Laser-Intercalation Processes in Carbon Material
DOI:
https://doi.org/10.15330/pcss.27.2.405-408Keywords:
intercalation, sulfuric acid, carbon material, laser irradiationAbstract
It is shown that diffraction lines corresponding to interlayer distances are shifted towards smaller angles. The double interlayer distance in this case increases by 0.005 nm compared to the initial graphite and amounts to 0.672 nm, which corresponds to the stage I intercalation mechanism. However, an increase in the half-width of the diffraction lines by 1.8 times compared to the initial graphite indicates the uneven penetration of the intercalant throughout the sample volume. In the diffractogram of the intercalated graphite irradiated by a laser, practically only diffraction reflections corresponding to the interlayer lines are observed.
References
B.K. Ostafiychuk, I.I. Grygorchak, I.M. Budzulyak, L.S. Yablon, O.V. Morushko, A.M. Gamarnyk, Laser modification of LixTiS2Fy intercalation compounds, Metallophysics and advanced technologies, 32(6), 749 (2010).
You.ngsik Kim, Kyu-sung Park, Sang-hoon Song, Jiantao Han, and John B. Goodenough, Access toM3+/M2+ redox couples in layered LiMS2 sulfides (M = Ti, V, Cr) as anodes for Li-ion battery, J. Electrochem. Soc. 156. A703 (2009); https://doi.org/10.1149/1.3151856.
I.M. Budzuliak, L.S. Yablon, B.K. Ostafiychuk, I.I. Grygorchak, O.V. Morushko, O.M. Hemiy, Charge accumulation in electrochemical systems formed on the basis of low-dimensional structures, Ivano-Frankivsk, 316 p. (ukr.) (2018).
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2026 I.M. Budzuliak, L.S. Yablon, I.I. Budzuliak, S.V. Tatsiuk, N.V. Tatsiuk, R.V. Ilnytskyi

This work is licensed under a Creative Commons Attribution 4.0 International License.




