The kinetics of change of characteristics dispersity of the aluminum hydroxide obtained by electrochemical method, during storage has been investigated of method laser diffraction. It is shown that the dispersity of the aluminum hydroxide depends upon the chemical nature and the conditions of obtaining.
гидроксид алюминия, электрохимический способ, дисперсность, лазерная дифракция, aluminum hydroxide, electrochemical method, dispersity, laser diffraction
1. Gusev A.I. Nanomaterialy, nanostruktury, nanotehnologii - M.:FIZMATLIT, 2007. - 416 s.
2. Dresvyannikov A.F., Petrova E.V., Cyganova M.A. // Zhurnal fizicheskoy himii. - 2010. - T.84, №4. - S.727-732.
3. Hannink R.H.J. Nanostrukture control of materials/ R.H.J. Hannink, A.J. Hill. -New York: Woodhead Publishing Limited. - 2006. - 488 p.
4. Kotov Yu. A., Bagazeev A. V., Medvedev A. I., Murzakaev A. M., Demina T. M., Shtol'c A. K. // Rossiyskie nanotehnologii. - 2007. - T. 2, № 7-8.-S.14-15.
5. Yu.D. Tret'yakov, A.V. Lukashin, A.A. Eliseev // Uspehi himii. - 2004. - T.73, № 9. - S. 974-998.
6. ISO 13320-1:1999. Particle size analysis. Laser diffraction methods. Pt. 1: General principles. ; ISO 22412:2008. Particle size analysis. Dynamic light scattering (DLS).
7. Acosta S., Corriu R.G.P., Leclerg D., Leferve P., Mutin P.H., Vioux A. // J. Non-Cryst. Solids. - 1994. - V.170. - №3. - P.234-242.
8. Kul'ko E.V., Ivanova A.S., Litvak G.S., Kryukova G.N., Cybulya S.V. // Kinetika i kataliz. - 2004. - T.45. - №5. - S.754-762.
9. Shepeleva M.N., Fenelonov V.B., Shkrabina R.A., Moroz E.M. // Kinetika i kataliz. - 1986. - T.32. - №5. - S.1202-1207