CVD Grown Hybrid MoSe$_2$-WSe$_2$ Lateral/Vertical Heterostructures with Strong Interlayer Exciton Emission

Fuente: arXiv
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Autori principali: Hossain, Md Tarik, Shradha, Sai, Printschler, Axel, Picker, Julian, Oswald, Luc F., Fuehrer, Julian, Engel, Nicole, Shah, Honey J., Neumann, Christof, Markina, Daria I., Quincke, Moritz, Biskupek, Johannes, Watanabe, Kenji, Taniguchi, Takashi, Kaiser, Ute, Urbaszek, Bernhard, Turchanin, Andrey
Natura: Preprint
Pubblicazione: 2026
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author Hossain, Md Tarik
Shradha, Sai
Printschler, Axel
Picker, Julian
Oswald, Luc F.
Fuehrer, Julian
Engel, Nicole
Shah, Honey J.
Neumann, Christof
Markina, Daria I.
Quincke, Moritz
Biskupek, Johannes
Watanabe, Kenji
Taniguchi, Takashi
Kaiser, Ute
Urbaszek, Bernhard
Turchanin, Andrey
author_facet Hossain, Md Tarik
Shradha, Sai
Printschler, Axel
Picker, Julian
Oswald, Luc F.
Fuehrer, Julian
Engel, Nicole
Shah, Honey J.
Neumann, Christof
Markina, Daria I.
Quincke, Moritz
Biskupek, Johannes
Watanabe, Kenji
Taniguchi, Takashi
Kaiser, Ute
Urbaszek, Bernhard
Turchanin, Andrey
contents Lateral heterostructures of 2D transition metal dichalcogenide offer a powerful platform to investigate photonic and electronic phenomena at atomically sharp interfaces. However, their controlled engineering, including tuning lateral domain size and integration into vertical van der Waals heterostructures with other 2D materials, remains challenging. Here, we present a facile route for the synthesis of two types of heterostructures consisting of monolayers of MoSe$_2$ and WSe$_2$ - purely lateral (HS I) and hybrid lateral/vertical (HS II) - using liquid precursors of transition metal salts and chemical vapor deposition (CVD). Depending on the growth parameters, the heterostructure type and their lateral dimensions can be adjusted. We characterized properties of the HS I and HS II by complementary spectroscopic and microscopic techniques including Raman and photoluminescence spectroscopy, and optical and atomic force microscopy, and scanning electron and transmission electron microscopy. The photoluminescence measurements reveal strong interlayer exciton emission in the MoSe$_2$/WSe$_2$ region of HS II, which dominates the spectrum at 4 K and persisting up to room temperature. These results demonstrate high optical quality of the grown heterostructures which in combination with scalability of the developed approach paves the way for fundamental studies and device applications based on these unique 2D quantum materials.
format Preprint
id arxiv_https___arxiv_org_abs_2602_02871
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle CVD Grown Hybrid MoSe$_2$-WSe$_2$ Lateral/Vertical Heterostructures with Strong Interlayer Exciton Emission
Hossain, Md Tarik
Shradha, Sai
Printschler, Axel
Picker, Julian
Oswald, Luc F.
Fuehrer, Julian
Engel, Nicole
Shah, Honey J.
Neumann, Christof
Markina, Daria I.
Quincke, Moritz
Biskupek, Johannes
Watanabe, Kenji
Taniguchi, Takashi
Kaiser, Ute
Urbaszek, Bernhard
Turchanin, Andrey
Materials Science
Mesoscale and Nanoscale Physics
Lateral heterostructures of 2D transition metal dichalcogenide offer a powerful platform to investigate photonic and electronic phenomena at atomically sharp interfaces. However, their controlled engineering, including tuning lateral domain size and integration into vertical van der Waals heterostructures with other 2D materials, remains challenging. Here, we present a facile route for the synthesis of two types of heterostructures consisting of monolayers of MoSe$_2$ and WSe$_2$ - purely lateral (HS I) and hybrid lateral/vertical (HS II) - using liquid precursors of transition metal salts and chemical vapor deposition (CVD). Depending on the growth parameters, the heterostructure type and their lateral dimensions can be adjusted. We characterized properties of the HS I and HS II by complementary spectroscopic and microscopic techniques including Raman and photoluminescence spectroscopy, and optical and atomic force microscopy, and scanning electron and transmission electron microscopy. The photoluminescence measurements reveal strong interlayer exciton emission in the MoSe$_2$/WSe$_2$ region of HS II, which dominates the spectrum at 4 K and persisting up to room temperature. These results demonstrate high optical quality of the grown heterostructures which in combination with scalability of the developed approach paves the way for fundamental studies and device applications based on these unique 2D quantum materials.
title CVD Grown Hybrid MoSe$_2$-WSe$_2$ Lateral/Vertical Heterostructures with Strong Interlayer Exciton Emission
topic Materials Science
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2602.02871