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CVD-Assisted Synthesis of 2D Layered MoSe(2) on Mo Foil and Low Frequency Raman Scattering of Its Exfoliated Few-Layer Nanosheets on CaF(2) Substrates

[Image: see text] Transition-metal dichalcogenides (TMDCs) are unique layered materials with exotic properties. So, examining their structures holds tremendous importance. 2H-MoSe(2) (analogous to MoS(2); Gr. 6 TMDC) is a crucial optoelectronic material studied extensively using Raman spectroscopy....

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Autores principales: Konar, Rajashree, Rajeswaran, Bharathi, Paul, Atanu, Teblum, Eti, Aviv, Hagit, Perelshtein, Ilana, Grinberg, Ilya, Tischler, Yaakov Raphael, Nessim, Gilbert Daniel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8829917/
https://www.ncbi.nlm.nih.gov/pubmed/35155906
http://dx.doi.org/10.1021/acsomega.1c05652
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author Konar, Rajashree
Rajeswaran, Bharathi
Paul, Atanu
Teblum, Eti
Aviv, Hagit
Perelshtein, Ilana
Grinberg, Ilya
Tischler, Yaakov Raphael
Nessim, Gilbert Daniel
author_facet Konar, Rajashree
Rajeswaran, Bharathi
Paul, Atanu
Teblum, Eti
Aviv, Hagit
Perelshtein, Ilana
Grinberg, Ilya
Tischler, Yaakov Raphael
Nessim, Gilbert Daniel
author_sort Konar, Rajashree
collection PubMed
description [Image: see text] Transition-metal dichalcogenides (TMDCs) are unique layered materials with exotic properties. So, examining their structures holds tremendous importance. 2H-MoSe(2) (analogous to MoS(2); Gr. 6 TMDC) is a crucial optoelectronic material studied extensively using Raman spectroscopy. In this regard, low-frequency Raman (LFR) spectroscopy can probe this material’s structure as it reveals distinct vibration modes. Here, we focus on understanding the microstructural evolution of different 2H-MoSe(2) morphologies and their layers using LFR scattering. We grew phase-pure 2H-MoSe(2) (with variable microstructures) directly on a Mo foil using a two-furnace ambient-pressure chemical vapor deposition (CVD) system by carefully controlling the process parameters. We analyzed the layers of exfoliated flakes after ultrasonication and drop-cast 2H-MoSe(2) of different layer thicknesses by choosing different concentrations of 2H-MoSe(2) solutions. Further detailed analyses of the respective LFR regions confirm the presence of newly identified Raman signals for the 2H-MoSe(2) nanosheets drop-cast on Raman-grade CaF(2). Our results show that CaF(2) is an appropriate Raman-enhancing substrate compared to Si/SiO(2) as it presents new LFR modes of 2H-MoSe(2). Therefore, CaF(2) substrates are a promising medium to characterize in detail other TMDCs using LFR spectroscopy.
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spelling pubmed-88299172022-02-11 CVD-Assisted Synthesis of 2D Layered MoSe(2) on Mo Foil and Low Frequency Raman Scattering of Its Exfoliated Few-Layer Nanosheets on CaF(2) Substrates Konar, Rajashree Rajeswaran, Bharathi Paul, Atanu Teblum, Eti Aviv, Hagit Perelshtein, Ilana Grinberg, Ilya Tischler, Yaakov Raphael Nessim, Gilbert Daniel ACS Omega [Image: see text] Transition-metal dichalcogenides (TMDCs) are unique layered materials with exotic properties. So, examining their structures holds tremendous importance. 2H-MoSe(2) (analogous to MoS(2); Gr. 6 TMDC) is a crucial optoelectronic material studied extensively using Raman spectroscopy. In this regard, low-frequency Raman (LFR) spectroscopy can probe this material’s structure as it reveals distinct vibration modes. Here, we focus on understanding the microstructural evolution of different 2H-MoSe(2) morphologies and their layers using LFR scattering. We grew phase-pure 2H-MoSe(2) (with variable microstructures) directly on a Mo foil using a two-furnace ambient-pressure chemical vapor deposition (CVD) system by carefully controlling the process parameters. We analyzed the layers of exfoliated flakes after ultrasonication and drop-cast 2H-MoSe(2) of different layer thicknesses by choosing different concentrations of 2H-MoSe(2) solutions. Further detailed analyses of the respective LFR regions confirm the presence of newly identified Raman signals for the 2H-MoSe(2) nanosheets drop-cast on Raman-grade CaF(2). Our results show that CaF(2) is an appropriate Raman-enhancing substrate compared to Si/SiO(2) as it presents new LFR modes of 2H-MoSe(2). Therefore, CaF(2) substrates are a promising medium to characterize in detail other TMDCs using LFR spectroscopy. American Chemical Society 2022-01-24 /pmc/articles/PMC8829917/ /pubmed/35155906 http://dx.doi.org/10.1021/acsomega.1c05652 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Konar, Rajashree
Rajeswaran, Bharathi
Paul, Atanu
Teblum, Eti
Aviv, Hagit
Perelshtein, Ilana
Grinberg, Ilya
Tischler, Yaakov Raphael
Nessim, Gilbert Daniel
CVD-Assisted Synthesis of 2D Layered MoSe(2) on Mo Foil and Low Frequency Raman Scattering of Its Exfoliated Few-Layer Nanosheets on CaF(2) Substrates
title CVD-Assisted Synthesis of 2D Layered MoSe(2) on Mo Foil and Low Frequency Raman Scattering of Its Exfoliated Few-Layer Nanosheets on CaF(2) Substrates
title_full CVD-Assisted Synthesis of 2D Layered MoSe(2) on Mo Foil and Low Frequency Raman Scattering of Its Exfoliated Few-Layer Nanosheets on CaF(2) Substrates
title_fullStr CVD-Assisted Synthesis of 2D Layered MoSe(2) on Mo Foil and Low Frequency Raman Scattering of Its Exfoliated Few-Layer Nanosheets on CaF(2) Substrates
title_full_unstemmed CVD-Assisted Synthesis of 2D Layered MoSe(2) on Mo Foil and Low Frequency Raman Scattering of Its Exfoliated Few-Layer Nanosheets on CaF(2) Substrates
title_short CVD-Assisted Synthesis of 2D Layered MoSe(2) on Mo Foil and Low Frequency Raman Scattering of Its Exfoliated Few-Layer Nanosheets on CaF(2) Substrates
title_sort cvd-assisted synthesis of 2d layered mose(2) on mo foil and low frequency raman scattering of its exfoliated few-layer nanosheets on caf(2) substrates
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8829917/
https://www.ncbi.nlm.nih.gov/pubmed/35155906
http://dx.doi.org/10.1021/acsomega.1c05652
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