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Mechanochemical Synthesis of Sustainable Ternary and Quaternary Nanostructured Cu(2)SnS(3), Cu(2)ZnSnS(4), and Cu(2)ZnSnSe(4) Chalcogenides for Thermoelectric Applications
Copper-based chalcogenides have emerged as promising thermoelectric materials due to their high thermoelectric performance, tunable transport properties, earth abundance and low toxicity. We have presented an overview of experimental results and first-principal calculations investigating the thermoe...
Autores principales: | , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9866987/ https://www.ncbi.nlm.nih.gov/pubmed/36678122 http://dx.doi.org/10.3390/nano13020366 |
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author | Nautiyal, Himanshu Lohani, Ketan Mukherjee, Binayak Isotta, Eleonora Malagutti, Marcelo Augusto Ataollahi, Narges Pallecchi, Ilaria Putti, Marina Misture, Scott T. Rebuffi, Luca Scardi, Paolo |
author_facet | Nautiyal, Himanshu Lohani, Ketan Mukherjee, Binayak Isotta, Eleonora Malagutti, Marcelo Augusto Ataollahi, Narges Pallecchi, Ilaria Putti, Marina Misture, Scott T. Rebuffi, Luca Scardi, Paolo |
author_sort | Nautiyal, Himanshu |
collection | PubMed |
description | Copper-based chalcogenides have emerged as promising thermoelectric materials due to their high thermoelectric performance, tunable transport properties, earth abundance and low toxicity. We have presented an overview of experimental results and first-principal calculations investigating the thermoelectric properties of various polymorphs of Cu(2)SnS(3) (CTS), Cu(2)ZnSnS(4) (CZTS), and Cu(2)ZnSnSe(4) (CZTSe) synthesized by high-energy reactive mechanical alloying (ball milling). Of particular interest are the disordered polymorphs of these materials, which exhibit phonon-glass–electron-crystal behavior—a decoupling of electron and phonon transport properties. The interplay of cationic disorder and nanostructuring leads to ultra-low thermal conductivities while enhancing electronic transport. These beneficial transport properties are the consequence of a plethora of features, including trap states, anharmonicity, rattling, and conductive surface states, both topologically trivial and non-trivial. Based on experimental results and computational methods, this report aims to elucidate the details of the electronic and lattice transport properties, thereby confirming that the higher thermoelectric (TE) performance of disordered polymorphs is essentially due to their complex crystallographic structures. In addition, we have presented synchrotron X-ray diffraction (SR-XRD) measurements and ab initio molecular dynamics (AIMD) simulations of the root-mean-square displacement (RMSD) in these materials, confirming anharmonicity and bond inhomogeneity for disordered polymorphs. |
format | Online Article Text |
id | pubmed-9866987 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-98669872023-01-22 Mechanochemical Synthesis of Sustainable Ternary and Quaternary Nanostructured Cu(2)SnS(3), Cu(2)ZnSnS(4), and Cu(2)ZnSnSe(4) Chalcogenides for Thermoelectric Applications Nautiyal, Himanshu Lohani, Ketan Mukherjee, Binayak Isotta, Eleonora Malagutti, Marcelo Augusto Ataollahi, Narges Pallecchi, Ilaria Putti, Marina Misture, Scott T. Rebuffi, Luca Scardi, Paolo Nanomaterials (Basel) Article Copper-based chalcogenides have emerged as promising thermoelectric materials due to their high thermoelectric performance, tunable transport properties, earth abundance and low toxicity. We have presented an overview of experimental results and first-principal calculations investigating the thermoelectric properties of various polymorphs of Cu(2)SnS(3) (CTS), Cu(2)ZnSnS(4) (CZTS), and Cu(2)ZnSnSe(4) (CZTSe) synthesized by high-energy reactive mechanical alloying (ball milling). Of particular interest are the disordered polymorphs of these materials, which exhibit phonon-glass–electron-crystal behavior—a decoupling of electron and phonon transport properties. The interplay of cationic disorder and nanostructuring leads to ultra-low thermal conductivities while enhancing electronic transport. These beneficial transport properties are the consequence of a plethora of features, including trap states, anharmonicity, rattling, and conductive surface states, both topologically trivial and non-trivial. Based on experimental results and computational methods, this report aims to elucidate the details of the electronic and lattice transport properties, thereby confirming that the higher thermoelectric (TE) performance of disordered polymorphs is essentially due to their complex crystallographic structures. In addition, we have presented synchrotron X-ray diffraction (SR-XRD) measurements and ab initio molecular dynamics (AIMD) simulations of the root-mean-square displacement (RMSD) in these materials, confirming anharmonicity and bond inhomogeneity for disordered polymorphs. MDPI 2023-01-16 /pmc/articles/PMC9866987/ /pubmed/36678122 http://dx.doi.org/10.3390/nano13020366 Text en © 2023 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 Nautiyal, Himanshu Lohani, Ketan Mukherjee, Binayak Isotta, Eleonora Malagutti, Marcelo Augusto Ataollahi, Narges Pallecchi, Ilaria Putti, Marina Misture, Scott T. Rebuffi, Luca Scardi, Paolo Mechanochemical Synthesis of Sustainable Ternary and Quaternary Nanostructured Cu(2)SnS(3), Cu(2)ZnSnS(4), and Cu(2)ZnSnSe(4) Chalcogenides for Thermoelectric Applications |
title | Mechanochemical Synthesis of Sustainable Ternary and Quaternary Nanostructured Cu(2)SnS(3), Cu(2)ZnSnS(4), and Cu(2)ZnSnSe(4) Chalcogenides for Thermoelectric Applications |
title_full | Mechanochemical Synthesis of Sustainable Ternary and Quaternary Nanostructured Cu(2)SnS(3), Cu(2)ZnSnS(4), and Cu(2)ZnSnSe(4) Chalcogenides for Thermoelectric Applications |
title_fullStr | Mechanochemical Synthesis of Sustainable Ternary and Quaternary Nanostructured Cu(2)SnS(3), Cu(2)ZnSnS(4), and Cu(2)ZnSnSe(4) Chalcogenides for Thermoelectric Applications |
title_full_unstemmed | Mechanochemical Synthesis of Sustainable Ternary and Quaternary Nanostructured Cu(2)SnS(3), Cu(2)ZnSnS(4), and Cu(2)ZnSnSe(4) Chalcogenides for Thermoelectric Applications |
title_short | Mechanochemical Synthesis of Sustainable Ternary and Quaternary Nanostructured Cu(2)SnS(3), Cu(2)ZnSnS(4), and Cu(2)ZnSnSe(4) Chalcogenides for Thermoelectric Applications |
title_sort | mechanochemical synthesis of sustainable ternary and quaternary nanostructured cu(2)sns(3), cu(2)znsns(4), and cu(2)znsnse(4) chalcogenides for thermoelectric applications |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9866987/ https://www.ncbi.nlm.nih.gov/pubmed/36678122 http://dx.doi.org/10.3390/nano13020366 |
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