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Updated: Sep 25, 2026

Optimized Fabrication Procedure for High-Quality Graphene-based Moiré Superlattice Devices
Published on: July 11, 2025
Interlayer rotation (twisting) switches interlayer mobility in moiré superlattices
Xuejiao Zhang1, Jimin Ham1, Vesna Srot1
1Max Planck Institute for Solid State Research, Stuttgart 70569, Germany.
Abstract:
Mobility of mechanical contacts is widely attributed to atomic structures at the interface between contacting bodies. Matching (commensurate) interfacial structures are thought to reduce mobility, while mismatched (incommensurate) structures are thought to increase mobility. Despite its wide acceptance, direct observation of such structure-properties relationships remains elusive today due to limited microscopy access to atomic motions at buried interface between two bodies. Here, we capture key structural transitions linking interfacial mismatch and mobility in real-time by following twisting and sliding dynamics in bilayer moiré nanoflakes of MoS2 with atomically resolved transmission electron microscopy. The atomic motions show that slippery, mismatched interfaces-unlike sticky, matching interfaces-exhibit distinct dynamical signatures, such as tenfold increase in interfacial mobility and desynchronized atomic motions.
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