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Theoretical investigation of the interfaces and mechanisms of induced spin polarization of 1D narrow zigzag graphene- and h-BN nanoribbons on a SrO-terminated LSMO(001) surface
Pavel V. Avramov
1
,
Alexander A. Kuzubov
2, 3
,
Artem V. Kuklin
1, 2
,
Hyosun Lee
1
,
A.S Fedorov
2, 3
,
Seiji Sakai
4
,
Shiro Entani
4
,
Hiroshi Naramoto
4
,
Publication type: Journal Article
Publication date: 2017-01-11
scimago Q2
wos Q2
SJR: 0.634
CiteScore: 4.8
Impact factor: 2.8
ISSN: 10895639, 15205215
PubMed ID:
28075136
Physical and Theoretical Chemistry
Abstract
The structure of the interfaces and the mechanisms of induced spin polarization of 1D infinite and finite narrow graphene- and h-BN zigzag nanoribbons placed on a SrO-terminated La1-xSrxMnO3 (LSMO) (001) surface were studied using density functional theory (DFT) electronic structure calculations. It was found that the π-conjugated nanofragments are bonded to the LSMO(001) surface by weak disperse interactions. The types of coordination of the fragments, the strength of bonding, and the rate of spin polarization depend upon the nature of the fragments. Infinite and finite graphene narrow zigzag nanoribbons are characterized by the lift of the spin degeneracy and strong spin polarization caused by interface-induced structural asymmetry and oxygen-mediated indirect exchange interactions with Mn ions of LSMO support. Spin polarization changes the semiconducting nature of infinite graphene nanoribbons to half-metallic state with visible spin-up density of states at the Fermi level. The h-BN nanoribbon binding energy is weaker than graphene nanoribbon ones with noticeably shorter interlayer distance. The asymmetry effect and indirect exchange interactions cause spin polarization of h-BN nanoribbon as well with formation of embedded states inside the band gap. The results show a possibility to use one-atom thick nanofragments to design LSMO-based heterostructures for spintronic nanodevices with h-BN as an inert spacer to develop different potential barriers.
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Avramov P. V. et al. Theoretical investigation of the interfaces and mechanisms of induced spin polarization of 1D narrow zigzag graphene- and h-BN nanoribbons on a SrO-terminated LSMO(001) surface // Journal of Physical Chemistry A. 2017. Vol. 121. No. 3. pp. 680-689.
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Avramov P. V., Kuzubov A. A., Kuklin A. V., Lee H., Fedorov A., Sakai S., Entani S., Naramoto H., Sorokin P. B. Theoretical investigation of the interfaces and mechanisms of induced spin polarization of 1D narrow zigzag graphene- and h-BN nanoribbons on a SrO-terminated LSMO(001) surface // Journal of Physical Chemistry A. 2017. Vol. 121. No. 3. pp. 680-689.
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TY - JOUR
DO - 10.1021/acs.jpca.6b09696
UR - https://doi.org/10.1021/acs.jpca.6b09696
TI - Theoretical investigation of the interfaces and mechanisms of induced spin polarization of 1D narrow zigzag graphene- and h-BN nanoribbons on a SrO-terminated LSMO(001) surface
T2 - Journal of Physical Chemistry A
AU - Avramov, Pavel V.
AU - Kuzubov, Alexander A.
AU - Kuklin, Artem V.
AU - Lee, Hyosun
AU - Fedorov, A.S
AU - Sakai, Seiji
AU - Entani, Shiro
AU - Naramoto, Hiroshi
AU - Sorokin, Pavel B.
PY - 2017
DA - 2017/01/11
PB - American Chemical Society (ACS)
SP - 680-689
IS - 3
VL - 121
PMID - 28075136
SN - 1089-5639
SN - 1520-5215
ER -
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BibTex (up to 50 authors)
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@article{2017_Avramov,
author = {Pavel V. Avramov and Alexander A. Kuzubov and Artem V. Kuklin and Hyosun Lee and A.S Fedorov and Seiji Sakai and Shiro Entani and Hiroshi Naramoto and Pavel B. Sorokin},
title = {Theoretical investigation of the interfaces and mechanisms of induced spin polarization of 1D narrow zigzag graphene- and h-BN nanoribbons on a SrO-terminated LSMO(001) surface},
journal = {Journal of Physical Chemistry A},
year = {2017},
volume = {121},
publisher = {American Chemical Society (ACS)},
month = {jan},
url = {https://doi.org/10.1021/acs.jpca.6b09696},
number = {3},
pages = {680--689},
doi = {10.1021/acs.jpca.6b09696}
}
Cite this
MLA
Copy
Avramov, Pavel V., et al. “Theoretical investigation of the interfaces and mechanisms of induced spin polarization of 1D narrow zigzag graphene- and h-BN nanoribbons on a SrO-terminated LSMO(001) surface.” Journal of Physical Chemistry A, vol. 121, no. 3, Jan. 2017, pp. 680-689. https://doi.org/10.1021/acs.jpca.6b09696.