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Effect of Impurity and Pretreatment Conditions on the Catalytic Activity of Au Powder for CO OxidationBy Yasuo Iizuka
We have had studied CO oxidation on unsupported Au powder (mean particle size, ca.100nm) manufactured by evaporating ultra high purity gold metal (>99.99%) in inert gas and reported that it showed som
Oct 1, 2003
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Hydrogenation of Crotonaldehyde by Nanoparticles of Gold Supported on TiO2 Prepared by Deposition-Precipitation with NaOH and UreaBy Rodolfo Zanella
Au/TiO2 catalysts prepared by deposition-precipitation with NaOH (DPN) (~3 wt%) and urea (DPU) (~8 wt%) were tested in crotonaldehyde hydrogenation at atmospheric pressure. There is no differences in
Oct 1, 2003
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CO Oxidation Activity and Temperature-Programmed Reduction Study of Au/CuZnOx CatalystsBy Stephen J. Roberts
Gold catalysts were prepared on co-precipitated, calcined copper oxide - zinc oxide support by an inverse deposition-precipitation method. These catalysts were characterised by X-ray diffraction (XRD)
Oct 1, 2003
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Characterization of Reference Gold CatalystsBy Susumu Tsubota
Three types of reference gold catalysts, i.e., 3wt%Au/TiO2 (Au-Ti: Type A), and 0.3wt%Au/Fe2O3 on alumina beads (AUS: Type B), and 5wt%Au/Fe2O3 (Au-Fe: Type C), were produced in a test plant scale by
Oct 1, 2003
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New Type of Organically Capped Gold Nanoparticles prepared by Controlled Thermolysis of Gold ComplexesBy Masami Nakamoto
Controlled thermolysis of gold(I) thiolate complex, [C14H29(CH3)3N][Au(SC12H25)2], at 180 °C for 5 h under an N2 atmosphere produces novel gold nanoparticles passivated by alkyl groups derived from th
Oct 1, 2003
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Fabrication of Gold Nanoparticle Superlattices and Their Optical and Electronic PropertiesBy Toshiharu Teranishi
When we apply the Au nanoparticle superlattices to the future nanooptical and nanoelectronic devices, the control of not only the particle size but also the interparticle spacing and symmetry of super
Oct 1, 2003
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Gold Catalysts Prepared via Intermetallic PrecursorBy Elma van der Lingen
Gold is considered the most inert of all metallic elements, but the metal can show catalytic activity when prepared by specific techniques. Preparation techniques being used to prepare gold catalysts
Oct 1, 2003
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Selective Extraction and Recovery of Gold, Copper, and Other Base Metals from Mine Leach Cyanide Solutions Using Molecular Recognition Technology (MRT)By Ronald L. Bruening
IBC has developed a cost effective MRT process for the selective extraction and recovery of gold, copper, and a mixture of other base metals from mine leach cyanide solutions. This is a two-stage syst
Oct 1, 2003
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Monodispersed Gold Nanoparticles Capped by Myristate and PPh3 Ligands Prepared by Controlled Thermolysis of [Au(C13H27COO)(PPh3)]By Mari Yamamoto
Controlled thermolysis of gold(I) complex, [Au(C13H27COO)(PPh3)], at 180 °C for 5 h under an N2 atmosphere affords the new type of monodispersed spherical gold nanoparticles capped by myristate and a
Oct 1, 2003
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Prospecting for Gold: Self-Assembly on Old CDsBy Hua-Zhong Yu
Gold is one of the most widely used substrate materials for self-assembly. Self-assembled monolayers (SAMs) prepared from alkanethiols and their derivatives on gold are the most reliable and well-stud
Oct 1, 2003
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Population Statistics of Gold Nanoparticle Morphologies Determined by HREM ObservationsBy Kenji Koga
In order to derive the population distribution of gold nanoparticle morphologies as a function of size, highresolution electron microscopic (HREM) observations and structural analyses were done for ov
Oct 1, 2003
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Effect of Heat Treatments on Au ? Fe Oxide Catalysts for Low Temperature CO OxidationBy Matthew S. Hall
Gold/iron oxide catalysts have been prepared and their catalytic performance evaluated for low temperature CO oxidation. The method and temperature used to dry the sample has a significant effect on t
Oct 1, 2003
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Binary and Ternary Cluster?Complexes Containing Gold?Selenium?, Gold?Indium?Selenium and Gold?Gallium?Tellurium. Synthesis and Structures of [Au5Se2(Ph3P)4]Cl, ?By Jolanta Olkowska-Oetzel
Reactions of gold?phosphino complexes [(AuX)(PR3)] (X= Cl, Br, I; R = organic rest) with Se(SiMe3)2 lead to the formation of gold complexes with chalcogenide bridges. The reaction of the complex Ph3PA
Oct 1, 2003
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Methyl-Substituted Binuclear Cyclometallated Gold(I) Complexes: Synthesis, Structures, Reactivity and Theoretical Considerations.By Fabian Mohr
The methyl substituted binuclear cyclometallated gold(I) complexes [Au2(?-n-MeC6H3PPh2)2] [n = 4, 5 and 6] all undergo oxidative addition reactions with halogens and, in the case of the 4- and 5-methy
Oct 1, 2003
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A Novel Synthesis Route for the Preparation of Supported Gold Catalysts for Low-Temperature CO OxidationBy Gaby Steinbach
A novel synthesis is described for the preparation of supported gold catalysts for low-temperature CO oxidation. The novel route is a variation of the inverse co-precipitation method and requires amph
Oct 1, 2003
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Modification of Au/MgO Catalysts Used in Low Temperature CO Oxidation with Mn, and FeBy József L. Margitfalvi
Different Au/MgO catalysts modified with Mn, and Fe were prepared by precipitation-deposition. The catalysts were characterized by XRD, FTIR, Temperature Programmed Reduction (TPR) and CO chemisorptio
Oct 1, 2003
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The Addition of Gold to ??Fecraloy?? Substrate MaterialsBy Lizelle Glaner
An investigation was carried out by Mintek to investigate the influence of additions of gold to ?Fecraloy?, alloys based on Fe-Cr-Al. The aim was to try and improve the oxidation resistance of the ?Fe
Oct 1, 2003
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Identification of Active Sites and Influence of Real Structure of Gold Catalysts in the Selective Hydrogenation of Acrolein to Allyl alcoholBy Peter Claus
In the last years, supported gold catalysts with particle sizes smaller than 10 nm have attracted a lot of attention. While gold bulk metal is rather inert in chemical reactions and, thus, is of low i
Oct 1, 2003
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Catalytic and Non-Catalytic CO oxidation on Au/TiO2 CatalystsBy Jorge M. C. Soares
The CO oxidation reaction has been studied on Au/TiO2 catalysts prepared by incipient wetness (IW) and deposition-precipitation (DP) methods. Additionally the assessment of activity was also conducted
Oct 1, 2003
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Electroforming in Dentistry ? New Aspects and TrendsBy Michael Hopp
The beginning of the electroforming technology dates itself on the beginning of the industrial revolution 1800 to 1820 approximately. Basis was the existence of electricity in order to be able to driv
Oct 1, 2003