Advances in Chemical Engineering and Science

Advances in Chemical Engineering and Science

ISSN Print: 2160-0392
ISSN Online: 2160-0406
www.scirp.org/journal/aces
E-mail: aces@scirp.org
"Halloysite Nanotubes Supported Gold Catalyst for Cyclohexene Oxidation with Molecular Oxygen"
written by Zhen-Yu Cai, Ming-Qiao Zhu, Huan Dai, Yi Liu, Jian-Xin Mao, Xin-Zhi Chen, Chao-Hong He,
published by Advances in Chemical Engineering and Science, Vol.1 No.1, 2011
has been cited by the following article(s):
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[14] Gold nanoparticle-decorated halloysite nanotubes–Selective catalysts for benzyl alcohol oxidation
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[16] Novel Gallium Polyoxometalate/Nano‐Gold Hybrid Material Supported on Nano‐sized Silica for Mild Cyclohexene Oxidation Using Molecular Oxygen
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[28] SOME FURTHER INDUSTRIAL, ENVIRONMENTAL AND BIOMEDICAL APPLICATIONS OF HALLOYSITE NANOTUBES
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[31] Cu and Co oxides supported on halloysite for the total oxidation of toluene
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[33] Synthesis and characterization of Au nanocatalyst on modifed bentonite and silica and their applications for solvent free oxidation of cyclohexene with molecular …
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[34] Natural mineral nanotubes: properties and applications
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[35] Oxidation of cycloolefins С6-С8 by oxygen in air in presence of mixtures of cobalt bromide and oxobromide molybdenum.
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[38] Advances in Catalytic Reactions by Gold-based Catalysts Through the Radical Chain Mechanism
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[39] Augmentation of chain formation in a magnetic fluid by the addition of halloysite nanotubes
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[40] Core-shell composite metal catalysts incased into natural ceramic nanotubes
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[41] 双氧水环氧化环己烯用含钨催化剂研究新进展
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[42] Oxidación selectiva de ciclohexeno sobre catalizadores de metales de transición soportados sobre haloisita
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[43] Synthesis and characterization of gold nanoparticles supported on thiol functionalized chitosan for solvent-free oxidation of cyclohexene with molecular oxygen
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[44] Influence of nanoparticles oxidation state in gold based catalysts on the product selectivity in liquid phase oxidation of cyclohexene
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[45] One-pot synthesis of gold nanoparticles embedded in silica for cyclohexane oxidation
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[46] Highly efficient room-temperature oxidation of cyclohexene and d-glucose over nanogold Au/SiO< sub> 2 in water
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[47] Halloysite nanotubes coated with magnetic nanoparticles
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[48] Síntesis de nanopartículas de oro empleando halloysita como soporte tubular activo
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[49] Highly efficient room-temperature oxidation of cyclohexene and D-glucose over nanogold Au/SiO2 in water
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[50] Selective Oxidation of Cyclohexane to Cyclohexanone and Cyclohexanol over Au/Co3O4 Catalyst
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