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https://elib.bsu.by/handle/123456789/343912| Заглавие документа: | Robust structural superlubricity of twisted graphene bilayer and domain walls between commensurate moiré pattern domains from first-principles calculations |
| Авторы: | Lebedeva, I. V. Popov, A. M. Polynskaya, Yu. G. Knizhnik, A. A. Vyrko, S. A. Poklonski, N. A. |
| Цифровой идентификатор автора ORCID: | 0000-0002-1145-1099 0000-0002-0799-6950 |
| Тема: | ЭБ БГУ::ЕСТЕСТВЕННЫЕ И ТОЧНЫЕ НАУКИ::Физика |
| Дата публикации: | 2026 |
| Издатель: | Elsevier B.V. |
| Библиографическое описание источника: | Physica E. – 2026. – Vol. 175. – P. 116399 (1–11). |
| Аннотация: | Twisted graphene layers exhibit extremely low friction for relative sliding. Nevertheless, previous studies suggest that the area contribution to friction for commensurate moire systems is finite and might restrict macroscopic superlubricity for large layer overlaps. In this paper, we investigate the potential energy surface (PES) for relative displacement of the layers forming moire patterns (2,1) and (3,1) by accurate density functional theory calculations using the vdW-DF3 functional. The amplitudes of PES corrugations on the order of 0.4 and 0.03 µeV per atom of one layer, respectively, are obtained. The account of structural relaxation doubles this value for the (2,1) pattern, while causing only minimal changes for the (3,1) pattern. We show that different from aligned graphene layers, for moire patterns, PES minima and maxima can switch their positions upon changing the interlayer distance. The PES shape is closely described by the first spatial Fourier harmonics both with and without account of structural relaxation. A barrier for relative rotation of the layers to an incommensurate state that can make superlubricity robust is estimated based on the approximated PES. We also derive a set of measurable physical properties related to interlayer interaction including shear mode frequency, shear modulus and static friction force. Furthermore, we predict that it should be possible to observe domain walls separating commensurate domains, each comprising a large number of moire pattern unit cells, and provide estimates of their characteristics. |
| URI документа: | https://elib.bsu.by/handle/123456789/343912 |
| ISSN: | 1386-9477 |
| DOI документа: | 10.1016/j.physe.2025.116399 |
| Финансовая поддержка: | A.M.P. and Y.G.P. acknowledge the support by the Russian Science Foundation, Russia grant No. 23-42-10010, https://rscf.ru/en/project/23-42-10010/, for the results described in Sections 3.1–3.3. A.M.P. acknowledges the support by project FFUU-2024-0003 of the Institute of Spectroscopy of the Russian Academy of Sciences, Russia for the results described in Section 3.4. S.A.V. and N.A.P. acknowledge the support by the Belarusian Republican Foundation for Fundamental Research, Republic of Belarus (Grant No. F23RNF-049) and by the Belarusian National Research Program ‘‘Convergence-2025’’, Republic of Belarus. I.V.L. acknowledges the technical and human support provided by the DIPC Supercomputing Center. |
| Лицензия: | info:eu-repo/semantics/openAccess |
| Располагается в коллекциях: | Кафедра физики полупроводников и наноэлектроники (статьи) |
Полный текст документа:
| Файл | Описание | Размер | Формат | |
|---|---|---|---|---|
| PE116399.pdf | 2,36 MB | Adobe PDF | Открыть |
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