Raman Signature of Stripe Domains in Monolayer WxMo1-xS2 Alloys
We study the Raman signature of stripe domains in monolayer WxMo1–xS2 alloys, characterized using experimental techniques and density functional theory (DFT) calculations. These stripe domains were found in star-shaped monolayer WS2 exhibiting a high concentration of molybdenum (Mo) atoms in its central region, and unique Raman peaks that were not previously reported. We attribute these peaks to the splitting of the original doubly degenerate E2g modes, arising from the lower symmetry of the W–Mo stripe domains. We confirm the stripe presence and location using high-resolution scanning transmission electron microscopy (STEM) imaging and use DFT to elucidate the structural, electronic, and vibrational properties of the stripes when the stoichiometry corresponds to W0.5Mo0.5S2. The findings provide insight into the evolution of the Raman spectra as stripe domains arise in TMD alloys, thus contributing to a broader understanding of the influence of atomic-level structural modifications on material properties.
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ACS Applied Materials & Interfaces, copyright ©2025 American Chemical Society after peer review and technical editing by the publisher. To access the final edited and published work see https://doi.org/10.1021/acsami.4c15937.
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Work Title Raman Signature of Stripe Domains in Monolayer WxMo1-xS2 Alloys Access Creators - Natalya Sheremetyeva
- Na Zhang
- David Emanuel Sanchez
- Zhuohang Yu
- Michael Lamparski
- Mauricio Terrones
- Vincent Meunier
Keyword - Raman spectroscopy
- Vibrational modes
- Density functional theory (DFT)
- WxMo1−xS2 alloys
- Stripe domains
License In Copyright (Rights Reserved) Work Type Article Publisher - ACS Applied Materials & Interfaces
Publication Date January 10, 2025 Publisher Identifier (DOI) - https://doi.org/10.1021/acsami.4c15937
Deposited June 09, 2026 Versions
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Version 1
published-
Created
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Added
Stripes.pdf -
Added Creator Natalya Sheremetyeva
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Added Creator Na Zhang
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Added Creator David Emanuel Sanchez
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Added Creator Zhuohang Yu
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Added Creator Michael Lamparski
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Added Creator Mauricio Terrones
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Added Creator Vincent Meunier
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Published
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Updated
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Updated Work Title Show ChangesWork Title
Raman Signature of Stripe Domains in Monolayer W<sub>x</sub>Mo<sub>1-x</sub>S<sub>2</sub> Alloys- Raman Signature of Stripe Domains in Monolayer WxMo1-xS2 Alloys
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Updated Keyword, Publisher, Description, and 2 more Show ChangesKeywordPublisher
- Raman spectroscopy, Vibrational modes, Density functional theory (DFT), WxMo1−xS2 alloys, Stripe domains
DescriptionACS applied materials & interfaces- ACS Applied Materials & Interfaces
Publication DateWe study the Raman signature of stripe domains in monolayer W<sub>x</sub>Mo<sub>1-x</sub>S<sub>2</sub> alloys, characterized using experimental techniques and density functional theory (DFT) calculations. These stripe domains were found in star-shaped monolayer WS<sub>2</sub> exhibiting a high concentration of molybdenum (Mo) atoms in its central region, and unique Raman peaks that were not previously reported. We attribute these peaks to the splitting of the original doubly degenerate E<sub>2g</sub> modes, arising from the lower symmetry of the W-Mo stripe domains. We confirm the stripe presence and location using high-resolution scanning transmission electron microscopy (STEM) imaging and use DFT to elucidate the structural, electronic, and vibrational properties of the stripes when the stoichiometry corresponds to W<sub>0.5</sub>Mo<sub>0.5</sub>S<sub>2</sub>. The findings provide insight into the evolution of the Raman spectra as stripe domains arise in TMD alloys, thus contributing to a broader understanding of the influence of atomic-level structural modifications on material properties.- We study the Raman signature of stripe domains in monolayer WxMo1–xS2 alloys, characterized using experimental techniques and density functional theory (DFT) calculations. These stripe domains were found in star-shaped monolayer WS2 exhibiting a high concentration of molybdenum (Mo) atoms in its central region, and unique Raman peaks that were not previously reported. We attribute these peaks to the splitting of the original doubly degenerate E2g modes, arising from the lower symmetry of the W–Mo stripe domains. We confirm the stripe presence and location using high-resolution scanning transmission electron microscopy (STEM) imaging and use DFT to elucidate the structural, electronic, and vibrational properties of the stripes when the stoichiometry corresponds to W0.5Mo0.5S2. The findings provide insight into the evolution of the Raman spectra as stripe domains arise in TMD alloys, thus contributing to a broader understanding of the influence of atomic-level structural modifications on material properties.
