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Crystal Growth and Thermal Properties of Quasi-One-Dimensional van der Waals Material ZrSe(3)

ZrSe(3) with a quasi-one-dimensional (quasi-1D) crystal structure belongs to the transition metal trichalcogenides (TMTCs) family. Owing to its unique optical, electrical, and optoelectrical properties, ZrSe(3) is promising for applications in field effect transistors, photodetectors, and thermoelec...

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Autores principales: Xu, Youming, Guo, Shucheng, Chen, Xi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9693893/
https://www.ncbi.nlm.nih.gov/pubmed/36422424
http://dx.doi.org/10.3390/mi13111994
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author Xu, Youming
Guo, Shucheng
Chen, Xi
author_facet Xu, Youming
Guo, Shucheng
Chen, Xi
author_sort Xu, Youming
collection PubMed
description ZrSe(3) with a quasi-one-dimensional (quasi-1D) crystal structure belongs to the transition metal trichalcogenides (TMTCs) family. Owing to its unique optical, electrical, and optoelectrical properties, ZrSe(3) is promising for applications in field effect transistors, photodetectors, and thermoelectrics. Compared with extensive studies of the above-mentioned physical properties, the thermal properties of ZrSe(3) have not been experimentally investigated. Here, we report the crystal growth and thermal and optical properties of ZrSe(3). Millimeter-sized single crystalline ZrSe(3) flakes were prepared using a chemical vapor transport method. These flakes could be exfoliated into microribbons by liquid-phase exfoliation. The transmission electron microscope studies suggested that the obtained microribbons were single crystals along the chain axis. ZrSe(3) exhibited a specific heat of 0.311 J g(−1) K(−1) at 300 K, close to the calculated value of the Dulong–Petit limit. The fitting of low-temperature specific heat led to a Debye temperature of 110 K and an average sound velocity of 2122 m s(−1). The thermal conductivity of a polycrystalline ZrSe(3) sample exhibited a maximum value of 10.4 ± 1.9 W m(−1) K(−1) at 40 K. The thermal conductivity decreased above 40 K and reached a room-temperature value of 5.4 ± 1.3 W m(−1) K(−1). The Debye model fitting of the solid thermal conductivity agreed well with the experimental data below 200 K but showed a deviation at high temperatures, indicating that optical phonons could substantially contribute to thermal transport at high temperatures. The calculated phonon mean free path decreased with temperatures between 2 and 21 K. The mean free path at 2 K approached 3 μm, which was similar to the grain size of the polycrystalline sample. This work provides useful insights into the preparation and thermal properties of quasi-1D ZrSe(3).
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spelling pubmed-96938932022-11-26 Crystal Growth and Thermal Properties of Quasi-One-Dimensional van der Waals Material ZrSe(3) Xu, Youming Guo, Shucheng Chen, Xi Micromachines (Basel) Article ZrSe(3) with a quasi-one-dimensional (quasi-1D) crystal structure belongs to the transition metal trichalcogenides (TMTCs) family. Owing to its unique optical, electrical, and optoelectrical properties, ZrSe(3) is promising for applications in field effect transistors, photodetectors, and thermoelectrics. Compared with extensive studies of the above-mentioned physical properties, the thermal properties of ZrSe(3) have not been experimentally investigated. Here, we report the crystal growth and thermal and optical properties of ZrSe(3). Millimeter-sized single crystalline ZrSe(3) flakes were prepared using a chemical vapor transport method. These flakes could be exfoliated into microribbons by liquid-phase exfoliation. The transmission electron microscope studies suggested that the obtained microribbons were single crystals along the chain axis. ZrSe(3) exhibited a specific heat of 0.311 J g(−1) K(−1) at 300 K, close to the calculated value of the Dulong–Petit limit. The fitting of low-temperature specific heat led to a Debye temperature of 110 K and an average sound velocity of 2122 m s(−1). The thermal conductivity of a polycrystalline ZrSe(3) sample exhibited a maximum value of 10.4 ± 1.9 W m(−1) K(−1) at 40 K. The thermal conductivity decreased above 40 K and reached a room-temperature value of 5.4 ± 1.3 W m(−1) K(−1). The Debye model fitting of the solid thermal conductivity agreed well with the experimental data below 200 K but showed a deviation at high temperatures, indicating that optical phonons could substantially contribute to thermal transport at high temperatures. The calculated phonon mean free path decreased with temperatures between 2 and 21 K. The mean free path at 2 K approached 3 μm, which was similar to the grain size of the polycrystalline sample. This work provides useful insights into the preparation and thermal properties of quasi-1D ZrSe(3). MDPI 2022-11-17 /pmc/articles/PMC9693893/ /pubmed/36422424 http://dx.doi.org/10.3390/mi13111994 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Xu, Youming
Guo, Shucheng
Chen, Xi
Crystal Growth and Thermal Properties of Quasi-One-Dimensional van der Waals Material ZrSe(3)
title Crystal Growth and Thermal Properties of Quasi-One-Dimensional van der Waals Material ZrSe(3)
title_full Crystal Growth and Thermal Properties of Quasi-One-Dimensional van der Waals Material ZrSe(3)
title_fullStr Crystal Growth and Thermal Properties of Quasi-One-Dimensional van der Waals Material ZrSe(3)
title_full_unstemmed Crystal Growth and Thermal Properties of Quasi-One-Dimensional van der Waals Material ZrSe(3)
title_short Crystal Growth and Thermal Properties of Quasi-One-Dimensional van der Waals Material ZrSe(3)
title_sort crystal growth and thermal properties of quasi-one-dimensional van der waals material zrse(3)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9693893/
https://www.ncbi.nlm.nih.gov/pubmed/36422424
http://dx.doi.org/10.3390/mi13111994
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