The article describes the nickel surface treatment conditions in aqueous solutions of a mixture of CuCl2 and NaCl salts. This investigation reveals the occurrence of selective etching on the nickel surface, facilitated by a galvanic replacement reaction (GRR). The etching process gives rise to the formation of arrays of labyrinths with walls of nickel nanorods with a diameter ranging from 10 to 50 nanometers and a length of up to 0.5 micrometers are formed, located primarily in the direction perpendicular to the surface. The experimental results obtained have enabled the formulation of hypotheses concerning the sequence of chemical reactions occurring on the surface and the role of the A. Turing diffusion-chemical model in the formation of the observed labyrinths. It has been demonstrated that the presence of such labyrinths on the surface of nickel leads to a decrease in the angles of its wetting with water.
Translated title of the contributionЭффект формирования лабиринтообразных массивов никелевых наностержней на поверхности никеля в результате реакции гальванического замещения в водных растворах смеси CuCl2 и NaCl
Original languageEnglish
Pages (from-to)700-705
Number of pages6
JournalNanosystems: Physics, Chemistry, Mathematics
Volume16
Issue number5
DOIs
StatePublished - 5 Nov 2025

ID: 144236949