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Synthetic routes to phosphorus-doped graphene nanoflakes

Evgeniya V Suslova 1
Evgeniya V Suslova
Sergey V Yakovlev 2
Sergey V Yakovlev
Andrey V Desyatov 3
Andrey V Desyatov
Dmitry N Stolbov 1
Dmitry N Stolbov
Denis Aleksandrovich Shashurin 4
Denis Aleksandrovich Shashurin
Natalia N Kuznetsova 1
Natalia N Kuznetsova
Serguei Vyacheslavovich Savilov 1, 2
Serguei Vyacheslavovich Savilov
1 Department of Chemistry, M.V. Lomonosov Moscow State University, 119991 Moscow, Russian Federation
4 Department of Fundamental Medicine, M. V. Lomonosov Moscow State University, 119991 Moscow, Russian Federation
Published 2025-01-24
CommunicationVolume 35, Issue 1, 47-49
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Suslova E. V. et al. Synthetic routes to phosphorus-doped graphene nanoflakes // Mendeleev Communications. 2025. Vol. 35. No. 1. pp. 47-49.
GOST all authors (up to 50) Copy
Suslova E. V., Yakovlev S. V., Maslakov K. I., Desyatov A. V., Stolbov D. N., Shashurin D. A., Kuznetsova N. N., Savilov S. V. Synthetic routes to phosphorus-doped graphene nanoflakes // Mendeleev Communications. 2025. Vol. 35. No. 1. pp. 47-49.
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TY - JOUR
DO - 10.71267/mencom.7531
UR - https://mendcomm.colab.ws/publications/10.71267/mencom.7531
TI - Synthetic routes to phosphorus-doped graphene nanoflakes
T2 - Mendeleev Communications
AU - Suslova, Evgeniya V
AU - Yakovlev, Sergey V
AU - Maslakov, Konstantin Igorevich
AU - Desyatov, Andrey V
AU - Stolbov, Dmitry N
AU - Shashurin, Denis Aleksandrovich
AU - Kuznetsova, Natalia N
AU - Savilov, Serguei Vyacheslavovich
PY - 2025
DA - 2025/01/24
PB - Mendeleev Communications
SP - 47-49
IS - 1
VL - 35
ER -
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@article{2025_Suslova,
author = {Evgeniya V Suslova and Sergey V Yakovlev and Konstantin Igorevich Maslakov and Andrey V Desyatov and Dmitry N Stolbov and Denis Aleksandrovich Shashurin and Natalia N Kuznetsova and Serguei Vyacheslavovich Savilov},
title = {Synthetic routes to phosphorus-doped graphene nanoflakes},
journal = {Mendeleev Communications},
year = {2025},
volume = {35},
publisher = {Mendeleev Communications},
month = {Jan},
url = {https://mendcomm.colab.ws/publications/10.71267/mencom.7531},
number = {1},
pages = {47--49},
doi = {10.71267/mencom.7531}
}
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Suslova, Evgeniya V., et al. “Synthetic routes to phosphorus-doped graphene nanoflakes.” Mendeleev Communications, vol. 35, no. 1, Jan. 2025, pp. 47-49. https://mendcomm.colab.ws/publications/10.71267/mencom.7531.

Keywords

graphene nanoflakes
mesopores
phosphorous-doped
porous material
post-doping
X-ray photoelectron spectroscopy

Abstract

Phosphorous-doped graphene nanoflakes (GNFs) were first synthesized by several methods, including pyrolysis of PPh3 solution in toluene, post-treatment of GNFs with H3PO4 and hydrothermal post-treatment of GNFs or oxidized GNFs with PPh3 solution in DMF. The products were characterized by scanning and transmission electron microscopy, low-temperature nitrogen physisorption and X-ray photoelectron spectroscopy. Correlations between composition and structural features were revealed.

