
The Development of the Atomic Theory of the Formation of a New Phase in Adsorbing Layers in an External Electric Field
Author(s) -
E. Ph. Shtapenko,
V. A. Zabludovsky,
V. V. Tytarenko
Publication year - 2015
Publication title -
fìzika ì hìmìâ tverdogo tìla
Language(s) - English
Resource type - Journals
eISSN - 2309-8589
pISSN - 1729-4428
DOI - 10.15330/pcss.16.3.520-523
Subject(s) - nucleation , electric field , classical nucleation theory , phase (matter) , cathode , field (mathematics) , overvoltage , chemical physics , thermodynamics , materials science , chemistry , condensed matter physics , physics , quantum mechanics , mathematics , pure mathematics , power (physics)
The article deals with the nucleation rate in the development of the atomic theory. The expression for the calculation of heterogeneous nucleation rate in adsorbed layers in an external electric field, which allows for the stability criterion nucleus of a new phase. For example, the values of nickel electrocrystallisation nucleation rate in the development of the atomic theory and the classical theory of nucleation. A comparison with the experimental values. It is shown that at high overvoltage at the cathode developed atomic theory gives values of the nucleation rate closer to the experimental.