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  3. Tailoring Magnetism of Graphene Nanoflakes via Tip-Controlled Dehydrogenation.
 

Tailoring Magnetism of Graphene Nanoflakes via Tip-Controlled Dehydrogenation.

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BORIS DOI
10.48350/192752
Publisher DOI
10.1103/PhysRevLett.132.046201
PubMed ID
38335341
Description
Atomically precise graphene nanoflakes called nanographenes have emerged as a promising platform to realize carbon magnetism. Their ground state spin configuration can be anticipated by Ovchinnikov-Lieb rules based on the mismatch of π electrons from two sublattices. While rational geometrical design achieves specific spin configurations, further direct control over the π electrons offers a desirable extension for efficient spin manipulations and potential quantum device operations. To this end, we apply a site-specific dehydrogenation using a scanning tunneling microscope tip to nanographenes deposited on a Au(111) substrate, which shows the capability of precisely tailoring the underlying π-electron system and therefore efficiently manipulating their magnetism. Through first-principles calculations and tight-binding mean-field-Hubbard modeling, we demonstrate that the dehydrogenation-induced Au-C bond formation along with the resulting hybridization between frontier π orbitals and Au substrate states effectively eliminate the unpaired π electron. Our results establish an efficient technique for controlling the magnetism of nanographenes.
Date of Publication
2024-01-26
Publication Type
Article
Subject(s)
500 Science > 570 Life sciences; biology
500 Science > 540 Chemistry
Language(s)
en
Contributor(s)
Zhao, Chenxiao
Huang, Qiang
Valenta, Leoš
Eimre, Kristjan
Yang, Lin
Yakutovich, Aliaksandr V
Xu, Wangwei
Ma, Ji
Feng, Xinliang
Juríček, Michal
Fasel, Roman
Departement für Chemie, Biochemie und Pharmazie (DCBP) Universität Bern
Ruffieux, Pascal
Pignedoli, Carlo A
Additional Credits
Departement für Chemie, Biochemie und Pharmazie (DCBP) Universität Bern
Series
Physical review letters
Publisher
American Physical Society
ISSN
1079-7114
Access(Rights)
restricted
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