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INVESTIGATION OF THE ELECTROCHEMICAL PROPERTIES OF HIGHLY POROUS CARBON MATERIALS WITH METAL HYDROXIDE TO PRODUCE COMPOSITED ELECTRODES WITH A HIGH CAPACITY

Abstract

The paper shows the possibility of increasing the capacity characteristics of composite electrodes Ni(OH)2/C, synthesized on the basis of a highly porous carbon material (HPCM). It is known that the introduction of Ni(OH)2 in the carbon materials results in increased capacity.

About the Authors

A. V. Puzynin
Institute of Coal Chemistry and Material Science of the Siberian Branch of the RAS
Russian Federation
Andrey V. Puzynin – Candidate of Physics and Mathematics, Researcher at the Laboratory of Energy Compounds and Nanocomposites


A. V. Samarov
Institute of Coal Chemistry and Material Science of the Siberian Branch of the RAS
Russian Federation

Alexander V. Samarov – Candidate of Chemistry, Researcher at the Laboratory of High Temperature Processes of Carbon Materials and Coal Chemistry 



A. N. Voropay
Institute of Coal Chemistry and Material Science of the Siberian Branch of the RAS
Russian Federation
Alexander N. Voropay – post-graduate student 


A. Р. Kozlov
Institute of Coal Chemistry and Material Science of the Siberian Branch of the RAS
Russian Federation
Козлов Алексей Петрович – кандидат химических наук, ученый секретарь 


Ch. N. Barnakov
Institute of Coal Chemistry and Material Science of the Siberian Branch of the RAS
Russian Federation
Chingiz N. Barnakov – Doctor of Chemistry, Head of the Laboratory of High Temperature Processes of Carbon Materials and Coal Chemistry


Z. R. Ismagilov
Institute of Coal Chemistry and Material Science of the Siberian Branch of the RAS
Russian Federation

Zinfer R. Ismagilov – Corresponding Member of the Russian Academy of Sciences, Professor, Director of the Institute of Coal Chemistry and Material Science of the Siberian Branch of the RAS



References

1. Zhang J., Kong L.-B., Cai J.-J., Li H., Luo Y.-C., Kang, L. Hierarchically porous nickel hydroxide/mesoporous carbon composite materials for electrochemical capacitors // Microporous Mesoporous Materials. 2010. Vol. 132. P. 154 – 162.

2. Huang Q., Wang X., Li J., Dai Ch., Gambo S., Sebastian P. J. Nickel hydroxide/activated carbon composite electrodes for electrochemical capacitors, J. Power Sources. 2007. Vol. 164. P. 425 – 429.

3. Patent RU 2206394. Method of preparing nanostructured carbon material / Barnakov Ch. N.; Seit-Ablaeva S. K.; Kozlov A. P. et.al.

4. Samarov A. V., Barnakov C. N., Kozlov A. P., Ismagilov Z. R. Properties of nanoporous carbon material with one-dimensional conductivity // Solid Fuel Chemistry. 2012. № 5. P. 297 – 304.

5. Mateishina Yu G., Ulikhin A. S., Samarov A. V., Barnakov Ch. N., Uvarov N. F. Nanoporous carbon-based electrode materials for supercapacitors // Solid State Ionics. 2013. V. 251. P. 59 – 61.


Review

For citations:


Puzynin A.V., Samarov A.V., Voropay A.N., Kozlov A.Р., Barnakov Ch.N., Ismagilov Z.R. INVESTIGATION OF THE ELECTROCHEMICAL PROPERTIES OF HIGHLY POROUS CARBON MATERIALS WITH METAL HYDROXIDE TO PRODUCE COMPOSITED ELECTRODES WITH A HIGH CAPACITY. SibScript. 2014;(3-3):238-241. (In Russ.)

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ISSN 2949-2122 (Print)
ISSN 2949-2092 (Online)