Syntheses and characterization of Mg(OH)(2) and MgO nanostructures by ultrasonic method.

[1]  Xuguang Liu,et al.  Magnesium hydroxide nanoparticles synthesized in water-in-oil microemulsions. , 2008, Journal of colloid and interface science.

[2]  A. Morsali,et al.  Syntheses of BaCO3 nanostructures by ultrasonic method. , 2008, Ultrasonics sonochemistry.

[3]  A. Morsali,et al.  Syntheses and characterization of CdCO3 and CdO nanoparticles by using a sonochemical method , 2008 .

[4]  Xuguang Liu,et al.  Synthesis of magnesium hydroxide nanoneedles and short nanorods on polymer dispersant template , 2007 .

[5]  N. Takahashi SIMPLE AND RAPID SYNTHESIS OF MGO WITH NANO-CUBE SHAPE BY MEANS OF A DOMESTIC MICROWAVE OVEN , 2007 .

[6]  Hao Wang,et al.  Rapid synthesis of Ag2Se nanocrystals by sonochemical reaction , 2006 .

[7]  Jun Lin,et al.  In(OH)3 and In2O3 nanorod bundles and spheres: microemulsion-mediated hydrothermal synthesis and luminescence properties. , 2006, Inorganic chemistry.

[8]  K. Kim,et al.  Organized and highly dispersed growth of MnO2 nano-rods by sonochemical hydrolysis of Mn3acetate. , 2006, Ultrasonics sonochemistry.

[9]  J. Hsu,et al.  Preparation of submicron-sized Mg(OH)2 particles through precipitation , 2005 .

[10]  Min Wei,et al.  Controllable preparation of Nano-MgO and investigation of its bactericidal properties. , 2005, Journal of inorganic biochemistry.

[11]  Weimin Zhang,et al.  Controlled synthesis of single-crystalline Mg(OH)2 nanotubes and nanorods via a solvothermal process , 2004 .

[12]  L. Qiu,et al.  Controlled growth of three morphological structures of magnesium hydroxide nanoparticles by wet precipitation method , 2004 .

[13]  Xian‐Wen Wei,et al.  Microwave-assisted synthesis of fibre-like Mg(OH)2 nanoparticles in aqueous solution at room temperature , 2004 .

[14]  Aharon Gedanken,et al.  Using sonochemistry for the fabrication of nanomaterials. , 2004, Ultrasonics sonochemistry.

[15]  Puneet Misra,et al.  Nano-like magnesium oxide films and its significance in optical fiber humidity sensor , 2004 .

[16]  Weimin Zhang,et al.  Solvothermal synthesis of Mg(OH)2 nanotubes using Mg10(OH)18Cl2·5H2O nanowires as precursors , 2003 .

[17]  A. Richard Horrocks,et al.  A review of flame retardant polypropylene fibres , 2003 .

[18]  Jun‐Jie Zhu,et al.  Sonochemical preparation of HgSe nanoparticles by using different reductants , 2003 .

[19]  Hongyuan Chen,et al.  Controllable synthesis of nanocrystalline gold assembled whiskery structures via sonochemical route , 2003 .

[20]  Hongyuan Chen,et al.  Sonochemical fabrication and characterization of stibnite nanorods. , 2003, Inorganic chemistry.

[21]  N. Ming,et al.  Sonochemical method for the synthesis of antimony sulfide microcrystallites with controllable morphology , 2003 .

[22]  T. Osaka,et al.  Particle size and performance of SnS2 anodes for rechargeable lithium batteries , 2003 .

[23]  Y. Gofer,et al.  A novel ultrasound-assisted approach to the synthesis of CdSe and CdS nanoparticles , 2003 .

[24]  M. Reuter,et al.  Conversion of magnesium fluoride to magnesium hydroxide , 2003 .

[25]  Y. Qian,et al.  Sonochemical synthesis of nanocrystalline lead chalcogenides: PbE (E = S, Se, Te) , 2003 .

[26]  Rudi Cloots,et al.  MORPHOLOGICAL STUDY OF MAGNESIUM HYDROXIDE NANOPARTICLES PRECIPITATED IN DILUTE AQUEOUS SOLUTION , 2003 .

[27]  Yadong Li,et al.  Formation of rod-like Mg(OH)2 nanocrystallites under hydrothermal conditions and the conversion to MgO nanorods by thermal dehydration , 2002 .

[28]  K. Klabunde,et al.  Metal Oxide Nanoparticles as Bactericidal Agents , 2002 .

[29]  A. Gedanken,et al.  Ultrasonically controlled deposition-precipitation: Co-Mo HDS catalysts deposited on wide-pore MCM material , 2001 .

[30]  Hai-Yan Wang,et al.  Nano-MgO: novel preparation and application as support of Ni catalyst for CO2 reforming of methane , 2001 .

[31]  O. Yamamoto,et al.  Change in antibacterial characteristics with doping amount of ZnO in MgO–ZnO solid solution , 2000 .

[32]  G. Stucky,et al.  Preparation of Noble Metal Nanowires Using Hexagonal Mesoporous Silica SBA-15 , 2000 .

[33]  Cheng Wang,et al.  Preparation of Mg(OH)2 Nanorods , 2000 .

[34]  Chia-Chun Chen,et al.  Simple Solution-Phase Synthesis of Soluble CdS and CdSe Nanorods , 2000 .

[35]  J. Sawai,et al.  Antibacterial characteristics of magnesium oxide powder , 2000 .

[36]  Kenneth S. Suslick,et al.  Sonoluminescence temperatures during multi-bubble cavitation , 1999, Nature.

[37]  Jiangtao Hu,et al.  Chemistry and Physics in One Dimension: Synthesis and Properties of Nanowires and Nanotubes , 1999 .

[38]  M. El-Sayed,et al.  Thermal Reshaping of Gold Nanorods in Micelles , 1998 .

[39]  N. Miyoshi,et al.  EPR Spin-Trapping Study of the Sonolysis of H2O/D2O Mixtures: Probing the Temperatures of Cavitation Regions , 1995 .

[40]  M. Sugimoto Amorphous characteristics in spinel ferrites containing glassy oxides , 1994 .

[41]  C. A. Estrada,et al.  Synthesis and characterization of ultra-thin MgO films on Mo(100) , 1991 .

[42]  K. Suslick,et al.  The sonochemical hot spot , 1987 .

[43]  A. Morsali,et al.  Direct ultrasonic-assisted synthesis of sphere-like nanocrystals of spinel Co3O4 and Mn3O4. , 2009, Ultrasonics sonochemistry.

[44]  P. Ding,et al.  Preparation and characterization of Mg(OH)2 nanoparticles and flame-retardant property of its nanocomposites with EVA , 2003 .

[45]  George L. Marchin,et al.  Nanoscale Powders and Formulations with Biocidal Activity Toward Spores and Vegetative Cells of Bacillus Species, Viruses, and Toxins , 2002, Current Microbiology.

[46]  S. Schwendeman,et al.  Comparison of the effects of Mg(OH)2 and sucrose on the stability of bovine serum albumin encapsulated in injectable poly(D,L-lactide-co-glycolide) implants. , 2002, Biomaterials.

[47]  A. Gedanken,et al.  Synthesis of morphologically controlled lanthanumcarbonate particles using ultrasound irradiation , 2001 .

[48]  K. Suslick,et al.  Effect of cavitation conditions on amorphous metal synthesis , 1992 .

[49]  K. Suslick,et al.  Sonochemical synthesis of amorphous iron , 1991, Nature.