Adel, A., Wanzenböck, R., & Madsen, G. K. H. (2026). Completing the hierarchy of rotational defects in monolayer MoS₂ through symmetry-aware evolutionary search. Physical Chemistry Chemical Physics, 28(2), 1626–1633. https://doi.org/10.1039/D5CP03121D
E165-03-1 - Forschungsgruppe Theoretische Materialchemie E056-04 - Fachbereich TU-DX: Towards Applications of 2D Materials E056-23 - Fachbereich Innovative Combinations and Applications of AI and ML (iCAIML)
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Journal:
Physical Chemistry Chemical Physics
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ISSN:
1463-9076
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Date (published):
14-Jan-2026
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Number of Pages:
8
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Publisher:
ROYAL SOC CHEMISTRY
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Peer reviewed:
Yes
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Keywords:
Monolayer molybdenum disulfide; Extended defects; Evolutionary algorithm; Machine-learning force field
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Abstract:
Monolayer molybdenum disulfide (MoS₂) shows a plethora of defect configurations, which constitutes the basis for tailoring material properties through defect engineering. Detailed characterization of these defects remains challenging due to the complexity of the potential energy surface. We efficiently explore the three-fold rotational defect potential energy surface in monolayer MoS₂ by combining an evolutionary algorithm with a machine-learning force field. To improve the performance of the structure searches, the algorithm hierarchically restricts the exploration process to a lower-dimensional subspace, utilizing the symmetry operators associated with the investigated defects. We demonstrate that these constrained trajectories exhibit lower global uncertainty measures during the evolution, produce final structures with lower energy distributions and converge faster. Our approach results in the discovery of several novel structures with reasonable computational effort, thereby completing the hierarchy of rotational defects in MoS₂.
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Project title:
TUD-X: Anwendungen von 2D Materialien: DOC 142-N (FWF - Österr. Wissenschaftsfonds) Komplexität in der Materialmodellierung: F 8100 (FWF - Österr. Wissenschaftsfonds)