Abstract:
The results of studies on the development of micro-oscillators (MOs) based on the Belousov–Zhabotinsky (BZ) oscillatory chemical reaction are integrated and systematized. The mechanisms of the BZ reaction and the methods of immobilization of the catalyst of the BZ reaction in micro-volumes are briefly discussed. Methods for creating BZ MOs based on water microdroplets in the oil phase and organic and inorganic polymer microspheres are considered. Methods of control and management of the dynamics of BZ MO networks are described, including methods of MO synchronization. The prospects for the design of neural networks of MOs with intelligent-like behaviour are outlined. Such networks present a new area of nonlinear chemistry, including, in particular, the creation of a chemical “computer”.
The bibliography includes 250 references.
Keywords:
micro-volumes and micro-oscillators, Belousov-Zhabotinsky reaction, networks of micro-oscillators, liquid and polymer microspheres.
Citation:
I. L. Mallphanov, V. K. Vanag, “Chemical micro-oscillators based on the Belousov–Zhabotinsky reaction”, Russian Chem. Reviews, 90:10 (2021), 1263–1286
\Bibitem{MalVan21}
\by I.~L.~Mallphanov, V.~K.~Vanag
\paper Chemical micro-oscillators based on the Belousov--Zhabotinsky reaction
\jour Russian Chem. Reviews
\yr 2021
\vol 90
\issue 10
\pages 1263--1286
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\crossref{https://doi.org/10.1070/RCR5009}
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Linking options:
https://www.mathnet.ru/eng/rcr4359
https://doi.org/10.1070/RCR5009
https://www.mathnet.ru/eng/rcr/v90/i10/p1263
This publication is cited in the following 17 articles:
O. V. Lagunova, G. O. Molokanov, O. A. Dikaia, P. V. Shvets, A. Yu. Goikhman, E. G. Chupakhin, Mendeleev Commun., 35:3 (2025), 359–361
Olga V. Lagunova, Evgeny G. Chupakhin, Ilya L. Mallphanov, Pure and Applied Chemistry, 2025
Ilya L. Mallphanov, Vladimir K. Vanag, Anastasia I. Lavrova, Mendeleev Communications, 34:2 (2024), 235
Dmitry A. Safonov, Ilya L. Mallphanov, Alexander V. Sychev, Eugene B. Postnikov, Anastasia I. Lavrova, Journal of Molecular Liquids, 402 (2024), 124723
Ivan S. Proskurkin, Vladimir K. Vanag, Anastasia I. Lavrova, Chaos, Solitons & Fractals, 185 (2024), 115115
Ilya L. Mallphanov, Michail Y. Eroshik, Dmitry A. Safonov, Anastasia I. Lavrova, Gels, 10:9 (2024), 552
Ilya L. Mallphanov, Michail Y. Eroshik, Dmitry A. Safonov, Alexander V. Sychev, Vyacheslav E. Bulakov, Anastasia I. Lavrova, Gels, 10:11 (2024), 727
V. K. Vanag, I. S. Proskurkin, Phys. Chem. Chem. Phys., 25:26 (2023), 17420
O. V. Lagunova, V. K. Vanag, I. L. Mallphanov, Mendeleev Communications, 33:5 (2023), 686
O. O. Voskresenskaya, N. A. Skorik, Kinet Catal, 64:6 (2023), 729
V. K. Vanag, Phys. Usp., 65:5 (2022), 440–452
V. K. Vanag, Chaos, 32:12 (2022), 123108
I. L. Mallphanov, V. K. Vanag, Mendeleev Communications, 32:4 (2022), 507
Th. P. Chatzinikolaou, I.-Angelos Fyrigos, V. Ntinas, S. Kitsios, M.-A. Tsompanas, P. Bousoulas, D. Tsoukalas, A. Adamatzky, G. Ch. Sirakoulis, Electronics, 11:11 (2022), 1683
R. Yoshida, Polym J., 54:7 (2022), 827
V. Chekanov, A. Kovalenko, N. Kandaurova, Coatings, 12:12 (2022), 1901