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Frictionless nanohighways on crystalline surfaces

Articolo
Data di Pubblicazione:
2023
Citazione:
Frictionless nanohighways on crystalline surfaces / E. Panizon, A. Silva, X. Cao, J. Wang, C. Bechinger, A. Vanossi, E. Tosatti, N. Manini. - In: NANOSCALE. - ISSN 2040-3372. - 15:3(2023 Jan 19), pp. 1299-1316. [10.1039/D2NR04532J]
Abstract:
The understanding of friction at nano-scales, ruled by the regular arrangement of atoms, is surprisingly incomplete. Here we provide a unified understanding by studying the interlocking potential energy of two infinite contacting surfaces with arbitrary lattice symmetries, and extending it to finite contacts. We categorize, based purely on geometrical features, all possible contacts into three different types: a structurally lubric contact where the monolayer can move isotropically without friction, a corrugated and strongly interlocked contact, and a newly discovered directionally structurally lubric contact where the layer can move frictionlessly along one specific direction and retains finite friction along all other directions. This novel category is energetically stable against rotational perturbations and provides extreme friction anisotropy. The finite-size analysis shows that our categorization applies to a wide range of technologically relevant materials in contact, from adsorbates on crystal surfaces to layered two-dimensional materials and colloidal monolayers.
Tipologia IRIS:
01 - Articolo su periodico
Elenco autori:
E. Panizon, A. Silva, X. Cao, J. Wang, C. Bechinger, A. Vanossi, E. Tosatti, N. Manini
Autori di Ateneo:
MANINI NICOLA ( autore )
Link alla scheda completa:
https://air.unimi.it/handle/2434/952396
Link al Full Text:
https://air.unimi.it/retrieve/handle/2434/952396/2129455/Nanoscale_15_1299_2023.pdf
Progetto:
Understanding and Tuning FRiction through nanOstructure Manipulation (UTFROM)
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