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An exsolution constructed FeNi/NiFe(2)O(4) composite: preferential breaking of octahedral metal–oxygen bonds in a spinel oxide
Exsolution is an ingenious strategy for the in situ construction of metal- or alloy-decorated oxides and, due to its promising energy related catalysis applications, has advanced from use in perovskites to use in spinels. Despite its great importance for designing target composites, the ability to i...
Autores principales: | , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
The Royal Society of Chemistry
2022
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9384820/ https://www.ncbi.nlm.nih.gov/pubmed/36093019 http://dx.doi.org/10.1039/d2sc02149h |
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author | Guo, Xiaoyan Yao, Lu Hou, Xiangyan Wu, Xiaofeng Zhang, Yaowen Zhu, Qian Guo, Zhangtao Li, Shuting Jiang, Yilan Feng, Shouhua Huang, Keke |
author_facet | Guo, Xiaoyan Yao, Lu Hou, Xiangyan Wu, Xiaofeng Zhang, Yaowen Zhu, Qian Guo, Zhangtao Li, Shuting Jiang, Yilan Feng, Shouhua Huang, Keke |
author_sort | Guo, Xiaoyan |
collection | PubMed |
description | Exsolution is an ingenious strategy for the in situ construction of metal- or alloy-decorated oxides and, due to its promising energy related catalysis applications, has advanced from use in perovskites to use in spinels. Despite its great importance for designing target composites, the ability to identify whether active metal ions at octahedral or tetrahedral sites will preferentially exsolve in a spinel remains unexplored. Here, an inverse spinel NiFe(2)O(4) (NFO) was employed as a prototype and FeNi/NFO composites were successfully constructed via exsolution. The preferential breaking of octahedral metal–oxygen bonds in the spinel oxide was directly observed using Mössbauer and X-ray absorption spectroscopy. This was further verified from the negative segregation energies calculated based on density-functional theory. One exsolved FeNi/NFO composite exhibits enhanced electrochemical activity with an overpotential of 283 mV at 10 mA cm(−2) and a long stability time for the oxygen evolution reaction. This work offers a unique insight into spinel exsolution based on the preferential breaking of chemical bonds and may be an effective guide for the design of new composite catalysts where the desired metal ions are deliberately introduced to octahedral and/or tetrahedral sites. |
format | Online Article Text |
id | pubmed-9384820 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | The Royal Society of Chemistry |
record_format | MEDLINE/PubMed |
spelling | pubmed-93848202022-09-08 An exsolution constructed FeNi/NiFe(2)O(4) composite: preferential breaking of octahedral metal–oxygen bonds in a spinel oxide Guo, Xiaoyan Yao, Lu Hou, Xiangyan Wu, Xiaofeng Zhang, Yaowen Zhu, Qian Guo, Zhangtao Li, Shuting Jiang, Yilan Feng, Shouhua Huang, Keke Chem Sci Chemistry Exsolution is an ingenious strategy for the in situ construction of metal- or alloy-decorated oxides and, due to its promising energy related catalysis applications, has advanced from use in perovskites to use in spinels. Despite its great importance for designing target composites, the ability to identify whether active metal ions at octahedral or tetrahedral sites will preferentially exsolve in a spinel remains unexplored. Here, an inverse spinel NiFe(2)O(4) (NFO) was employed as a prototype and FeNi/NFO composites were successfully constructed via exsolution. The preferential breaking of octahedral metal–oxygen bonds in the spinel oxide was directly observed using Mössbauer and X-ray absorption spectroscopy. This was further verified from the negative segregation energies calculated based on density-functional theory. One exsolved FeNi/NFO composite exhibits enhanced electrochemical activity with an overpotential of 283 mV at 10 mA cm(−2) and a long stability time for the oxygen evolution reaction. This work offers a unique insight into spinel exsolution based on the preferential breaking of chemical bonds and may be an effective guide for the design of new composite catalysts where the desired metal ions are deliberately introduced to octahedral and/or tetrahedral sites. The Royal Society of Chemistry 2022-07-21 /pmc/articles/PMC9384820/ /pubmed/36093019 http://dx.doi.org/10.1039/d2sc02149h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/ |
spellingShingle | Chemistry Guo, Xiaoyan Yao, Lu Hou, Xiangyan Wu, Xiaofeng Zhang, Yaowen Zhu, Qian Guo, Zhangtao Li, Shuting Jiang, Yilan Feng, Shouhua Huang, Keke An exsolution constructed FeNi/NiFe(2)O(4) composite: preferential breaking of octahedral metal–oxygen bonds in a spinel oxide |
title | An exsolution constructed FeNi/NiFe(2)O(4) composite: preferential breaking of octahedral metal–oxygen bonds in a spinel oxide |
title_full | An exsolution constructed FeNi/NiFe(2)O(4) composite: preferential breaking of octahedral metal–oxygen bonds in a spinel oxide |
title_fullStr | An exsolution constructed FeNi/NiFe(2)O(4) composite: preferential breaking of octahedral metal–oxygen bonds in a spinel oxide |
title_full_unstemmed | An exsolution constructed FeNi/NiFe(2)O(4) composite: preferential breaking of octahedral metal–oxygen bonds in a spinel oxide |
title_short | An exsolution constructed FeNi/NiFe(2)O(4) composite: preferential breaking of octahedral metal–oxygen bonds in a spinel oxide |
title_sort | exsolution constructed feni/nife(2)o(4) composite: preferential breaking of octahedral metal–oxygen bonds in a spinel oxide |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9384820/ https://www.ncbi.nlm.nih.gov/pubmed/36093019 http://dx.doi.org/10.1039/d2sc02149h |
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