Аннотация:
A kinetic equation was derived for the mechanochemical preparation of nanosystems by a dilution method; the equation was used to calculate mechanical activation times necessary for the completion of exchange reactions and mass-transfer coefficients in ball milling.
Образец цитирования:
F. Kh. Urakaev, “Mechanochemical synthesis of nanoparticles by a dilution method: derivation of kinetic equations”, Mendeleev Commun., 22:2 (2012), 103–105
Образцы ссылок на эту страницу:
https://www.mathnet.ru/rus/mendc2755
https://www.mathnet.ru/rus/mendc/v22/i2/p103
Эта публикация цитируется в следующих 6 статьяx:
Bijesh Mehta, C. Sasikumar, “Mechanochemical Synthesis of PZT Powders and the Effects of Mechanical Activation on Solid-State Sintering Kinetics”, Trans Indian Inst Met, 76:3 (2023), 849
Andrew W. Tricker, George Samaras, Karoline L. Hebisch, Matthew J. Realff, Carsten Sievers, “Hot spot generation, reactivity, and decay in mechanochemical reactors”, Chemical Engineering Journal, 382 (2020), 122954
Paulo F. M. de Oliveira, Adam A. L. Michalchuk, Julien Marquardt, Torvid Feiler, Carsten Prinz, Roberto M. Torresi, Pedro H. C. Camargo, Franziska Emmerling, “Investigating the role of reducing agents on mechanosynthesis of Au nanoparticles”, CrystEngComm, 22:38 (2020), 6261
F. Kh. Urakaev, M. M. Burkitbaev, B. B. Tatykaev, B. M. Uralbekov, “Mechanochemical synthesis of colloidal silver chloride particles in the NH4Cl–AgNO3–NH4NO3 system”, Colloid J, 77:5 (2015), 641
F. Kh. Urakaev, “Simulation of the Mechanically Induced Self-Propagating Reactions: Theoretical Estimation for MSRs Ignition Time in Zn–S–Sn System”, Combustion Science and Technology, 186:1 (2014), 34
F. Kh. Urakaev, “Mechanochemical Synthesis of Nanoparticles by a Dilution Method: Determination of the Particle Mixing Coefficient in a Ball Mill”, Mendeleev Commun., 22:4 (2012), 215–217