Ab initio investigations of Fe(110)/graphene interfaces

Interfacial bonding of three different semi-coherent bcc-Fe(110)/graphene interfaces is investigated using the plane-wave pseudopotential method within density functional theory. The analysis of bond lengths, charge densities, charge transfer, magnetic moments and densities of states shows that inte...

Full description

Bibliographic Details
Published in:Applied surface science Vol. 598. P. 153714 (1-9)
Other Authors: Hocker, Stephen, Lipp, Hansjörg, Schmauder, Siegfried, Bakulin, Alexander V., Kulkova, Svetlana E.
Format: Article
Language:English
Subjects:
Online Access:http://vital.lib.tsu.ru/vital/access/manager/Repository/koha:000999479
Перейти в каталог НБ ТГУ
LEADER 02136nab a2200361 c 4500
001 koha000999479
005 20230406161156.0
007 cr |
008 230403|2022 ne s a eng d
024 7 |a 10.1016/j.apsusc.2022.153714  |2 doi 
035 |a koha000999479 
040 |a RU-ToGU  |b rus  |c RU-ToGU 
245 1 0 |a Ab initio investigations of Fe(110)/graphene interfaces  |c S. Hocker, H. Lipp, S. Schmauder [et al.] 
336 |a Текст 
337 |a электронный 
504 |a Библиогр.: 28 назв. 
520 3 |a Interfacial bonding of three different semi-coherent bcc-Fe(110)/graphene interfaces is investigated using the plane-wave pseudopotential method within density functional theory. The analysis of bond lengths, charge densities, charge transfer, magnetic moments and densities of states shows that interfacial adhesion can be understood from the electronic structure. Graphene is considered on Fe(110) surfaces as well as embedded in (110) planes of bulk Fe. Moreover, the influence of single vacancies in graphene is studied in case of graphene on the Fe(110) surfaces. It is found that a single vacancy in graphene leads to a strong increase of interfacial adhesion. The most important contribution to the adhesion is covalent bonding with hybridization of Fe states and C states which is most pronounced for neighboring atoms of the vacancy. 
653 |a графен 
653 |a железо 
653 |a интерфейс 
655 4 |a статьи в журналах  |9 882082 
700 1 |a Hocker, Stephen  |9 816127 
700 1 |a Lipp, Hansjörg  |9 816129 
700 1 |a Schmauder, Siegfried  |9 81704 
700 1 |a Bakulin, Alexander V.  |9 94703 
700 1 |a Kulkova, Svetlana E.  |9 94704 
773 0 |t Applied surface science  |d 2022  |g Vol. 598. P. 153714 (1-9)  |x 0169-4332 
852 4 |a RU-ToGU 
856 4 |u http://vital.lib.tsu.ru/vital/access/manager/Repository/koha:000999479 
856 |y Перейти в каталог НБ ТГУ  |u https://koha.lib.tsu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=999479 
908 |a статья 
039 |b 100 
999 |c 999479  |d 999479