Electrochemical Formation of “Al–Ni” Composite Coatings from Aluminum Suspension in an Electrolyte Based on a Deep Eutectic Solvent
- Authors: Drovosekov A.B.1, Malkin A.I.1, Stepanova O.A.2
-
Affiliations:
- Frumkin Institute of Physical Chemistry and Electrochemistry, Russian Academy of Sciences, 119071, Moscow, Russia
- Mendeleev Russian University of Chemical Technology, 125047, Moscow, Russia
- Issue: Vol 59, No 1 (2023)
- Pages: 36-38
- Section: НОВЫЕ ВЕЩЕСТВА, МАТЕРИАЛЫ И ПОКРЫТИЯ
- URL: https://j-morphology.com/0044-1856/article/view/663818
- DOI: https://doi.org/10.31857/S0044185622700036
- EDN: https://elibrary.ru/PUCRZT
- ID: 663818
Cite item
Abstract
The possibility of electrochemical formation of Al–Ni composite coatings from an aluminum suspension in an electrolyte based on a deep eutectic solvent has been studied. The composition of the electrolyte was proposed, and the influence of the aluminum content on the composition, structure, and morphology of the coating was studied.
Keywords
About the authors
A. B. Drovosekov
Frumkin Institute of Physical Chemistry and Electrochemistry, Russian Academy of Sciences, 119071, Moscow, Russia
Email: drovosekov_andr@mail.ru
Россия, 119071, Москва, Ленинский проспект, 31, к. 4
A. I. Malkin
Frumkin Institute of Physical Chemistry and Electrochemistry, Russian Academy of Sciences, 119071, Moscow, Russia
Email: drovosekov_andr@mail.ru
Россия, 119071, Москва, Ленинский проспект, 31, к. 4
O. A. Stepanova
Mendeleev Russian University of Chemical Technology, 125047, Moscow, Russia
Author for correspondence.
Email: drovosekov_andr@mail.ru
Россия, 125047, Москва, Миусская площадь, 9
References
- Рогачев А.С., Мукасьян А.С. Горение для синтеза материалов: введение в структурную макрокинетику. М.: Физматлит, 2013. 400 с.
- Мельников В.Э. Современная пиротехника. М.: Наука, 2014. 480 с.
- Arghavanian R., Bostani B., Parvini-Ahmadi N. // Surface Engineering. 2015. V. 31. № 3. P. 189–193.
- Abbott A.P., Ballantynea A., Harrisa R.C., Juma J.A., Ryder K.S., Forrest G. // Electrochimica Acta. 2015. V. 176. P. 718–726.
- Дьяченко Д.И. / Дис. … к-та техн. наук: 02.00.05. Волгоград: Волгоградский государственный университет, 2016. 137 с.
- Wang S., Zou X., Lu Y., Rao S., Xie X., Pang Z., Lu X., Xu Q., Zhou Z. // International J. Hydrogen Energy. 2018. V. 43. № 33. P. 15673–15686.
- Данилов Ф.И., Китыкa А.А., Шайдеров Д.А., Богданов Д.А., Корний С.А., Проценко В.С. // Электронная обработка материалов. 2018. Т. 54. № 3. С. 21–33.
- Lukaczynska M., Mernissi Cherigui E.A., Ceglia A., Van Der Bergh K., Strycker J.D., Terryn H., Ustarroz J. // Electrochimica Acta. 2019. V. 319. P. 690–704.
- Rao S., Zou X., Wang S., Lu Y., Shi T., Hsu H.-Y., Xu Q., Lu X. // Materials Chemistry and Physics. 2019. V. 232. P. 6–15.
- Protsenko V.S., Bogdanov D.A., Korniy S.A., Kityk A.A., Baskevich A.S., Danilov F.I. // International J. Hydrogen Energy. 2019. V. 44. P. 24604–24616.
Supplementary files
