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Electrospinning Preparation, Structure, and Properties of Fe(3)O(4)/Tb(acac)(3)phen/Polystyrene Bifunctional Microfibers

Compared to single functional materials, multifunctional materials with magnetism and luminescence are more attractive and promising; Thus, it has become an important subject. In our work, bifunctional Fe(3)O(4)/Tb(acac)(3)phen/polystyrene) microfibers with magnetic and luminescent properties (acac:...

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Autores principales: Liu, Lina, Qin, Ruifei, Fan, Xiaofeng, Wang, Kexin, Wang, Xiujie, Wang, Hao, Chen, Yongjun, Wang, Jintao, Wang, Yi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10302180/
https://www.ncbi.nlm.nih.gov/pubmed/37374592
http://dx.doi.org/10.3390/ma16124409
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author Liu, Lina
Qin, Ruifei
Fan, Xiaofeng
Wang, Kexin
Wang, Xiujie
Wang, Hao
Chen, Yongjun
Wang, Jintao
Wang, Yi
author_facet Liu, Lina
Qin, Ruifei
Fan, Xiaofeng
Wang, Kexin
Wang, Xiujie
Wang, Hao
Chen, Yongjun
Wang, Jintao
Wang, Yi
author_sort Liu, Lina
collection PubMed
description Compared to single functional materials, multifunctional materials with magnetism and luminescence are more attractive and promising; Thus, it has become an important subject. In our work, bifunctional Fe(3)O(4)/Tb(acac)(3)phen/polystyrene) microfibers with magnetic and luminescent properties (acac: acetylacetone, phen: 1,10-phenanthroline) were synthesized by simple electrospinning process. The doping of Fe(3)O(4) and Tb(acac)(3)phen made the fiber diameter larger. The surface of pure polystyrene microfibers and microfibers doped only with Fe(3)O(4) nanoparticles were chapped similar to bark, whereas the surface of the microfibers was smoother after doping with Tb(acac)(3)phen complexes. The luminescent properties of the composite microfibers were systematically studied in contrast to pure Tb(acac)(3)phen complexes, including excitation and emission spectra, fluorescence dynamics, and the temperature dependence of intensity. Compared with the pure complexes, the thermal activation energy and thermal stability of composite microfiber was significantly improved, and the luminescence of the unit mass of Tb(acac)(3)phen complexes in composite microfibers was stronger than that in pure Tb(acac)(3)phen complexes. The magnetic properties of the composite microfibers were also investigated using hysteresis loops, and an interesting experimental phenomenon was found that the saturation magnetization of the composite microfibers gradually increased with the increase in the doping proportion of terbium complexes.
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spelling pubmed-103021802023-06-29 Electrospinning Preparation, Structure, and Properties of Fe(3)O(4)/Tb(acac)(3)phen/Polystyrene Bifunctional Microfibers Liu, Lina Qin, Ruifei Fan, Xiaofeng Wang, Kexin Wang, Xiujie Wang, Hao Chen, Yongjun Wang, Jintao Wang, Yi Materials (Basel) Article Compared to single functional materials, multifunctional materials with magnetism and luminescence are more attractive and promising; Thus, it has become an important subject. In our work, bifunctional Fe(3)O(4)/Tb(acac)(3)phen/polystyrene) microfibers with magnetic and luminescent properties (acac: acetylacetone, phen: 1,10-phenanthroline) were synthesized by simple electrospinning process. The doping of Fe(3)O(4) and Tb(acac)(3)phen made the fiber diameter larger. The surface of pure polystyrene microfibers and microfibers doped only with Fe(3)O(4) nanoparticles were chapped similar to bark, whereas the surface of the microfibers was smoother after doping with Tb(acac)(3)phen complexes. The luminescent properties of the composite microfibers were systematically studied in contrast to pure Tb(acac)(3)phen complexes, including excitation and emission spectra, fluorescence dynamics, and the temperature dependence of intensity. Compared with the pure complexes, the thermal activation energy and thermal stability of composite microfiber was significantly improved, and the luminescence of the unit mass of Tb(acac)(3)phen complexes in composite microfibers was stronger than that in pure Tb(acac)(3)phen complexes. The magnetic properties of the composite microfibers were also investigated using hysteresis loops, and an interesting experimental phenomenon was found that the saturation magnetization of the composite microfibers gradually increased with the increase in the doping proportion of terbium complexes. MDPI 2023-06-15 /pmc/articles/PMC10302180/ /pubmed/37374592 http://dx.doi.org/10.3390/ma16124409 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
Liu, Lina
Qin, Ruifei
Fan, Xiaofeng
Wang, Kexin
Wang, Xiujie
Wang, Hao
Chen, Yongjun
Wang, Jintao
Wang, Yi
Electrospinning Preparation, Structure, and Properties of Fe(3)O(4)/Tb(acac)(3)phen/Polystyrene Bifunctional Microfibers
title Electrospinning Preparation, Structure, and Properties of Fe(3)O(4)/Tb(acac)(3)phen/Polystyrene Bifunctional Microfibers
title_full Electrospinning Preparation, Structure, and Properties of Fe(3)O(4)/Tb(acac)(3)phen/Polystyrene Bifunctional Microfibers
title_fullStr Electrospinning Preparation, Structure, and Properties of Fe(3)O(4)/Tb(acac)(3)phen/Polystyrene Bifunctional Microfibers
title_full_unstemmed Electrospinning Preparation, Structure, and Properties of Fe(3)O(4)/Tb(acac)(3)phen/Polystyrene Bifunctional Microfibers
title_short Electrospinning Preparation, Structure, and Properties of Fe(3)O(4)/Tb(acac)(3)phen/Polystyrene Bifunctional Microfibers
title_sort electrospinning preparation, structure, and properties of fe(3)o(4)/tb(acac)(3)phen/polystyrene bifunctional microfibers
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10302180/
https://www.ncbi.nlm.nih.gov/pubmed/37374592
http://dx.doi.org/10.3390/ma16124409
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