Related Experiment Video
Updated: Jun 22, 2026

Optimized Fabrication Procedure for High-Quality Graphene-based Moiré Superlattice Devices
Published on: July 11, 2025
Chemically induced mobility gaps in graphene nanoribbons: a route for upscaling device performances
Blanca Biel1, François Triozon, X Blase
1CEA, LETI, MINATEC, F38054 Grenoble, France.
Abstract:
We report a first-principles based study of mesoscopic quantum transport in chemically doped graphene nanoribbons with a width up to 10 nm. The occurrence of quasi-bound states related to boron impurities results in mobility gaps as large as 1 eV, driven by strong electron-hole asymmetrical backscattering phenomena. This phenomenon opens new ways to overcome current limitations of graphene-based devices through the fabrication of chemically doped graphene nanoribbons with sizes within the reach of conventional lithography.

