Edge Disorder in Bottom-Up Zigzag Graphene Nanoribbons: Implications for Magnetism and Quantum Electronic Transport

Pizzochero, Michele; Barin, Gabriela Borin; Čerņevičs, Kristia̅ns; Wang, Shiyong; Ruffieux, Pascal; Fasel, Roman; Yazyev, Oleg V. (2021). Edge Disorder in Bottom-Up Zigzag Graphene Nanoribbons: Implications for Magnetism and Quantum Electronic Transport. The journal of physical chemistry letters, 12(19), pp. 4692-4696. American Chemical Society 10.1021/acs.jpclett.1c00921

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We unveil the nature of the structural disorder in bottom-up zigzag graphene nanoribbons along with its effect on the magnetism and electronic transport on the basis of scanning probe microscopies and first-principles calculations. We find that edge-missing m-xylene units emerging during the cyclodehydrogenation step of the on-surface synthesis are the most common point defects. These "bite" defects act as spin-1 paramagnetic centers, severely disrupt the conductance spectrum around the band extrema, and give rise to spin-polarized charge transport. We further show that the electronic conductance across graphene nanoribbons is more sensitive to "bite" defects forming at the zigzag edges than at the armchair ones. Our work establishes a comprehensive understanding of the low-energy electronic properties of disordered bottom-up graphene nanoribbons.

Item Type:

Journal Article (Original Article)

Division/Institute:

08 Faculty of Science > Department of Chemistry, Biochemistry and Pharmaceutical Sciences (DCBP)

UniBE Contributor:

Fasel, Roman

Subjects:

500 Science > 530 Physics
500 Science > 540 Chemistry

ISSN:

1948-7185

Publisher:

American Chemical Society

Language:

English

Submitter:

Roman Fasel

Date Deposited:

17 Feb 2022 10:01

Last Modified:

05 Dec 2022 16:05

Publisher DOI:

10.1021/acs.jpclett.1c00921

PubMed ID:

33979153

BORIS DOI:

10.48350/164871

URI:

https://boris.unibe.ch/id/eprint/164871

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