Bismuthene Under Cover: Graphene Intercalation of a Large Gap Quantum Spin Hall Insulator

L Lukas Gehrig (Physikalisches Institut Universität Würzburg D‐97074 Würzburg Germany) C Cedric Schmitt (Physikalisches Institut Universität Würzburg D‐97074 Würzburg Germany) J Jonas Erhardt B Bing Liu T Tim Wagner (1German Cancer Research Center (DKFZ), JRG Hematology and Immune Engineering, Heidelberg, Germany) M Martin Kamp S Simon Moser R Ralph Claessen

Abstract

AbstractThe quantum spin Hall insulator bismuthene, a two‐third monolayer of bismuth on SiC(0001), is distinguished by helical metallic edge states that are protected by a groundbreaking 800 meV topological gap, making it ideal for room temperature applications. This massive gap inversion arises from a unique synergy between flat honeycomb structure, strong spin orbit coupling, and an orbital filtering effect that is mediated by the substrate. However, the rapid oxidation of bismuthene in air has severely hindered the development of applications, so far confining experiments to ultra‐high vacuum conditions. Intercalating bismuthene between SiC and a protective sheet of graphene, this barrier is successfully overcome. As demonstrated by scanning tunneling microscopy and photoemission spectroscopy, graphene intercalation preserves the structural and topological integrity of bismuthene, while effectively shielding it from oxidation in air. Hereby, hydrogen is identified as the critical process gas that was missing in previous bismuth intercalation attempts. These findings facilitate ex‐situ experiments and pave the way for the development of bismuthene based devices, signaling a significant step forward in the development of next‐generation technologies.

Article Details

Volume / Issue Vol. 37, Issue 33
Published August 01, 2025
ISSN 0935-9648
Publisher Unknown Publisher

Journal Info

Advanced Materials

Unknown Publisher

ISSN: 0935-9648 Physical Sciences

Authors (8)

L

Lukas Gehrig

Physikalisches Institut Universität Würzburg D‐97074 Würzburg Germany

C

Cedric Schmitt

Physikalisches Institut Universität Würzburg D‐97074 Würzburg Germany

J

Jonas Erhardt

B

Bing Liu

T

Tim Wagner

1German Cancer Research Center (DKFZ), JRG Hematology and Immune Engineering, Heidelberg, Germany

M

Martin Kamp

S

Simon Moser

R

Ralph Claessen