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pro vyhledávání: '"R. Massart"'
Akademický článek
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Autor:
Y. Razvodovsky, A. Borodinsky, M. Pascual-Mora, A. Pla, J. Renau-Piqueras, C. Guerri, C. Haass-Koffler, G. Kenna, A. Henry, S. Bartlett, M. Dudek, U. Abo-Ramadan, P. Hyytia, P. Maccioni, G. L. Gessa, A. Thomas, P. Malherbe, C. Mugnaini, F. Corelli, G. Colombo, D. Vargiolu, B. Loi, C. Lobina, A. Zaru, M. Carai, A. Riva, E. Bombardelli, P. Morazzoni, N. Osna, K. Kharbanda, B. McVicker, C. Casey, D. Mercer, M. Naassila, R. Legastelois, S. Alaux-Cantin, H. Houchi, B. Botia, P. S. Pronko, T. I. Khomich, V. I. Satanovskaya, L. M. Karaedova, A. N. Borodinsky, R. E. Lis, K. Feltmann, P. Steensland, J. C. Ledesma, P. Bali, C. Gonzalez, C. Aragon, T. Etelalahti, P. Eriksson, A. Todkar, L. Granholm, E. Comasco, L. Oreland, S. Hodgins, K. Nilsson, I. Nylander, K. Phedina, S. Zimatkin, M. Smutek, J. R. Parkitna, R. Przewlocki, P. Janeczek, G. Van Steenwyk, J. Lewohl, R. Napper, M. Hopping, E. Stragier, R. Massart, M. Hamon, L. Lanfumey
Publikováno v:
Alcohol and Alcoholism. 48:i41-i46
Akademický článek
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Publikováno v:
J. Magn. Magn. Mat.
J. Magn. Magn. Mat., 2007, 308, pp.10-14
J. Magn. Magn. Mat., 2007, 308, pp.10-14
This paper describes the synthesis of a magnetic and conducting liquid consisting of cobalt nanoparticles dispersed in mercury. The magnetic nanoparticles are obtained in one step by the electroreduction of a cobalt(II) solution on mercury. These par
Publikováno v:
Journal of Molecular Liquids. 83:243-254
A dispersion of iron in mercury can be prepared by electrolytic reduction of colloidal solutions of iron oxides in a supporting electrolyte. This reduction step, which leads to a conductive and magnetic fluid is studied by cyclic voltammetry and cont
Publikováno v:
Journal of Molecular Liquids. 83:217-232
New aqueous magnetic fluids constituted of nickel-zinc ferrite particles are synthesized using a soft chemical approach. Ferrofluids and solid particles are characterized using several techniques : chemical analysis, X-ray diffraction, transmission e
Autor:
M Rivoire, Prem S. Goyal, Vinod K. Aswal, Ramesh V. Upadhyay, R. V. Mehta, F Gendron, R Massart, D Zins
Publikováno v:
Journal of Magnetism and Magnetic Materials. 201:73-76
Electron spin resonance measurements are analysed for Mn}Zn ionic ferro#uid. The temperature dependence of the "eld-cooled samples resonance"eld exhibits two distinct region for „’40 K and „(40 K. The former is interpreted in terms of uniaxial
Publikováno v:
The European Physical Journal Applied Physics. 5:321-325
Ferrofluids are colloidal solutions of iron oxide magnetic nanoparticles in either a polar or no polar liquid. We present here two biological applications using maghemite (γFe 2 O 3 ) ferrofluids: magnetic cell sorting and magnetocytolysis. The firs
Publikováno v:
Journal of Materials Science. 34:1253-1260
A Mn-Zn ferrite ferrofluid is produced by chemical synthesis. Two different types of ferrofluids, according to the type of carrier liquid, are synthesized: an aqueous cationic ferrofluid and a surfacted hydrocarbon-based one. Ferrite particles are ch
Publikováno v:
Journal of material research
Journal of material research, 1998, 13 (10), pp.2975
Journal of material research, 1998, 13 (10), pp.2975
Nanometric maghemite and cobalt ferrite particles are chemically synthesized. The process produces particles polydisperse in size. The positive charges of their surface allow one to disperse them in aqueous acidic solutions and to obtain dispersions