Synthesis of carbon nanotubes/alumina composites in supercritical media

[1]  Haili Liu,et al.  Hydrolytic hydro-conversion of cellulose to ethylene glycol over bimetallic CNTs-supported NiWB amorphous alloy catalyst , 2016 .

[2]  Yanhui Yang,et al.  Palladium nanoparticles supported on CNT functionalized by rare-earth oxides for solvent-free aerobic oxidation of benzyl alcohol , 2016 .

[3]  Li Lu,et al.  New hybrid CNT–alumina supports for Co-based Fischer–Tropsch catalysts , 2015 .

[4]  Yongfeng Li,et al.  Pd/PdO nanoparticles supported on carbon nanotubes: A highly effective catalyst for promoting Suzuki reaction in water , 2015 .

[5]  Yanchun Zhao,et al.  Synthesis and characterizations of CoPt nanoparticles supported on poly(3,4-ethylenedioxythiophene)/poly(styrenesulfonate) functionalized multi-walled carbon nanotubes with superior activity for NaBH4 hydrolysis , 2015 .

[6]  Ya. E. Sergeeva,et al.  Production of fatty acid methyl esters that are the basis for biodiesel fuel from mycelial fungi lipids extracted by supercritical CO2 , 2014, Russian Journal of Physical Chemistry B.

[7]  S. Simal,et al.  Acoustically assisted supercritical CO2 extraction of cocoa butter: Effects on kinetics and quality , 2014 .

[8]  T. Ono,et al.  Improved thermal interface property of carbon nanotube–Cu composite based on supercritical fluid deposition , 2014 .

[9]  C. Porto,et al.  Water and ethanol as co-solvent in supercritical fluid extraction of proanthocyanidins from grape marc: A comparison and a proposal , 2014 .

[10]  T. Peijs,et al.  Effects of dispersion surfactants on the properties of ceramic - carbon nanotube (CNT) nanocomposites , 2014 .

[11]  V. Minkin,et al.  Extraction of bioflavonoid mixture from onion husk by subcritical water , 2013, Russian Journal of Physical Chemistry B.

[12]  M. Danchevskaya,et al.  Stepwise synthesis of fine crystalline Ce-doped yttrium aluminum garnet in water medium in subcritical and supercritical conditions , 2011 .

[13]  Carlos M. Silva,et al.  Review of kinetic models for supercritical fluid extraction , 2011 .

[14]  Y. Hakuta,et al.  Hydrothermal Synthesis of Metal Oxide Nanoparticles in Supercritical Water , 2010, Materials.

[15]  M. Angela A. Meireles,et al.  Supercritical Fluid Extraction of Bioactive Compounds: Fundamentals, Applications and Economic Perspectives , 2010 .

[16]  T. Hashida,et al.  Mechanical properties and structural characterization of carbon nanotube/alumina composites prepared by precursor method , 2008 .

[17]  Ahmad Tavasoli,et al.  Cobalt supported on carbon nanotubes — A promising novel Fischer–Tropsch synthesis catalyst , 2008 .

[18]  S. Miao,et al.  Coating carbon nanotubes with metal oxides in a supercritical carbon dioxide–ethanol solution , 2007 .

[19]  Cyril Aymonier,et al.  Review of supercritical fluids in inorganic materials science , 2006 .

[20]  Edward Lester,et al.  Reaction engineering: The supercritical water hydrothermal synthesis of nano-particles , 2006 .

[21]  S. Hong,et al.  Strengthening and toughening of carbon nanotube reinforced alumina nanocomposite fabricated by molecular level mixing process , 2005 .

[22]  A. Galkin,et al.  Subcritical and Supercritical Water: A Universal Medium for Chemical Reactions , 2005 .

[23]  V. Lunin,et al.  Department of Chemistry of the M V Lomonosov Moscow State University , 2005 .

[24]  S. Hong,et al.  Fabrication of carbon nanotube reinforced alumina matrix nanocomposite by sol–gel process , 2005 .

[25]  Shajahan,et al.  High growth of SWNTs and MWNTs from C2H2 decomposition over Co-Mo/MgO catalysts , 2004 .

[26]  H. Hayashi,et al.  Hydrothermal synthesis of titania photocatalyst under subcritical and supercritical water conditions , 2002 .

[27]  A. Eletskii Carbon nanotubes and their emission properties , 2002 .

[28]  A. Galkin,et al.  Unusual Approaches to the Preparation of Heterogeneous Catalysts and Supports Using Water in Subcritical and Supercritical States , 2001 .

[29]  K. Arai,et al.  Hydrothermal Synthesis of Metal Oxide Nanoparticles at Supercritical Conditions , 2000 .

[30]  U. Grigull Tables of the Properties of Water and Steam , 1981 .