Modern Research in Catalysis

Modern Research in Catalysis

ISSN Print: 2168-4480
ISSN Online: 2168-4499
www.scirp.org/journal/mrc
E-mail: mrc@scirp.org
"Au/CuOx-TiO2 Catalysts for CO Oxidation at Low Temperature"
written by Feng-Chyi Duh, Der-Shing Lee, Yu-Wen Chen,
published by Modern Research in Catalysis, Vol.2 No.1, 2013
has been cited by the following article(s):
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[1] Highly dispersed boron-nitride/CuOx-supported Au nanoparticles for catalytic CO oxidation at low temperatures
2021
[2] Dye wastewater degradation by the synergetic effect of an atmospheric pressure plasma treatment and the photocatalytic activity of plasma-functionalized Cu‒TiO2 …
2021
[3] Stability and catalytic activity of Au30M12 (M= Au, Ag, Cu, Pt) icosahedral clusters
2021
[4] carbon Monoxide oxidation promoted by Surface polarization charges in a cuo/Ag Hybrid catalyst
2020
[5] One-Step Synthesis of AuCu/TiO2 Catalysts for CO Preferential Oxidation
2020
[6] Preparation of AuCu/TiO2 catalysts by different methodologies for preferential carbon monoxide oxidation
2020
[7] The Catalytic Stability of Au/FeLaO3/Al2O3 Catalyst for Low Temperature CO Oxidation
2020
[8] Preparação de catalisadores AuCu/TiO2 por diferentes metodologias para uso na reação de oxidação preferencial de monóxido de carbono
2020
[9] Preparação de nanopartículas de cobre e ouro suportadas em TiO2 para uso como catalisador na oxidação preferencial de CO em misturas ricas em hidrogênio (CO …
2020
[10] Properties of Au incorporated In2O3 films
2019
[11] This is the author's final version of the contribution published as
2019
[12] CO oxidation over gold catalysts supported on CuO/Cu2O both in O2-rich and H2-rich streams: Necessity of copper oxide
2019
[13] The effects of calcination temperature of support on Au/CuO-ZrO2 catalysts for oxidation of glycerol to dihydroxyacetone
2019
[14] Gold-copper catalysts supported on SBA-15 with long and short channels–characterization and the use in propene oxidation
2019
[15] Prepara??o de nanopartículas de cobre e ouro suportadas em TiO2 para uso como catalisador na oxida??o preferencial de CO em misturas ricas em hidrogênio (CO-PROX)
CONGRESSO BRASILEIRO DE CATALISE, 2019
[16] Surface Spectroscopic Analysis of TiO2 and ZnO Nanoparticles Doped with Noble Metals
Topics in Catalysis, 2018
[17] CO oxidation over Pt/SnO2 catalysts
Reaction Kinetics, Mechanisms and Catalysis, 2018
[18] Two‐dimensional mixed phase leaf‐Ti1‐xCuxO2 sheets synthesized based on a natural leaf template for increased photocatalytic H2 evolution
ChemCatChem, 2018
[19] Direct Au-Ni/Al2O3 catalysed cross-condensation of ethanol with isopropanol into pentanol-2
Catalysis Today, 2017
[20] Превращение этанола в линейные первичные спирты на золото-, никель-и золото-никелевых катализаторах
2016
[21] Синергетический эффект золота и меди в каталитическом превращениии этанола в линейные α-спирты
2016
[22] The effect of zinc and copper in gold catalysts supported on MCF cellular foams on surface properties and catalytic activity in methanol oxidation
Microporous and Mesoporous Materials, 2016
[23] Preferential Oxidation of CO in H2 Stream on Au/CuO–CeO2 Catalysts: Effects of Calcination Temperature
Journal of Nanoscience and Nanotechnology, 2016
[24] CO and VOCs Catalytic Oxidation Over Alumina Supported Cu–Mn Catalysts: Effect of Au or Ag Deposition
Topics in Catalysis, 2016
[25] Synergistic effect of gold and copper in the catalytic conversion of ethanol to linear α-alcohols
Petroleum Chemistry, 2016
[26] Conversion of ethanol into linear primary alcohols on gold, nickel, and gold–nickel catalysts
Kinetics and Catalysis, 2016
[27] Gold-Catalysed Reactions
2016
[28] Selective oxidation of CO in H2 stream on nano Au catalyst supported on CuO-CeO2
2015
[29] The effect of metal deposition order on the synergistic activity of Au-Cu and Au-Ce metal oxide catalysts for CO oxidation
Applied Catalysis B: Environmental, 2015
[30] Biomass Oxidation: Formyl C H Bond Activation by the Surface Lattice Oxygen of Regenerative CuO Nanoleaves
Angewandte Chemie, 2015
[31] Nanoporous CuO ribbons modified by Au nanoparticles through chemical dealloying and calcination for CO oxidation
Microporous and Mesoporous Materials, 2015
[32] Application of Au–Cu nanowires fabricated by laser ablation in superfluid helium as catalysts for CO oxidation
Gold Bulletin, 2015
[33] Gas-phase epoxidation of 3, 3, 3-trifluoropropylene over Au/CuTiO< sub> 2 catalysts with N< sub> 2 O as the oxidant
Journal of Catalysis, 2014
[34] A novel route of single step reactive calcination of copper salts far below their decomposition temperatures for synthesis of highly active catalysts
Catalysis Science & Technology, 2013
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