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PMID: 40930121 已发表 · epublish 英语

Hexagonal boron nitride/bilayer graphene moiré superlattices in the Dirac-material family: energy-band engineering and carrier doping by dual gating.

Iwasaki T, Morita Y

摘要

We review the fabrication and transport characterization of hexagonal boron nitride (hBN)/Bernal bilayer graphene (BLG) moiré superlattices. Due to the moiré effect, the hBN/BLG moiré superlattices exhibit an energy gap at the charge neutrality point (CNP) even in the absence of a perpendicular electric field. In BLG, the application of a perpendicular electric field tunes the energy gap at the CNP, which contrasts with single-layer graphene and is similar to the family of rhombohedral multilayer graphene. The hBN/BLG moiré superlattice is associated with non-trivial energy-band topology and a narrow energy band featuring a van Hove singularity. By employing a dual-gated device structure where both the perpendicular displacement field and the carrier density are individually controllable, systematic engineering of the energy-band structure can be achieved. The data presented here demonstrate the universality and diversity in the physics of hBN/BLG moiré superlattices.

关键词
bilayer graphene hexagonal boron nitride moiré superlattice phase transition transport property tunable band gap valley hall effect
文献信息
期刊
Journal of physics. Condensed matter : an Institute of Physics journal
期刊简称
J Phys Condens Matter
ISSN
1361-648X
发表日期
2025-09-25
语言
英语
国家/地区
England
NLM ID
101165248
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