Home / Publications / Investigation of the carbon monoxide resistance of platinum catalysts prepared via pulse alternating current technique

Investigation of the carbon monoxide resistance of platinum catalysts prepared via pulse alternating current technique

Nikita Andreevich Faddeev 1
Nikita Andreevich Faddeev
Alexandra Borisovna Kuriganova 1
Alexandra Borisovna Kuriganova
Igor Nikolaevich Leontyev 1
Igor Nikolaevich Leontyev
Nina Vladimirovna Smirnova 1
Nina Vladimirovna Smirnova
1 Platov South-Russian State Polytechnic University, Novocherkassk, Russian Federation
Published 2024-04-22
CommunicationVolume 34, Issue 3, 442-445
4
Share
Cite this
GOST
 | 
Cite this
GOST Copy
Faddeev N. A. et al. Investigation of the carbon monoxide resistance of platinum catalysts prepared via pulse alternating current technique // Mendeleev Communications. 2024. Vol. 34. No. 3. pp. 442-445.
GOST all authors (up to 50) Copy
Faddeev N. A., Kuriganova A. B., Leontyev I. N., Smirnova N. V. Investigation of the carbon monoxide resistance of platinum catalysts prepared via pulse alternating current technique // Mendeleev Communications. 2024. Vol. 34. No. 3. pp. 442-445.
RIS
 | 
Cite this
RIS Copy
TY - JOUR
DO - 10.1016/j.mencom.2024.04.042
UR - https://mendcomm.colab.ws/publications/10.1016/j.mencom.2024.04.042
TI - Investigation of the carbon monoxide resistance of platinum catalysts prepared via pulse alternating current technique
T2 - Mendeleev Communications
AU - Faddeev, Nikita Andreevich
AU - Kuriganova, Alexandra Borisovna
AU - Leontyev, Igor Nikolaevich
AU - Smirnova, Nina Vladimirovna
PY - 2024
DA - 2024/04/22
PB - Mendeleev Communications
SP - 442-445
IS - 3
VL - 34
ER -
BibTex
 | 
Cite this
BibTex (up to 50 authors) Copy
@article{2024_Faddeev,
author = {Nikita Andreevich Faddeev and Alexandra Borisovna Kuriganova and Igor Nikolaevich Leontyev and Nina Vladimirovna Smirnova},
title = {Investigation of the carbon monoxide resistance of platinum catalysts prepared via pulse alternating current technique},
journal = {Mendeleev Communications},
year = {2024},
volume = {34},
publisher = {Mendeleev Communications},
month = {Apr},
url = {https://mendcomm.colab.ws/publications/10.1016/j.mencom.2024.04.042},
number = {3},
pages = {442--445},
doi = {10.1016/j.mencom.2024.04.042}
}
MLA
Cite this
MLA Copy
Faddeev, Nikita Andreevich, et al. “Investigation of the carbon monoxide resistance of platinum catalysts prepared via pulse alternating current technique.” Mendeleev Communications, vol. 34, no. 3, Apr. 2024, pp. 442-445. https://mendcomm.colab.ws/publications/10.1016/j.mencom.2024.04.042.

Keywords

carbon monoxide resistance
fuel cells
hydrogen.
platinum catalysts
pulse alternating current

Abstract

The platinum catalysts based on carbon black and carbon nanotubes supports have been obtained via pulse alternating current technique. The synthesized Pt/C catalysts showed better electric transport characteristics and the carbon monoxide poisoning resistance in comparison with the commercial Pt/C owing to both the size of the platinum nanoparticles and their agglomeration on the support surface, and the morphology of the carbon support.

