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Autores principales: Nagireddy, Laxman, Magorrian, Samuel J., Watson, Matthew D., Ghimirey, Yogal Prasad, Walker, Marc, Cacho, Cephise, Wilson, Neil R., Hine, Nicholas D. M.
Formato: Preprint
Publicado: 2025
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Acceso en línea:https://arxiv.org/abs/2508.15600
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author Nagireddy, Laxman
Magorrian, Samuel J.
Watson, Matthew D.
Ghimirey, Yogal Prasad
Walker, Marc
Cacho, Cephise
Wilson, Neil R.
Hine, Nicholas D. M.
author_facet Nagireddy, Laxman
Magorrian, Samuel J.
Watson, Matthew D.
Ghimirey, Yogal Prasad
Walker, Marc
Cacho, Cephise
Wilson, Neil R.
Hine, Nicholas D. M.
contents Understanding the interface between metals and two-dimensional materials is critical for their application in electronics and for the development of metal-mediated exfoliation of large area monolayers. Studying the intricate interactions at the interface requires model systems that enable control of the roughness, purity, and crystallinity of the metal surface. Here, we investigate the layer-dependent electronic structure of WSe_2 on template-stripped gold substrates fabricated using both silicon and mica templates, giving crystallographically disordered and Au(111) ordered surfaces, respectively, and contrast these findings with ab initio predictions. We observe strong hybridization around the Brillouin zone centre at $\overlineΓ$, indicating a covalent admixture in the gold-\WSe~interaction, and band shifts that suggest charge rearrangement at the Au(111) / WSe_2 interface. Core-level spectroscopy shows a single chemical environment for the interfacial WSe_2 layer on the template-stripped gold, distinct from the subsequent layers. These results reveal a mixture of van der Waals and covalent interactions, best described as a covalent-like quasi-bonding with intermediate interaction strength.
format Preprint
id arxiv_https___arxiv_org_abs_2508_15600
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Electronic structure of the interface between Au and WSe2
Nagireddy, Laxman
Magorrian, Samuel J.
Watson, Matthew D.
Ghimirey, Yogal Prasad
Walker, Marc
Cacho, Cephise
Wilson, Neil R.
Hine, Nicholas D. M.
Materials Science
Understanding the interface between metals and two-dimensional materials is critical for their application in electronics and for the development of metal-mediated exfoliation of large area monolayers. Studying the intricate interactions at the interface requires model systems that enable control of the roughness, purity, and crystallinity of the metal surface. Here, we investigate the layer-dependent electronic structure of WSe_2 on template-stripped gold substrates fabricated using both silicon and mica templates, giving crystallographically disordered and Au(111) ordered surfaces, respectively, and contrast these findings with ab initio predictions. We observe strong hybridization around the Brillouin zone centre at $\overlineΓ$, indicating a covalent admixture in the gold-\WSe~interaction, and band shifts that suggest charge rearrangement at the Au(111) / WSe_2 interface. Core-level spectroscopy shows a single chemical environment for the interfacial WSe_2 layer on the template-stripped gold, distinct from the subsequent layers. These results reveal a mixture of van der Waals and covalent interactions, best described as a covalent-like quasi-bonding with intermediate interaction strength.
title Electronic structure of the interface between Au and WSe2
topic Materials Science
url https://arxiv.org/abs/2508.15600