Structural Evolution and Magnetic Properties of Underfluorinated C2F

A series of layered inclusion compounds based on fluorinated graphite C 2 F x ( x ≤1) was obtained by a room temperature synthesis. Inclusion compounds (intercalates) of fluorinated graphite matrix were n -hexane and dichloromethane, i.e., organic guest molecules that differ in size and symmetry. Th...

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Veröffentlicht in:Journal of superconductivity and novel magnetism 2012, Vol.25 (1), p.79-83
Hauptverfasser: Makarova, T. L., Zagaynova, V. S., Inan, G., Okotrub, A. V., Chekhova, G. N., Pinakov, D. V., Bulusheva, L. G.
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Sprache:eng
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Zusammenfassung:A series of layered inclusion compounds based on fluorinated graphite C 2 F x ( x ≤1) was obtained by a room temperature synthesis. Inclusion compounds (intercalates) of fluorinated graphite matrix were n -hexane and dichloromethane, i.e., organic guest molecules that differ in size and symmetry. The changes in C 2 F x stoichiometry are shown to have a decisive effect on magnetic properties of produced complexes. The spin concentration decreases with the increase of fluorine content in fluorocarbon matrix. All samples have groups of correlated spins; at the temperatures 1.75–5 K nonlinear magnetization is observed, indicating a high-spin state. Application of the Langevin formula shows that the clusters consist of 10–20 interacting spins.
ISSN:1557-1939
1557-1947
DOI:10.1007/s10948-011-1209-2