References

.
Yu. Safronova E., Korchagin O.V., Bogdanovskaya V.A., Yaroslavtsev A.B.
Mendeleev Communications, 2022
.
Kuriganova A.B., Leontyev I.N., Avramenko M.V., Faddeev N.A., Smirnova N.V.
Mendeleev Communications, 2022
.
Rietveld refinement of Debye–Scherrer synchrotron X-ray data from Al2O3
Thompson P., Cox D.E., Hastings J.B.
Journal of Applied Crystallography, 1987
.
Influence of particle agglomeration on the catalytic activity of carbon-supported Pt nanoparticles in CO monolayer oxidation
Maillard F., Schreier S., Hanzlik M., Savinova E.R., Weinkauf S., Stimming U.
Physical Chemistry Chemical Physics, 2005
.
Size dependence of the lattice parameters of carbon supported platinum nanoparticles: X-ray diffraction analysis and theoretical considerations
Leontyev I.N., Kuriganova A.B., Leontyev N.G., Hennet L., Rakhmatullin A., Smirnova N.V., Dmitriev V.
RSC Advances, 2014
.
Carbon supports for low-temperature fuel cell catalysts
Antolini E.
Applied Catalysis B: Environmental, 2009
.
Catalytic Activity of Carbon-Supported Pt Nanoelectrocatalysts. Why Reducing the Size of Pt Nanoparticles is Not Always Beneficial
Leontyev I.N., Belenov S.V., Guterman V.E., Haghi-Ashtiani P., Shaganov A.P., Dkhil B.
Journal of Physical Chemistry C, 2011
.
Materials, technological status, and fundamentals of PEM fuel cells – A review
Wang Y., Ruiz Diaz D.F., Chen K.S., Wang Z., Adroher X.C.
Materials Today, 2020
.
Electro-oxidation of CO(chem) on Pt nanosurfaces: solution of the peak multiplicity puzzle.
Urchaga P., Baranton S., Coutanceau C., Jerkiewicz G.
Langmuir, 2011
.
CO monolayer oxidation on Pt nanoparticles: Further insights into the particle size effects
Maillard F., Savinova E.R., Stimming U.
Journal of Electroanalytical Chemistry, 2007
.
CO electrooxidation on carbon supported platinum nanoparticles: Effect of aggregation
López-Cudero A., Solla-Gullón J., Herrero E., Aldaz A., Feliu J.M.
Journal of Electroanalytical Chemistry, 2010
.
A Comparison of “Bottom-Up” and “Top-Down” Approaches to the Synthesis of Pt/C Electrocatalysts
Kuriganova A., Faddeev N., Gorshenkov M., Kuznetsov D., Leontyev I., Smirnova N.
Processes, 2020
.
The influence of pore size distribution on the oxygen reduction reaction performance in nitrogen doped carbon microspheres
Ferrero G.A., Preuss K., Fuertes A.B., Sevilla M., Titirici M.-.
Journal of Materials Chemistry A, 2016
.
Influence of Carbon Support on Catalytic Layer Performance of Proton Exchange Membrane Fuel Cells
Novikova K., Kuriganova A., Leontyev I., Gerasimova E., Maslova O., Rakhmatullin A., Smirnova N., Dobrovolsky Y.
Electrocatalysis, 2017
.
Pt Nanoparticles Supported on Niobium-Doped Tin Dioxide: Impact of the Support Morphology on Pt Utilization and Electrocatalytic Activity
Cognard G., Ozouf G., Beauger C., Jiménez-Morales I., Cavaliere S., Jones D., Rozière J., Chatenet M., Maillard F.
Electrocatalysis, 2016
.
A comprehensive review on hydrogen production from coal gasification: Challenges and Opportunities
Midilli A., Kucuk H., Topal M.E., Akbulut U., Dincer I.
International Journal of Hydrogen Energy, 2021
.
Environmental aspects of fuel cells: A review
Abdelkareem M.A., Elsaid K., Wilberforce T., Kamil M., Sayed E.T., Olabi A.
Science of the Total Environment, 2021
.
Carbon monoxide poisoning and mitigation strategies for polymer electrolyte membrane fuel cells – A review
Valdés-López V.F., Mason T., Shearing P.R., Brett D.J.
Progress in Energy and Combustion Science, 2020