Evolution of the Topological Energy Band in Graphene Nanoribbons

Sun, Qiang; Yan, Yuyi; Yao, Xuelin; Müllen, Klaus; Narita, Akimitsu; Fasel, Roman; Ruffieux, Pascal (2021). Evolution of the Topological Energy Band in Graphene Nanoribbons. The journal of physical chemistry letters, 12(35), pp. 8679-8684. American Chemical Society 10.1021/acs.jpclett.1c02541

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Topological theory has been recently applied in graphene nanoribbons (GNRs) and predicts the existence of topological quantum states in junctions connecting GNRs of different topological classes. Through the periodic alignment of the topological states along a GNR backbone, frontier GNR electronic bands with tunable band gaps and band widths could be generated. In this work, we demonstrate the evolution of the topological band by fabricating GNR structures hosting a single topological junction, dimerized junctions, and multiple coupled junctions with on-surface synthesis, which guarantees the atomic precision of these nanostructures. Their structural and electronic properties are investigated by scanning tunneling microscopy and spectroscopy supported by tight-binding theory. The 1D superlattice of the topological junction states can be described by an effective two-band tight-binding Su-Schrieffer-Heeger (SSH) type model considering two alternating coupling motifs.

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 15:38

Last Modified:

05 Dec 2022 16:05

Publisher DOI:

10.1021/acs.jpclett.1c02541

PubMed ID:

34472868

BORIS DOI:

10.48350/164878

URI:

https://boris.unibe.ch/id/eprint/164878

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