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Polymorphic transition and nucleation pathway of barium dititanate (BaTi(2)O(5)) during crystallization from undercooled liquid

The nucleation pathway plays an important role in vitrification, preparation of glass-ceramic composites and synthesis of metastable materials. In this paper, we studied the nucleation pathway of a novel ferroelectric BaTi(2)O(5) (BT2) during crystallization from undercooled liquid by aerodynamic le...

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Autores principales: Ge, Xuan, Hu, Qiaodan, Lu, Wenquan, Cao, Sheng, Yang, Liang, Xu, Mingqin, Xia, Mingxu, Li, Jianguo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6510902/
https://www.ncbi.nlm.nih.gov/pubmed/31076595
http://dx.doi.org/10.1038/s41598-019-43357-6
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author Ge, Xuan
Hu, Qiaodan
Lu, Wenquan
Cao, Sheng
Yang, Liang
Xu, Mingqin
Xia, Mingxu
Li, Jianguo
author_facet Ge, Xuan
Hu, Qiaodan
Lu, Wenquan
Cao, Sheng
Yang, Liang
Xu, Mingqin
Xia, Mingxu
Li, Jianguo
author_sort Ge, Xuan
collection PubMed
description The nucleation pathway plays an important role in vitrification, preparation of glass-ceramic composites and synthesis of metastable materials. In this paper, we studied the nucleation pathway of a novel ferroelectric BaTi(2)O(5) (BT2) during crystallization from undercooled liquid by aerodynamic levitation (ADL) containerless processing and structural analysis. An interesting polymorphic transition of BT2 regulated by the undercooling was observed during the crystallization process: the ferroelectric monoclinic phase (γ-BT2) was fabricated at low undercoolings and the paraelectric orthorhombic metastable phase (β-BT2) was obtained from hypercooled liquid. This polymorphic transition phenomenon corresponds to a non-classical nucleation pathway: metastable β-BT2 preferentially nucleates from undercooled melt and γ-BT2 is generated from β phase by solid-state phase transition. The two-step nucleation pathway stems from the structural heredity between the undercooled liquid and crystals. A stronger structural homology exists between the undercooled melt and β-BT2 than γ-BT2 based on diffraction data and atomic configurations analysis. This structural homology coupled with nucleation barrier calculation was used to elucidate the non-classical nucleation pathway of BT2 crystallization: the similarity of the structural unit (Ti-O polyhedra) between the undercooled liquid and the metastable β-BT2 reduces the nucleation barrier and contributes to the preferential precipitation of β-like clusters. This work reveals the formation route of BT2 from cooling melt, which not only benefits the synthesis and application of this novel functional material but also provides a guideline of the crystallization process of titanates from melt at atomic level.
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spelling pubmed-65109022019-05-23 Polymorphic transition and nucleation pathway of barium dititanate (BaTi(2)O(5)) during crystallization from undercooled liquid Ge, Xuan Hu, Qiaodan Lu, Wenquan Cao, Sheng Yang, Liang Xu, Mingqin Xia, Mingxu Li, Jianguo Sci Rep Article The nucleation pathway plays an important role in vitrification, preparation of glass-ceramic composites and synthesis of metastable materials. In this paper, we studied the nucleation pathway of a novel ferroelectric BaTi(2)O(5) (BT2) during crystallization from undercooled liquid by aerodynamic levitation (ADL) containerless processing and structural analysis. An interesting polymorphic transition of BT2 regulated by the undercooling was observed during the crystallization process: the ferroelectric monoclinic phase (γ-BT2) was fabricated at low undercoolings and the paraelectric orthorhombic metastable phase (β-BT2) was obtained from hypercooled liquid. This polymorphic transition phenomenon corresponds to a non-classical nucleation pathway: metastable β-BT2 preferentially nucleates from undercooled melt and γ-BT2 is generated from β phase by solid-state phase transition. The two-step nucleation pathway stems from the structural heredity between the undercooled liquid and crystals. A stronger structural homology exists between the undercooled melt and β-BT2 than γ-BT2 based on diffraction data and atomic configurations analysis. This structural homology coupled with nucleation barrier calculation was used to elucidate the non-classical nucleation pathway of BT2 crystallization: the similarity of the structural unit (Ti-O polyhedra) between the undercooled liquid and the metastable β-BT2 reduces the nucleation barrier and contributes to the preferential precipitation of β-like clusters. This work reveals the formation route of BT2 from cooling melt, which not only benefits the synthesis and application of this novel functional material but also provides a guideline of the crystallization process of titanates from melt at atomic level. Nature Publishing Group UK 2019-05-10 /pmc/articles/PMC6510902/ /pubmed/31076595 http://dx.doi.org/10.1038/s41598-019-43357-6 Text en © The Author(s) 2019 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Ge, Xuan
Hu, Qiaodan
Lu, Wenquan
Cao, Sheng
Yang, Liang
Xu, Mingqin
Xia, Mingxu
Li, Jianguo
Polymorphic transition and nucleation pathway of barium dititanate (BaTi(2)O(5)) during crystallization from undercooled liquid
title Polymorphic transition and nucleation pathway of barium dititanate (BaTi(2)O(5)) during crystallization from undercooled liquid
title_full Polymorphic transition and nucleation pathway of barium dititanate (BaTi(2)O(5)) during crystallization from undercooled liquid
title_fullStr Polymorphic transition and nucleation pathway of barium dititanate (BaTi(2)O(5)) during crystallization from undercooled liquid
title_full_unstemmed Polymorphic transition and nucleation pathway of barium dititanate (BaTi(2)O(5)) during crystallization from undercooled liquid
title_short Polymorphic transition and nucleation pathway of barium dititanate (BaTi(2)O(5)) during crystallization from undercooled liquid
title_sort polymorphic transition and nucleation pathway of barium dititanate (bati(2)o(5)) during crystallization from undercooled liquid
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6510902/
https://www.ncbi.nlm.nih.gov/pubmed/31076595
http://dx.doi.org/10.1038/s41598-019-43357-6
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