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Toward controllable and predictable synthesis of high-entropy alloy nanocrystals
High-entropy alloy (HEA) nanocrystals have attracted extensive attention in catalysis. However, there are no effective strategies for synthesizing them in a controllable and predictable manner. With quinary HEA nanocrystals made of platinum-group metals as an example, we demonstrate that their struc...
Autores principales: | , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
American Association for the Advancement of Science
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10171813/ https://www.ncbi.nlm.nih.gov/pubmed/37163597 http://dx.doi.org/10.1126/sciadv.adf9931 |
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author | Liu, Yi-Hong Hsieh, Chia-Jui Hsu, Liang-Ching Lin, Kun-Han Hsiao, Yueh-Chun Chi, Chong-Chi Lin, Jui-Tai Chang, Chun-Wei Lin, Shang-Cheng Wu, Cheng-Yu Gao, Jia-Qi Pao, Chih-Wen Chang, Yin-Mei Lu, Ming-Yen Zhou, Shan Yang, Tung-Han |
author_facet | Liu, Yi-Hong Hsieh, Chia-Jui Hsu, Liang-Ching Lin, Kun-Han Hsiao, Yueh-Chun Chi, Chong-Chi Lin, Jui-Tai Chang, Chun-Wei Lin, Shang-Cheng Wu, Cheng-Yu Gao, Jia-Qi Pao, Chih-Wen Chang, Yin-Mei Lu, Ming-Yen Zhou, Shan Yang, Tung-Han |
author_sort | Liu, Yi-Hong |
collection | PubMed |
description | High-entropy alloy (HEA) nanocrystals have attracted extensive attention in catalysis. However, there are no effective strategies for synthesizing them in a controllable and predictable manner. With quinary HEA nanocrystals made of platinum-group metals as an example, we demonstrate that their structures with spatial compositions can be predicted by quantitatively knowing the reduction kinetics of metal precursors and entropy of mixing in the nanocrystals under dropwise addition of the mixing five–metal precursor solution. The time to reach a steady state for each precursor plays a pivotal role in determining the structures of HEA nanocrystals with homogeneous alloy and core-shell features. Compared to the commercial platinum/carbon and phase-separated counterparts, the dendritic HEA nanocrystals with a defect-rich surface show substantial enhancement in catalytic activity and durability toward both hydrogen evolution and oxidation. This quantitative study will lead to a paradigm shift in the design of HEA nanocrystals, pushing away from the trial-and-error approach. |
format | Online Article Text |
id | pubmed-10171813 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | American Association for the Advancement of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-101718132023-05-11 Toward controllable and predictable synthesis of high-entropy alloy nanocrystals Liu, Yi-Hong Hsieh, Chia-Jui Hsu, Liang-Ching Lin, Kun-Han Hsiao, Yueh-Chun Chi, Chong-Chi Lin, Jui-Tai Chang, Chun-Wei Lin, Shang-Cheng Wu, Cheng-Yu Gao, Jia-Qi Pao, Chih-Wen Chang, Yin-Mei Lu, Ming-Yen Zhou, Shan Yang, Tung-Han Sci Adv Physical and Materials Sciences High-entropy alloy (HEA) nanocrystals have attracted extensive attention in catalysis. However, there are no effective strategies for synthesizing them in a controllable and predictable manner. With quinary HEA nanocrystals made of platinum-group metals as an example, we demonstrate that their structures with spatial compositions can be predicted by quantitatively knowing the reduction kinetics of metal precursors and entropy of mixing in the nanocrystals under dropwise addition of the mixing five–metal precursor solution. The time to reach a steady state for each precursor plays a pivotal role in determining the structures of HEA nanocrystals with homogeneous alloy and core-shell features. Compared to the commercial platinum/carbon and phase-separated counterparts, the dendritic HEA nanocrystals with a defect-rich surface show substantial enhancement in catalytic activity and durability toward both hydrogen evolution and oxidation. This quantitative study will lead to a paradigm shift in the design of HEA nanocrystals, pushing away from the trial-and-error approach. American Association for the Advancement of Science 2023-05-10 /pmc/articles/PMC10171813/ /pubmed/37163597 http://dx.doi.org/10.1126/sciadv.adf9931 Text en Copyright © 2023 The Authors, some rights reserved; exclusive licensee American Association for the Advancement of Science. No claim to original U.S. Government Works. Distributed under a Creative Commons Attribution NonCommercial License 4.0 (CC BY-NC). https://creativecommons.org/licenses/by-nc/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial license (https://creativecommons.org/licenses/by-nc/4.0/) , which permits use, distribution, and reproduction in any medium, so long as the resultant use is not for commercial advantage and provided the original work is properly cited. |
spellingShingle | Physical and Materials Sciences Liu, Yi-Hong Hsieh, Chia-Jui Hsu, Liang-Ching Lin, Kun-Han Hsiao, Yueh-Chun Chi, Chong-Chi Lin, Jui-Tai Chang, Chun-Wei Lin, Shang-Cheng Wu, Cheng-Yu Gao, Jia-Qi Pao, Chih-Wen Chang, Yin-Mei Lu, Ming-Yen Zhou, Shan Yang, Tung-Han Toward controllable and predictable synthesis of high-entropy alloy nanocrystals |
title | Toward controllable and predictable synthesis of high-entropy alloy nanocrystals |
title_full | Toward controllable and predictable synthesis of high-entropy alloy nanocrystals |
title_fullStr | Toward controllable and predictable synthesis of high-entropy alloy nanocrystals |
title_full_unstemmed | Toward controllable and predictable synthesis of high-entropy alloy nanocrystals |
title_short | Toward controllable and predictable synthesis of high-entropy alloy nanocrystals |
title_sort | toward controllable and predictable synthesis of high-entropy alloy nanocrystals |
topic | Physical and Materials Sciences |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10171813/ https://www.ncbi.nlm.nih.gov/pubmed/37163597 http://dx.doi.org/10.1126/sciadv.adf9931 |
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