Mixed anion control of enhanced negative thermal expansion in the oxysulfide of PbTiO3

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Hauptverfasser: Pan, Zhao, Liang, Zhengli, Wang, Xiao, Fang, Yue-Wen, Ye, Xubin, Liu, Zhehong, Nishikubo, Takumi, Sakai, Yuki, Shen, Xi, Liu, Qiumin, Kawaguchi, Shogo, Zhan, Fei, Fan, Longlong, Wang, Yong-Yang, Ma, Chen-Yan, Jiang, Xingxing, Lin, Zheshuai, Yu, Richeng, Xing, Xianran, Azuma, Masaki, Long, Youwen
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Veröffentlicht: 2025
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author Pan, Zhao
Liang, Zhengli
Wang, Xiao
Fang, Yue-Wen
Ye, Xubin
Liu, Zhehong
Nishikubo, Takumi
Sakai, Yuki
Shen, Xi
Liu, Qiumin
Kawaguchi, Shogo
Zhan, Fei
Fan, Longlong
Wang, Yong-Yang
Ma, Chen-Yan
Jiang, Xingxing
Lin, Zheshuai
Yu, Richeng
Xing, Xianran
Azuma, Masaki
Long, Youwen
author_facet Pan, Zhao
Liang, Zhengli
Wang, Xiao
Fang, Yue-Wen
Ye, Xubin
Liu, Zhehong
Nishikubo, Takumi
Sakai, Yuki
Shen, Xi
Liu, Qiumin
Kawaguchi, Shogo
Zhan, Fei
Fan, Longlong
Wang, Yong-Yang
Ma, Chen-Yan
Jiang, Xingxing
Lin, Zheshuai
Yu, Richeng
Xing, Xianran
Azuma, Masaki
Long, Youwen
contents The rare physical property of negative thermal expansion (NTE) is intriguing because materials with large NTE over a wide temperature range can serve as high-performance thermal expansion compensators. However, applications of NTE are hindered by the fact that most of the available NTE materials show small magnitudes of NTE, and/or NTE occurs only in a narrow temperature range. Herein, for the first time, we investigated the effect of anion substitution instead of general Pb/Ti-site substitutions on the thermal expansion properties of a typical ferroelectric NTE material, PbTiO3. Intriguingly, the substitution of S for O in PbTiO3 further increases the tetragonality of PbTiO3. Consequently, an unusually enhanced NTE with an average volumetric coefficient of thermal expansion $\barα_V$ = -2.50 $\times$ 10$^{-5}$/K was achieved over a wide temperature range (300 -- 790 K), which is contrasted to that of pristine PbTiO3 ($\barα_V$ = -1.99 $\times$ 10$^{-5}$/K RT -- 763 K). The intensified NTE is attributed to the enhanced hybridization between Pb/Ti and O/S atoms by the substitution of S, as evidenced by our theoretical investigations. We therefore demonstrate a new technique for introducing mixed anions to achieve large NTE over a wide temperature range in PbTiO3-based ferroelectrics.
format Preprint
id arxiv_https___arxiv_org_abs_2501_09701
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Mixed anion control of enhanced negative thermal expansion in the oxysulfide of PbTiO3
Pan, Zhao
Liang, Zhengli
Wang, Xiao
Fang, Yue-Wen
Ye, Xubin
Liu, Zhehong
Nishikubo, Takumi
Sakai, Yuki
Shen, Xi
Liu, Qiumin
Kawaguchi, Shogo
Zhan, Fei
Fan, Longlong
Wang, Yong-Yang
Ma, Chen-Yan
Jiang, Xingxing
Lin, Zheshuai
Yu, Richeng
Xing, Xianran
Azuma, Masaki
Long, Youwen
Materials Science
Applied Physics
The rare physical property of negative thermal expansion (NTE) is intriguing because materials with large NTE over a wide temperature range can serve as high-performance thermal expansion compensators. However, applications of NTE are hindered by the fact that most of the available NTE materials show small magnitudes of NTE, and/or NTE occurs only in a narrow temperature range. Herein, for the first time, we investigated the effect of anion substitution instead of general Pb/Ti-site substitutions on the thermal expansion properties of a typical ferroelectric NTE material, PbTiO3. Intriguingly, the substitution of S for O in PbTiO3 further increases the tetragonality of PbTiO3. Consequently, an unusually enhanced NTE with an average volumetric coefficient of thermal expansion $\barα_V$ = -2.50 $\times$ 10$^{-5}$/K was achieved over a wide temperature range (300 -- 790 K), which is contrasted to that of pristine PbTiO3 ($\barα_V$ = -1.99 $\times$ 10$^{-5}$/K RT -- 763 K). The intensified NTE is attributed to the enhanced hybridization between Pb/Ti and O/S atoms by the substitution of S, as evidenced by our theoretical investigations. We therefore demonstrate a new technique for introducing mixed anions to achieve large NTE over a wide temperature range in PbTiO3-based ferroelectrics.
title Mixed anion control of enhanced negative thermal expansion in the oxysulfide of PbTiO3
topic Materials Science
Applied Physics
url https://arxiv.org/abs/2501.09701