Crystal Growth of Chalcogenides and Oxy-Chalcogenides Using Chloride Exchange Reaction

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Hauptverfasser: Singh, Shantanu, Zhao, Boyang, Stevens, Christopher E., Surendran, Mythili, Huang, Tzu-Chi, Lin, Bi-Hsuan, Hendrickson, Joshua R., Ravichandran, Jayakanth
Format: Preprint
Veröffentlicht: 2025
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author Singh, Shantanu
Zhao, Boyang
Stevens, Christopher E.
Surendran, Mythili
Huang, Tzu-Chi
Lin, Bi-Hsuan
Hendrickson, Joshua R.
Ravichandran, Jayakanth
author_facet Singh, Shantanu
Zhao, Boyang
Stevens, Christopher E.
Surendran, Mythili
Huang, Tzu-Chi
Lin, Bi-Hsuan
Hendrickson, Joshua R.
Ravichandran, Jayakanth
contents Chalcogenides and oxy-chalcogenides, including complex chalcogenides and transition metal dichalcogenides, are emerging semiconductors with direct or indirect band gaps within the visible spectrum. These materials are being explored for various photonic and electronic applications, such as photodetectors, photovoltaics, and phase-change electronics. Understanding the fundamental properties of these materials is crucial for optimizing their functionalities. Therefore, the availability of large, high-quality single crystals of chalcogenides and oxy-chalcogenides is essential for a better comprehension of their structure and properties. In this study, we present a novel crystal growth method that utilizes the exchange reaction between BaS and ZrCl$_4$/ HfCl$_4$. By carefully controlling the stoichiometric ratio of the binary sulfide to the chloride, we can grow single crystals of several materials, such as ZrS$_2$, HfS$_2$, BaZrS$_3$, and ZrOS. This method results in large single crystals with a short reaction time of 24 to 48 hours. High-resolution thin film diffraction and single-crystal X-ray diffraction confirm the quality of the crystals produced through this exchange reaction. We also report the optical properties of these materials investigated using photoluminescence and Raman measurements. The chloride exchange reaction method paves the way for the synthesis of single crystals of chalcogenides and oxy-chalcogenide systems with a short reaction time but with low mosaicity and can be an alternative growth technique for single crystals of materials that are difficult to synthesize using conventional growth techniques.
format Preprint
id arxiv_https___arxiv_org_abs_2506_16695
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Crystal Growth of Chalcogenides and Oxy-Chalcogenides Using Chloride Exchange Reaction
Singh, Shantanu
Zhao, Boyang
Stevens, Christopher E.
Surendran, Mythili
Huang, Tzu-Chi
Lin, Bi-Hsuan
Hendrickson, Joshua R.
Ravichandran, Jayakanth
Materials Science
Chalcogenides and oxy-chalcogenides, including complex chalcogenides and transition metal dichalcogenides, are emerging semiconductors with direct or indirect band gaps within the visible spectrum. These materials are being explored for various photonic and electronic applications, such as photodetectors, photovoltaics, and phase-change electronics. Understanding the fundamental properties of these materials is crucial for optimizing their functionalities. Therefore, the availability of large, high-quality single crystals of chalcogenides and oxy-chalcogenides is essential for a better comprehension of their structure and properties. In this study, we present a novel crystal growth method that utilizes the exchange reaction between BaS and ZrCl$_4$/ HfCl$_4$. By carefully controlling the stoichiometric ratio of the binary sulfide to the chloride, we can grow single crystals of several materials, such as ZrS$_2$, HfS$_2$, BaZrS$_3$, and ZrOS. This method results in large single crystals with a short reaction time of 24 to 48 hours. High-resolution thin film diffraction and single-crystal X-ray diffraction confirm the quality of the crystals produced through this exchange reaction. We also report the optical properties of these materials investigated using photoluminescence and Raman measurements. The chloride exchange reaction method paves the way for the synthesis of single crystals of chalcogenides and oxy-chalcogenide systems with a short reaction time but with low mosaicity and can be an alternative growth technique for single crystals of materials that are difficult to synthesize using conventional growth techniques.
title Crystal Growth of Chalcogenides and Oxy-Chalcogenides Using Chloride Exchange Reaction
topic Materials Science
url https://arxiv.org/abs/2506.16695