EDA. The strength of the adsorption, as measured with the distribution coefficient, was greater for the former adsorbent than the latter. The origin of this difference was attributed to the distance between amino group and the surface.  相似文献   

55.
杂化介孔二氧化硅溶胶的制备及表征   总被引:1,自引:1,他引:0  
在室温、不同pH值条件下合成出纳米球形介孔二氧化硅溶胶。通过研究得出当pH=4时为最佳生产工艺,在pH=4条件下以十六烷基三甲基溴化铵为模板剂,利用正硅酸乙酯和硅烷偶联剂共水解制备了杂化介孔二氧化硅溶胶。运用激光纳米粒度仪、透射电镜、X射线衍射等测试方法对材料进行表征。结果表明:通过共水解溶胶-凝胶法成功合成了改性介孔二氧化硅溶胶,其粒径约为25 nm,具有规则的介孔结构和良好的分散性。  相似文献   
56.
利用微波辅助双模板法、软模板法制备了一系列的CeO2/g-C3N4复合催化材料,通过XRD、N2吸附-脱附、XPS、SEM和TEM等方式对材料进行表征,并对其湿式催化性能进行研究。结果表明,双模板法制备的D-CeO2/g-C3N4复合材料表现出立方相CeO2和层叠g-C3N4的特征,比表面积和孔径较大,属于介孔结构,表面存在Ce3+和Ce4+,有利于氧空位的形成。加入1 g嵌段共聚物 F127,使用无水乙醇溶液为溶剂,调节混合液呈碱性,微波辐射反应120 min后得到的D-CeO2/g-C3N4(7.5)样品,结构完整均匀,具有最佳形貌特征。控制反应温度75 ℃,D-CeO2/g-C3N4(7.5)投加0.7 g,H2O2投加 0.5 mL,初始pH值为5时,100 mg/L的苯酚溶液COD去除率可达80%以上。 D-CeO2/g-C3N4(7.5) 复合催化材料使用五次以后仍可达60%以上的催化降解效果。  相似文献   
57.
n-Decane hydroconversion has been investigated on bifunctional catalysts comprising bimetallic Pt–Pd clusters supported on an AlMCM-41 (nSi/nAl = 23) mesoporous molecular sieve. The catalytic activity of the bimetallic Pt–Pd catalysts is higher than that of the monometallic Pt and Pd catalysts. The good balance between the two catalytic functions, namely acid sites and metal sites, also results in a higher isomer yield at a substantially lower reaction temperature. Moreover, cracking on the metal sites (hydrogenolysis) is largely suppressed over certain bimetallic catalysts.  相似文献   
58.
Self-standing transparent submillimeter-thick (∼0.34 mm) mesoporous titania films were prepared using the evaporation-induced self-assembly (EISA) of a triblock copolymer template and titanium tetraethoxide. Performing EISA at low temperature and low humidity improved the transparency and continuity of the films. As synthesized films had a well-defined hexagonal mesostructure and the existence of both amorphous titania and anatase nanocrystallites (2 nm) was confirmed. The films that were calcined at 400°C were composed of anatase nanocrystallites (14–16 nm) and had a BET surface area of 90 m2 g−1 with 13-nm pores. The films were characterized using XRD, FE-SEM, TEM, and N2 adsorption–desorption measurements. An erratum to this article can be found at  相似文献   
59.
A mesoporous membrane for selective separation of hydrogen was prepared usingthe sol-gel method. Some metal salts such as RuCl3, Pd(NH3)4Cl2, RhCl3,, and H 2PtCl6, were added to the boehmite sol and coated on a porous alumina substrate before firing at 500°C. It was foundthat the permeability of hydrogen and the separation factor for a hydrogen-nitrogen gaseous mixture of these metaldispersed membranes exceeded the limitations of the Knudsen diffusion mechanism. Although the gas permeation through a neat alumina membrane is governed by the Knudsen diffusion, the metals dispersed in alumina membranes were effective in promoting hydrogen permeation. These metaldispersed alumina membranes were also used in a membrane reactor for methane steam reforming at low temperature. In the temperature range of 300 to 500°C, the membrane reactor attained a methane conversion twice as high as the equilibrium value of the packed bed catalytic reactor system as a result of the selective removal of hydrogen from the reaction system.  相似文献   
60.
免标记DNA电化学传感器测定凝血酶   总被引:2,自引:2,他引:0  
研制了一种基于介孔二氧化硅负载纳米金和适体DNA的免标记电化学传感器,用于检测凝血酶的含量。实验中先用三甲基氯硅烷(TMCS)封闭介孔二氧化硅(MPS)前驱体外壁硅羟基的活性,煅烧除去模板剂后,再用氨基丙基三乙氧基硅烷(APTS)与孔道内壁硅羟基反应,接枝氨基,最后得到内壁修饰氨基的介孔硅材料(APTS-TMCS-MPS)。金纳米粒子(GNPs)通过与APTS-TMCS-MPS氨基的静电作用力组装到介孔孔道内,然后和巯基修饰的适体DNA通过金硫键相结合,制得免标记探针(DNA/GNPs/APTSTMCS-MPS)。将探针修饰在玻碳电极表面,制得免标记DNA电化学传感器。将该传感器与含有凝血酶的待测液温育反应后,凝血酶和固定在介孔内的适体DNA发生特异性反应,形成位阻较大的适体DNA和凝血酶的复合物,从而增加了介孔孔道内的空间位阻,导致电流响应信号降低。随着凝血酶浓度的增加,孔道内部的位阻也随之增加。根据形成的复合物对电子转移和响应电流的阻碍,可以实现对凝血酶的免标记测定。实验结果表明,APTS-TMCS-MPS介孔孔道内的GNPs,可以提高孔道内电子的传递效率。在优化的实验条件下,该免标记DNA电化学传感器对凝血酶的检测线性范围是1.0×10-8~1.0×10-6 mol·L-1,检测限是7.5×10-9 mol·L-1(3σ)。  相似文献   
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