A method for the controlled self-assembly of nanoscale ferrocyanides of transition metals MFeCN, such as cobalt (CoFeCN), nickel (NiFeCN) and copper (CuFeCN), in the role of cathode materials by layer-by-layer synthesis (LbL) on a conducting support was proposed. The structure and morphology of the compounds were studied by X-ray diffraction analysis, scanning electron microscopy with energy dispersive X-Ray analysis (EDX) and ATR-FTIR analysis. The effect of synthesis conditions (precursor of transition metals, number of cycles of layer deposition) on the particle morphology and the quality of the films obtained was shown. The electrochemical behavior of cathode materials was studied in a solution of magnesium salt by cyclic voltammetry. On an example nickel ferrocyanide was proved that the synthesis method used allows controlling the self-assembly of cathode materials based on ferrocyanides of transition metals.
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15 January 2019
STATE-OF-THE-ART TRENDS OF SCIENTIFIC RESEARCH OF ARTIFICIAL AND NATURAL NANOOBJECTS, STRANN-2018
17–19 October 2018
Moscow, Russia
Research Article|
January 15 2019
Layer-by-layer synthesis of ferrocyanides of transition metals, as a new method of controlled self-assembly of cathodic materials
Anastasia V. Laptenkova;
Anastasia V. Laptenkova
b)
Institute of Chemistry, Saint-Petersburg State University
, University Ave., 26, Peterhof, Saint-Petersburg, 198504 Russia
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Valery P. Tolstoy;
Valery P. Tolstoy
Institute of Chemistry, Saint-Petersburg State University
, University Ave., 26, Peterhof, Saint-Petersburg, 198504 Russia
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Artem A. Selyutin
Artem A. Selyutin
a)
Institute of Chemistry, Saint-Petersburg State University
, University Ave., 26, Peterhof, Saint-Petersburg, 198504 Russia
a)Corresponding author: a.selyutin@spbu.ru
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a)Corresponding author: a.selyutin@spbu.ru
AIP Conf. Proc. 2064, 030008 (2019)
Citation
Anastasia V. Laptenkova, Valery P. Tolstoy, Artem A. Selyutin; Layer-by-layer synthesis of ferrocyanides of transition metals, as a new method of controlled self-assembly of cathodic materials. AIP Conf. Proc. 15 January 2019; 2064 (1): 030008. https://doi.org/10.1063/1.5087670
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