Standard

Tabby graphene : Dimensional magnetic crossover in fluorinated graphite. / Makarova, T. L.; Shelankov, A. L.; Shames, A. I.; Zyrianova, A. A.; Komlev, A. A.; Chekhova, G. N.; Pinakov, D. V.; Bulusheva, L. G.; Okotrub, A. V.; Lähderanta, E.

в: Scientific Reports, Том 7, № 1, 16544, 29.11.2017.

Результаты исследований: Научные публикации в периодических изданияхстатьяРецензирование

Harvard

Makarova, TL, Shelankov, AL, Shames, AI, Zyrianova, AA, Komlev, AA, Chekhova, GN, Pinakov, DV, Bulusheva, LG, Okotrub, AV & Lähderanta, E 2017, 'Tabby graphene: Dimensional magnetic crossover in fluorinated graphite', Scientific Reports, Том. 7, № 1, 16544. https://doi.org/10.1038/s41598-017-16321-5

APA

Makarova, T. L., Shelankov, A. L., Shames, A. I., Zyrianova, A. A., Komlev, A. A., Chekhova, G. N., Pinakov, D. V., Bulusheva, L. G., Okotrub, A. V., & Lähderanta, E. (2017). Tabby graphene: Dimensional magnetic crossover in fluorinated graphite. Scientific Reports, 7(1), [16544]. https://doi.org/10.1038/s41598-017-16321-5

Vancouver

Makarova TL, Shelankov AL, Shames AI, Zyrianova AA, Komlev AA, Chekhova GN и пр. Tabby graphene: Dimensional magnetic crossover in fluorinated graphite. Scientific Reports. 2017 Нояб. 29;7(1). 16544. https://doi.org/10.1038/s41598-017-16321-5

Author

Makarova, T. L. ; Shelankov, A. L. ; Shames, A. I. ; Zyrianova, A. A. ; Komlev, A. A. ; Chekhova, G. N. ; Pinakov, D. V. ; Bulusheva, L. G. ; Okotrub, A. V. ; Lähderanta, E. / Tabby graphene : Dimensional magnetic crossover in fluorinated graphite. в: Scientific Reports. 2017 ; Том 7, № 1.

BibTeX

@article{6983a048ba0242f09aeee64323f83c65,
title = "Tabby graphene: Dimensional magnetic crossover in fluorinated graphite",
abstract = "Tabby is a pattern of short irregular stripes, usually related to domestic cats. We have produced Tabby patterns on graphene by attaching fluorine atoms running as monoatomic chains in crystallographic directions. Separated by non-fluorinated sp 2 carbon ribbons, sp 3-hybridized carbon atoms bonded to zigzag fluorine chains produce sp 2-sp 3 interfaces and spin-polarized edge states localized on both sides of the chains. We have compared two kinds of fluorinated graphite samples C2F x , with x near to 1 and x substantially below 1. The magnetic susceptibility of C2F x (x < 1) shows a broad maximum and a thermally activated spin gap behaviour that can be understood in a two-leg spin ladder model with ferromagnetic legs and antiferromagnetic rungs; the spin gap constitutes about 450 K. Besides, stable room-temperature ferromagnetism is observed in C2F x (x < 1) samples: the crossover to a three-dimensional magnetic behaviour is due to the onset of interlayer interactions. Similarly prepared C2F x (x ≈ 1) samples demonstrate features of two-dimensional magnetism without signs of high-temperature magnetic ordering, but with transition to a superparamagnetic state below 40 K instead. The magnetism of the Tabby graphene is stable until 520 K, which is the temperature of the structural reconstruction of fluorinated graphite.",
author = "Makarova, {T. L.} and Shelankov, {A. L.} and Shames, {A. I.} and Zyrianova, {A. A.} and Komlev, {A. A.} and Chekhova, {G. N.} and Pinakov, {D. V.} and Bulusheva, {L. G.} and Okotrub, {A. V.} and E. L{\"a}hderanta",
year = "2017",
month = nov,
day = "29",
doi = "10.1038/s41598-017-16321-5",
language = "English",
volume = "7",
journal = "Scientific Reports",
issn = "2045-2322",
publisher = "Nature Publishing Group",
number = "1",

}

RIS

TY - JOUR

T1 - Tabby graphene

T2 - Dimensional magnetic crossover in fluorinated graphite

AU - Makarova, T. L.

AU - Shelankov, A. L.

AU - Shames, A. I.

AU - Zyrianova, A. A.

AU - Komlev, A. A.

AU - Chekhova, G. N.

AU - Pinakov, D. V.

AU - Bulusheva, L. G.

AU - Okotrub, A. V.

AU - Lähderanta, E.

PY - 2017/11/29

Y1 - 2017/11/29

N2 - Tabby is a pattern of short irregular stripes, usually related to domestic cats. We have produced Tabby patterns on graphene by attaching fluorine atoms running as monoatomic chains in crystallographic directions. Separated by non-fluorinated sp 2 carbon ribbons, sp 3-hybridized carbon atoms bonded to zigzag fluorine chains produce sp 2-sp 3 interfaces and spin-polarized edge states localized on both sides of the chains. We have compared two kinds of fluorinated graphite samples C2F x , with x near to 1 and x substantially below 1. The magnetic susceptibility of C2F x (x < 1) shows a broad maximum and a thermally activated spin gap behaviour that can be understood in a two-leg spin ladder model with ferromagnetic legs and antiferromagnetic rungs; the spin gap constitutes about 450 K. Besides, stable room-temperature ferromagnetism is observed in C2F x (x < 1) samples: the crossover to a three-dimensional magnetic behaviour is due to the onset of interlayer interactions. Similarly prepared C2F x (x ≈ 1) samples demonstrate features of two-dimensional magnetism without signs of high-temperature magnetic ordering, but with transition to a superparamagnetic state below 40 K instead. The magnetism of the Tabby graphene is stable until 520 K, which is the temperature of the structural reconstruction of fluorinated graphite.

AB - Tabby is a pattern of short irregular stripes, usually related to domestic cats. We have produced Tabby patterns on graphene by attaching fluorine atoms running as monoatomic chains in crystallographic directions. Separated by non-fluorinated sp 2 carbon ribbons, sp 3-hybridized carbon atoms bonded to zigzag fluorine chains produce sp 2-sp 3 interfaces and spin-polarized edge states localized on both sides of the chains. We have compared two kinds of fluorinated graphite samples C2F x , with x near to 1 and x substantially below 1. The magnetic susceptibility of C2F x (x < 1) shows a broad maximum and a thermally activated spin gap behaviour that can be understood in a two-leg spin ladder model with ferromagnetic legs and antiferromagnetic rungs; the spin gap constitutes about 450 K. Besides, stable room-temperature ferromagnetism is observed in C2F x (x < 1) samples: the crossover to a three-dimensional magnetic behaviour is due to the onset of interlayer interactions. Similarly prepared C2F x (x ≈ 1) samples demonstrate features of two-dimensional magnetism without signs of high-temperature magnetic ordering, but with transition to a superparamagnetic state below 40 K instead. The magnetism of the Tabby graphene is stable until 520 K, which is the temperature of the structural reconstruction of fluorinated graphite.

UR - http://www.scopus.com/inward/record.url?scp=85036500718&partnerID=8YFLogxK

U2 - 10.1038/s41598-017-16321-5

DO - 10.1038/s41598-017-16321-5

M3 - Article

C2 - 29185456

AN - SCOPUS:85036500718

VL - 7

JO - Scientific Reports

JF - Scientific Reports

SN - 2045-2322

IS - 1

M1 - 16544

ER -

ID: 11508954