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Nanoparticles mechanochemical synthesis

T. Tsuzuki, P. G. McCormick, Mechanochemical Synthesis of Niobium Pentoxide Nanoparticles, Mater. Trans., 2001, 42 (8), 1623. [Pg.434]

The mechanical activation and mechanochemical synthesis as the direction of solid-phase synthesis has been developing for over a century. Synthesis of nanoparticles has become popular due to development of new attrition mills and other devises for materials grinding under high mechanical energy conditions. The best results in mechanochemistry and mechanoactivation have been achieved in scientific groups of P.Y. Butyagin and V.V. Boldyrev [24, 25]. [Pg.302]

Takuya T, Paul GM. Mechanochemical synthesis of nanoparticles. J Mater Sci 2004 39 5143-6. [Pg.532]

Satoshi O, Akira K, Hirofumi S, Kazuyoshi S, Hiroya A, Makio N. Rapid mechanochemical synthesis of fine barium titanate nanoparticles. 2008 62 2957-59. [Pg.532]

Pavlovic MB, Jovalekic C, Nicohc AS, Manojlovic D, Sojic N. Soft mechanochemical synthesis of MgFc204 nanoparticles from the mixture of a-Fc203 with Mg(OH)2 and Fe (0H)3 with Mg(OH)2. 2010 26 968-74. [Pg.532]

Within the top-down methods, mechanochemical synthesis can be used to produce nanoparticles embedded in a matrix that avoids agglomeration and is subsequently washed away the method has been successfully applied to prepare different oxides, such as AI2O3, Zr02, Cr20s, SnO, ZnO, and so on. [Pg.18]

Palaniandy, S. and Jamil, N.H. (2009) Influence of milling conditions on the mechanochemical synthesis of CaTiOa nanoparticles. /. Alloys Compd., 476, 894-902. [Pg.21]

Metal-Organic Framework Materials covers topics describing recent advances made by top researchers in MOFs including nanoparticles and nanoscale frameworks, mesoporous frameworks, photoreactive frameworks, polyrotaxane frameworks, and even edible frameworks, as well as functionalized frameworks based on porphyrins, fluorine, and alumimun. In addition, the volume features aspects on mechanochemical synthesis and post-synthetic modification, which provide discussions on new vistas... [Pg.588]

Tsuzuki, T., and McCormick, PG., Synthesis of CrjOj nanoparticles by mechanochemical processing, Acta Mater, 48, 2795, 2000. [Pg.568]

M. Salari, S. M. Mousavi khoie, P. Marashi, M. Rezaee, Synthesis of TiO Nanoparticles via a Novel Mechanochemical Method. Journal of Alloys and Compounds 2009,469, 386-390. [Pg.215]

McCormick, P.G., Tsuzuki, T. Recent developments in mechanochemical nanoparticles synthesis. Mater. Sd. Fomm 386-388, 377-386 (2002)... [Pg.359]

Ito, T., Zhting, Q., Stuto, F. Synthesis of perovskite-type lanthanum cobalt oxide nanoparticles by metins of mechanochemical treatment. Powder Technol. 143-144, 170-173 (2004)... [Pg.359]

The fifth chapter presents detailed review of technological aspects of ferroic nanoparticles fabrication. We present the detailed information about methods of chemical synthesis of above nanoparticles. Among them are hydrothermal, sol-gel and coprecipitation methods. We also present the method of unstable compounds decomposition. The combined synthesis methods have also been discussed. Namely, we consider mechanochemical, sonochemical and template synthesis methods. The main idea of these methods is to control the dispersity and agglomeration degree of nanoparticles by inspection of nucleation and growth of a new phase. Self-assembly and self-organization of ferroic nanoparticles as well as composites formation on their base by means of colloidal processes have also been considered. [Pg.386]

Iwasaki, T. Kosaka, K Yabuuchi, T. Watano, S. Yanagida, T. Kawai, T. (2009). Novel mechanochemical process for synthesis of magnetite nanoparticles using coprecipitation method. Ado. Powder Technol, 20, 521-528. [Pg.254]


See other pages where Nanoparticles mechanochemical synthesis is mentioned: [Pg.214]    [Pg.215]    [Pg.543]    [Pg.543]    [Pg.599]    [Pg.48]    [Pg.236]    [Pg.115]    [Pg.173]    [Pg.38]    [Pg.38]    [Pg.148]    [Pg.295]    [Pg.304]    [Pg.306]    [Pg.286]    [Pg.252]    [Pg.408]    [Pg.409]    [Pg.321]    [Pg.428]    [Pg.474]   
See also in sourсe #XX -- [ Pg.18 ]




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