Publisher's Statement2025-01-22- 2025-01-10
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ACS Applied Materials & Interfaces, copyright ©, [include copyright notice from the published article] after peer review and technical editing by the publisher. To access the final edited and published work see [insert ACS Articles on Request author-directed link to Published Work, see ACS Articles on Request ].”- This document is the Accepted Manuscript version of a Published Work that appeared in final form in ACS Applied Materials & Interfaces, copyright ©2025 American Chemical Society after peer review and technical editing by the publisher. To access the final edited and published work see https://doi.org/10.1021/acsami.4c15937.
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Updated Creator Natalya Sheremetyeva
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Updated Creator Na Zhang
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Updated Creator David Emanuel Sanchez
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Updated Creator Zhuohang Yu
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Updated Creator Michael Lamparski
Version 2
published-
Created
-
Deleted
Stripes.pdf -
Added
ACCESSIBLE_VERSION_Stripes.pdf -
Published
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Updated Work Title Show ChangesWork Title
Raman Signature of Stripe Domains in Monolayer W<sub>x</sub>Mo<sub>1-x</sub>S<sub>2</sub> Alloys- Raman Signature of Stripe Domains in Monolayer WxMo1-xS2 Alloys
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Updated Keyword, Publisher, Description, and 2 more Show ChangesKeywordPublisher
- Raman spectroscopy, Vibrational modes, Density functional theory (DFT), WxMo1−xS2 alloys, Stripe domains
DescriptionACS applied materials & interfaces- ACS Applied Materials & Interfaces
Publication DateWe study the Raman signature of stripe domains in monolayer W<sub>x</sub>Mo<sub>1-x</sub>S<sub>2</sub> alloys, characterized using experimental techniques and density functional theory (DFT) calculations. These stripe domains were found in star-shaped monolayer WS<sub>2</sub> exhibiting a high concentration of molybdenum (Mo) atoms in its central region, and unique Raman peaks that were not previously reported. We attribute these peaks to the splitting of the original doubly degenerate E<sub>2g</sub> modes, arising from the lower symmetry of the W-Mo stripe domains. We confirm the stripe presence and location using high-resolution scanning transmission electron microscopy (STEM) imaging and use DFT to elucidate the structural, electronic, and vibrational properties of the stripes when the stoichiometry corresponds to W<sub>0.5</sub>Mo<sub>0.5</sub>S<sub>2</sub>. The findings provide insight into the evolution of the Raman spectra as stripe domains arise in TMD alloys, thus contributing to a broader understanding of the influence of atomic-level structural modifications on material properties.- We study the Raman signature of stripe domains in monolayer WxMo1–xS2 alloys, characterized using experimental techniques and density functional theory (DFT) calculations. These stripe domains were found in star-shaped monolayer WS2 exhibiting a high concentration of molybdenum (Mo) atoms in its central region, and unique Raman peaks that were not previously reported. We attribute these peaks to the splitting of the original doubly degenerate E2g modes, arising from the lower symmetry of the W–Mo stripe domains. We confirm the stripe presence and location using high-resolution scanning transmission electron microscopy (STEM) imaging and use DFT to elucidate the structural, electronic, and vibrational properties of the stripes when the stoichiometry corresponds to W0.5Mo0.5S2. The findings provide insight into the evolution of the Raman spectra as stripe domains arise in TMD alloys, thus contributing to a broader understanding of the influence of atomic-level structural modifications on material properties.
Publisher's Statement2025-01-22- 2025-01-10
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ACS Applied Materials & Interfaces, copyright ©, [include copyright notice from the published article] after peer review and technical editing by the publisher. To access the final edited and published work see [insert ACS Articles on Request author-directed link to Published Work, see ACS Articles on Request ].”- This document is the Accepted Manuscript version of a Published Work that appeared in final form in ACS Applied Materials & Interfaces, copyright © 2025 American Chemical Society after peer review and technical editing by the publisher. To access the final edited and published work see https://doi.org/10.1021/acsami.4c15937.
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Updated Creator Natalya Sheremetyeva
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Updated Creator Na Zhang
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Updated Creator David Emanuel Sanchez
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Updated Creator Zhuohang Yu
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Updated Creator Michael Lamparski
