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16篇 您的检索式:作者名="Schiith"
    题名 作者 年代 出处 被引量
1Nanoeasting : a versatile strategy for creating nanostructured porous materials显示文摘Lu A H Schiith F 2006Advanced Materials2006,18,14:1
2Magnetic nanoparticles:synthesis,protection,functionalization,and application显示文摘Lu A H Salabas E L Schiith F 0,,:1
3显示文摘Monnier A Schiith F Hua Q 1993Science1993,261,5126:1
4Evolution of mesoporous materials during the calcination process:Structural and chemical behavior 显示文摘Kleitz F Schmidt Schiith F 2001Microporous and Mesoporous Mater2001,,4445:1
5Magnetic nanopartieles:Synthesis, protection, functionalization, and application 显示文摘LU A H SALABAS E L SCHIITH F 2007Angew Chem Int Ed Engl2007,46,8:1
6Highly reproducible syntheses of active Au/TiO2 catalysts for CO oxidation by deposition -precipitation or impregnation显示文摘 Massimiliano Comotti Ferdi Schiith 2006Journal of Catalysis2006,237,:1
7The effect of carbon porestructure on the adsorption of cigarette smoke vapour phasecompounds显示文摘Branton P Lu A H Schiith F 2009Carbon2009,47,4:1
8Direct synthesis of pure complex aluminium hydridesby cryomilling显示文摘Andr6 Pommerin Claudia Weidenthaler Ferdi Schiith etal 2010Scripta Materialia2010,62,:1
9Magnetic nanoparticles:synthesis,protection,functionalization,and application显示文摘Lu A H Salabas E L Schiith F 2007Angewandte Chemie(International Edition)2007,46,8:1
10Magnetic nanoparticles: synthesis, protection, functionalization, and application 显示文摘Lu A H Salabas E L Schiith F 2007Angew Chem Int Ed2007,46,:1
11Catalytic Reactions of Acetylene: A Feedstock for the Chemical Industry Revisited显示文摘Trotus t T Zimmermann T Schiith F 2014Chem Rev2014,114,3:1
12Preparation of high-surface-area zinc oxide with ordered porosity, different pore sizes and nanocrystalline walls 显示文摘Polarz S Orlov A V Schiith F 2007Chem EurJ2007,13,:1
13Design of solid catalysts for the conversion of biomass 显示文摘Rinaldi R Schiith F 2009Energy Environ Sci2009,2,6:1
14Synthesis of ordered mesoporous carbon containing highly dispersed copper-sulphur compounds in the carbon framework via a nanocasting route显示文摘Lu An-Hui TiiysOz H Schiith F 2008Micropomus and MesoporousMaterials2008,111,13:1
15Small gold particles supported on MgFe204 nanocrystals as novel catalyst for CO oxidation 显示文摘Jia Chunjiang Liu Yong Manfred Schwickardi Claudia Weidenthaler Bernd Spliethoff Wolfgang Schmidt Ferdi Schiith 2010Applied Catalysis A: General2010,386,12:1
16Effect of reduction-oxidation treatment on structure and catalytic properties of ordered mesoporous Cu-Mg-Al composite oxides显示文摘Ordered mesoporous Cu–Mg–Al composite oxides were synthesized via the one-pot evaporation-induced self-assembly strategy. Using this method, copper was first homogeneously incorporated into the ordered mesoporous spinel matrix. After H2 reduction treatment,according to X-ray diffraction(XRD) and transmission electron microscopy(TEM) results, copper existed as metallic nanoparticles with the size of 6–10 nm that well decorated the parent mesoporous skeleton. The metallic nanoparticles were then re-oxidized to copper oxide when exposed to air or during CO oxidation reaction at low temperatures. Thus, copper migrated from bulk spinel phase to the surface after the reduction–oxidation treatment. Moreover, the copper on the surface was re-incorporated into the bulk spinel phase by further thermaltreatment at much higher temperature in the presence of air. The correlation between the state of copper in the mesoporous composite oxides and the catalytic performance toward CO oxidation was studied. It was found that copper existed as oxide nanoparticles on the surface of mesoporous Mg–Al skeleton is much more active than that existed as lattice Cu ions in spinel phase.Jingting Lu Yan Zhang Chengli Jiao Suresh Kumar Megarajan Dong Gu Guocheng Yang Heqing Jiang Chunjiang Jia Ferdi Schiith 2015Science Bulletin2015,60,12:0
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