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Experiment and Theory in Concert To Unravel the Remarkable Electronic Properties of Na-Doped Eu(11)Zn(4)Sn(2)As(12): A Layered Zintl Phase

[Image: see text] Low-dimensional materials have unique optical, electronic, mechanical, and chemical properties that make them desirable for a wide range of applications. Nano-scaling materials to confine transport in at least one direction is a common method of designing materials with low-dimensi...

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Autores principales: Hauble, Ashlee K., Toriyama, Michael Y., Bartling, Stephan, Abdel-Mageed, Ali M., Snyder, G. Jeffrey, Kauzlarich, Susan M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2023
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10536979/
https://www.ncbi.nlm.nih.gov/pubmed/37780411
http://dx.doi.org/10.1021/acs.chemmater.3c01509
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author Hauble, Ashlee K.
Toriyama, Michael Y.
Bartling, Stephan
Abdel-Mageed, Ali M.
Snyder, G. Jeffrey
Kauzlarich, Susan M.
author_facet Hauble, Ashlee K.
Toriyama, Michael Y.
Bartling, Stephan
Abdel-Mageed, Ali M.
Snyder, G. Jeffrey
Kauzlarich, Susan M.
author_sort Hauble, Ashlee K.
collection PubMed
description [Image: see text] Low-dimensional materials have unique optical, electronic, mechanical, and chemical properties that make them desirable for a wide range of applications. Nano-scaling materials to confine transport in at least one direction is a common method of designing materials with low-dimensional electronic structures. However, bulk materials give rise to low-dimensional electronic structures when bonding is highly anisotropic. Layered Zintl phases are excellent candidates for investigation due to their directional bonding, structural variety, and tunability. However, the complexity of the structure and composition of many layered Zintl phases poses a challenge for producing phase-pure bulk samples to characterize. Eu(11)Zn(4)Sn(2)As(12) is a layered Zintl phase of significant complexity that is of interest for its magnetic, electronic, and thermoelectric properties. To prepare phase-pure Eu(11–x)Na(x)Zn(4)Sn(2)As(12), a binary EuAs phase was employed as a precursor, along with NaH. Experimental measurements reveal low thermal conductivity and a high Seebeck coefficient, while theoretical electronic structure calculations reveal a transition from a 3D to 2D electronic structure with increasing carrier concentration. Simulated thermoelectric properties also indicate anisotropic transport, and thermoelectric property measurements confirm the nonparabolicity of the relevant bands near the Fermi energy. Thermoelectric efficiency is known to improve as the dimensionality of the electronic structure is decreased, making this a promising material for further optimization and opening the door to further exploitation of layered Zintl phases with low-dimensional electronic structures for thermoelectric applications.
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spelling pubmed-105369792023-09-29 Experiment and Theory in Concert To Unravel the Remarkable Electronic Properties of Na-Doped Eu(11)Zn(4)Sn(2)As(12): A Layered Zintl Phase Hauble, Ashlee K. Toriyama, Michael Y. Bartling, Stephan Abdel-Mageed, Ali M. Snyder, G. Jeffrey Kauzlarich, Susan M. Chem Mater [Image: see text] Low-dimensional materials have unique optical, electronic, mechanical, and chemical properties that make them desirable for a wide range of applications. Nano-scaling materials to confine transport in at least one direction is a common method of designing materials with low-dimensional electronic structures. However, bulk materials give rise to low-dimensional electronic structures when bonding is highly anisotropic. Layered Zintl phases are excellent candidates for investigation due to their directional bonding, structural variety, and tunability. However, the complexity of the structure and composition of many layered Zintl phases poses a challenge for producing phase-pure bulk samples to characterize. Eu(11)Zn(4)Sn(2)As(12) is a layered Zintl phase of significant complexity that is of interest for its magnetic, electronic, and thermoelectric properties. To prepare phase-pure Eu(11–x)Na(x)Zn(4)Sn(2)As(12), a binary EuAs phase was employed as a precursor, along with NaH. Experimental measurements reveal low thermal conductivity and a high Seebeck coefficient, while theoretical electronic structure calculations reveal a transition from a 3D to 2D electronic structure with increasing carrier concentration. Simulated thermoelectric properties also indicate anisotropic transport, and thermoelectric property measurements confirm the nonparabolicity of the relevant bands near the Fermi energy. Thermoelectric efficiency is known to improve as the dimensionality of the electronic structure is decreased, making this a promising material for further optimization and opening the door to further exploitation of layered Zintl phases with low-dimensional electronic structures for thermoelectric applications. American Chemical Society 2023-09-14 /pmc/articles/PMC10536979/ /pubmed/37780411 http://dx.doi.org/10.1021/acs.chemmater.3c01509 Text en © 2023 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by/4.0/Permits the broadest form of re-use including for commercial purposes, provided that author attribution and integrity are maintained (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Hauble, Ashlee K.
Toriyama, Michael Y.
Bartling, Stephan
Abdel-Mageed, Ali M.
Snyder, G. Jeffrey
Kauzlarich, Susan M.
Experiment and Theory in Concert To Unravel the Remarkable Electronic Properties of Na-Doped Eu(11)Zn(4)Sn(2)As(12): A Layered Zintl Phase
title Experiment and Theory in Concert To Unravel the Remarkable Electronic Properties of Na-Doped Eu(11)Zn(4)Sn(2)As(12): A Layered Zintl Phase
title_full Experiment and Theory in Concert To Unravel the Remarkable Electronic Properties of Na-Doped Eu(11)Zn(4)Sn(2)As(12): A Layered Zintl Phase
title_fullStr Experiment and Theory in Concert To Unravel the Remarkable Electronic Properties of Na-Doped Eu(11)Zn(4)Sn(2)As(12): A Layered Zintl Phase
title_full_unstemmed Experiment and Theory in Concert To Unravel the Remarkable Electronic Properties of Na-Doped Eu(11)Zn(4)Sn(2)As(12): A Layered Zintl Phase
title_short Experiment and Theory in Concert To Unravel the Remarkable Electronic Properties of Na-Doped Eu(11)Zn(4)Sn(2)As(12): A Layered Zintl Phase
title_sort experiment and theory in concert to unravel the remarkable electronic properties of na-doped eu(11)zn(4)sn(2)as(12): a layered zintl phase
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10536979/
https://www.ncbi.nlm.nih.gov/pubmed/37780411
http://dx.doi.org/10.1021/acs.chemmater.3c01509
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