Original Research
Electron paramagnetic resonance study of gadoliniumum doped graphene oxide
R. G. Abaszade
a
A. G. Mammadov
a
E. A. Khanmammadova
a
İ . Y. Bayramov
a
R. A. Namazov
a
Kh. M. Popal
a
S. Z. Melikova
b
R. C. Qas1mov
b
M. A. Bayramov
b
N. İ . Babayeva
c

aAzerbaijan State Oil and Industry University, Baku, Azerbaijan

bInstitute of Radiation Problems, Azerbaijan National Academy of Sciences, Baku, Azerbaijan

cSeljuk University, Institute of Science, Department of Physics, Konya, Turkey


Journal of Ovonic Research 2023, 19(3),259-263; https://doi.org/10.15251/JOR.2023.193.259
Submitted:Mar 08, 2023
Accepted:May 03, 2023
Published:May 01, 2023
+
Cite This Article
R. G. Abaszade ,A. G. Mammadov ,E. A. Khanmammadova ,İ . Y. Bayramov ,R. A. Namazov ,Kh. M. Popal ,S. Z. Melikova ,R. C. Qas1mov ,M. A. Bayramov ,N. İ . Babayeva . (2023). Journal of Ovonic Research. Electron paramagnetic resonance study of gadoliniumum doped graphene oxide, 19(3), ,259-263. https://doi.org/10.15251/JOR.2023.193.259
Abstract

The samples obtained by the Hammer method and then doped with 5, 10 and 15 percent gadolinium were studied by the EPR analysis method. The conducted studies were carried out at room temperature. Depending on the degree of addition of gadolinium during the studies an increase in the intensity of the signal and a decrease in the intensity of free radicals were observed. So that, when the amount of gadolinium reaches 15%, the signal of free radicals disappears. The reason for this is that the Gd ion forms a single homogeneous system with the formation of strong bonds between the surface of the graphene oxide sample. In addition, it can be noted that unpaired electrons in the form of free radicals, which are stabilized in the carbon rings in the crystal structure of graphene oxide, cause this connection.

©2026 by the authors. Submitted for possible open access publication under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
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