Recent Advances in Spinel Ferrite-Based Thin Films: Synthesis, Performances, Applications, and Beyond
This review provides a comprehensive overview of the recent advances in the various typical spinel ferrite-based thin films with controlled synthesis, their performances, applications in multifunctional material fields, fundamental scientific challenges, and beyond. Firstly, the crystal structures o...
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Frontiers Media S.A.
2021
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oai:doaj.org-article:8bea2aebd2cd4ff4af02416c5a12a1562021-11-30T15:53:26ZRecent Advances in Spinel Ferrite-Based Thin Films: Synthesis, Performances, Applications, and Beyond2296-801610.3389/fmats.2021.718869https://doaj.org/article/8bea2aebd2cd4ff4af02416c5a12a1562021-11-01T00:00:00Zhttps://www.frontiersin.org/articles/10.3389/fmats.2021.718869/fullhttps://doaj.org/toc/2296-8016This review provides a comprehensive overview of the recent advances in the various typical spinel ferrite-based thin films with controlled synthesis, their performances, applications in multifunctional material fields, fundamental scientific challenges, and beyond. Firstly, the crystal structures of spinel ferrite-based thin films are introduced. Secondly, recent progress in traditional synthesizing and novel methods for preparation of spinel ferrite-based films are highlighted. Thirdly, their magnetism, electricity, optics performances, and applications in advanced information technology, energy storage and conversion, and environmental conservation fields are also summarized and discussed in-depth. Some effective strategies for optimizing performances and further applications are summarized. Finally, the present review work ends with a short discussion concerning the challenges, opportunities, and future prospects of spinel ferrite-based thin films.Aize HaoXueer NingFrontiers Media S.A.articlespinel ferrite-based thin filmscontrolled synthesisperformancesapplicationsfuture prospectTechnologyTENFrontiers in Materials, Vol 8 (2021) |
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spinel ferrite-based thin films controlled synthesis performances applications future prospect Technology T |
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spinel ferrite-based thin films controlled synthesis performances applications future prospect Technology T Aize Hao Xueer Ning Recent Advances in Spinel Ferrite-Based Thin Films: Synthesis, Performances, Applications, and Beyond |
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This review provides a comprehensive overview of the recent advances in the various typical spinel ferrite-based thin films with controlled synthesis, their performances, applications in multifunctional material fields, fundamental scientific challenges, and beyond. Firstly, the crystal structures of spinel ferrite-based thin films are introduced. Secondly, recent progress in traditional synthesizing and novel methods for preparation of spinel ferrite-based films are highlighted. Thirdly, their magnetism, electricity, optics performances, and applications in advanced information technology, energy storage and conversion, and environmental conservation fields are also summarized and discussed in-depth. Some effective strategies for optimizing performances and further applications are summarized. Finally, the present review work ends with a short discussion concerning the challenges, opportunities, and future prospects of spinel ferrite-based thin films. |
format |
article |
author |
Aize Hao Xueer Ning |
author_facet |
Aize Hao Xueer Ning |
author_sort |
Aize Hao |
title |
Recent Advances in Spinel Ferrite-Based Thin Films: Synthesis, Performances, Applications, and Beyond |
title_short |
Recent Advances in Spinel Ferrite-Based Thin Films: Synthesis, Performances, Applications, and Beyond |
title_full |
Recent Advances in Spinel Ferrite-Based Thin Films: Synthesis, Performances, Applications, and Beyond |
title_fullStr |
Recent Advances in Spinel Ferrite-Based Thin Films: Synthesis, Performances, Applications, and Beyond |
title_full_unstemmed |
Recent Advances in Spinel Ferrite-Based Thin Films: Synthesis, Performances, Applications, and Beyond |
title_sort |
recent advances in spinel ferrite-based thin films: synthesis, performances, applications, and beyond |
publisher |
Frontiers Media S.A. |
publishDate |
2021 |
url |
https://doaj.org/article/8bea2aebd2cd4ff4af02416c5a12a156 |
work_keys_str_mv |
AT aizehao recentadvancesinspinelferritebasedthinfilmssynthesisperformancesapplicationsandbeyond AT xueerning recentadvancesinspinelferritebasedthinfilmssynthesisperformancesapplicationsandbeyond |
_version_ |
1718406516749369344 |