Funders

Russian Science Foundation
22-15-00072

References

1.
Jellyfish-like few-layer graphene nanoflakes: Synthesis, oxidation, and hydrothermal N-doping
Chernyak S.A., Podgornova A.M., Arkhipova E.A., Novotortsev R.O., Egorova T.B., Ivanov A.S., Maslakov K.I., Savilov S.V., Lunin V.V.
Applied Surface Science, 2018
2.
Pyrolytic synthesis and characterization of N-doped carbon nanoflakes for electrochemical applications
Savilov S.V., Arkhipova E.A., Ivanov A.S., Maslakov K.I., Shen Z., Aldoshin S.M., Lunin V.V.
Materials Research Bulletin, 2015
3.
Nanoscale carbon materials from hydrocarbons pyrolysis: Structure, chemical behavior, utilisation for non-aqueous supercapacitors
Savilov S.V., Strokova N.E., Ivanov A.S., Arkhipova E.A., Desyatov A.V., Hui X., Aldoshin S.M., Lunin V.V.
Materials Research Bulletin, 2015
5.
Phosphorus-Doped Graphene Electrocatalysts for Oxygen Reduction Reaction
Zhan X., Tong X., Gu M., Tian J., Gao Z., Ma L., Xie Y., Chen Z., Ranganathan H., Zhang G., Sun S.
Nanomaterials, 2022
6.
Bulk Phosphorus-Doped Graphitic Carbon
Billeter E., McGlamery D., Aebli M., Piveteau L., Kovalenko M.V., Stadie N.P.
Chemistry of Materials, 2018
7.
Phosphorus‐Functionalized Graphene for Lithium‐Ion Capacitors with Improved Power and Cyclability
Moreno‐Fernández G., Granados‐Moreno M., Gómez‐Urbano J.L., Carriazo D.
Batteries & Supercaps, 2020
8.
Pyrolytic synthesis of nitrogen and silicon doped graphene nanoflakes
Stolbov D.N., Chernyak S.A., Maslakov K.I., Kuznetsova N.N., Savilov S.V.
Russian Chemical Bulletin, 2022
12.
Nitrogen–phosphorus doped graphitic nano onion-like structures: experimental and theoretical studies
Martínez-Iniesta A.D., Morelos-Gómez A., Muñoz-Sandoval E., López-Urías F.
RSC Advances, 2021
13.
Characterization of phosphorus-doped multiwalled carbon nanotubes
Larrude D.G., Maia da Costa M.E., Monteiro F.H., Pinto A.L., Freire F.L.
Journal of Applied Physics, 2012
14.
Synthesis of Phosphorus-Doped Graphene and its Wide Potential Window in Aqueous Supercapacitors
Wen Y., Wang B., Huang C., Wang L., Hulicova-Jurcakova D.
Chemistry - A European Journal, 2014
15.
Production, characterization and application of activated carbon from brewer’s spent grain lignin
Mussatto S.I., Fernandes M., Rocha G.J., Órfão J.J., Teixeira J.A., Roberto I.C.
Bioresource Technology, 2010
16.
Characterization and application of activated carbon produced by H3PO4 and water vapor activation
Budinova T., Ekinci E., Yardim F., Grimm A., Björnbom E., Minkova V., Goranova M.
Fuel Processing Technology, 2006
18.
Preparation of activated carbon from mangrove propagule waste by H3PO4 activation for Pb2+ adsorption
Astuti W., Hermawan R.A., Mukti H., Sugiyono N.R.
AIP Conference Proceedings, 2017
20.
A high-performance 3D phosphorus-doped graphene oxide adsorbent for imipramine wastewater treatment
Ting Tee W., En Yong J., Chua J., Yung Li Loh N., Yan Zhang Hiew B., Gan S., Yee Lee L.
Separation and Purification Technology, 2024
22.
Gd2O3–Carbon Nanoflakes (CNFs) as Contrast Agents for Photon-Counting Computed Tomography (PCCT)
Shashurin D.A., Suslova E.V., Rozhkov V.A., Sotenskii R.V., Medvedev O.S., Shelkov G.A.
Russian Journal of Applied Chemistry, 2023