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Photoluminescence and piezoelectric properties of Pr-doped NBT-xBZT ceramics: Sensitive to structure transition.(Report)

To link to full-text access for this article, visit this link: http://dx.doi.org/10.1016/j.jallcom.2013.01.096 Byline: Peng Du (a), Laihui Luo (a), Weiping Li (a), Yueping Zhang (a)(b), Hongbing Chen (b) Keywords: Lead-free ceramic; Piezoelectric; Ferroelectric; Photoluminescence Abstract: a* All th... Full description

Journal Title: Journal of Alloys and Compounds May 15, 2013, Vol.559, p.92(5)
Main Author: Du, Peng
Other Authors: Luo, Laihui , Li, Weiping , Zhang, Yueping , Chen, Hongbing
Format: Electronic Article Electronic Article
Language: English
Subjects:
Quelle: Cengage Learning, Inc.
ID: ISSN: 0925-8388
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title: Photoluminescence and piezoelectric properties of Pr-doped NBT-xBZT ceramics: Sensitive to structure transition.(Report)
format: Article
creator:
  • Du, Peng
  • Luo, Laihui
  • Li, Weiping
  • Zhang, Yueping
  • Chen, Hongbing
subjects:
  • Photoluminescence -- Analysis
  • Ceramics -- Analysis
ispartof: Journal of Alloys and Compounds, May 15, 2013, Vol.559, p.92(5)
description: To link to full-text access for this article, visit this link: http://dx.doi.org/10.1016/j.jallcom.2013.01.096 Byline: Peng Du (a), Laihui Luo (a), Weiping Li (a), Yueping Zhang (a)(b), Hongbing Chen (b) Keywords: Lead-free ceramic; Piezoelectric; Ferroelectric; Photoluminescence Abstract: a* All the NBT-xBZT:Pr ceramics exhibit a strong red emission at 607nm. a* The piezoelectric and ferroelectric properties are improved by BZT substitution. a* The red emission is influenced by phase transition. Author Affiliation: (a) Department of Physics, Ningbo University, 315211 Ningbo, China (b) Institute of Materials Science and Engineering, Ningbo University, 315211 Ningbo, China Article History: Received 1 January 2013; Revised 19 January 2013; Accepted 21 January 2013
language: English
source: Cengage Learning, Inc.
identifier: ISSN: 0925-8388
fulltext: fulltext
issn:
  • 0925-8388
  • 09258388
url: Link


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descriptionTo link to full-text access for this article, visit this link: http://dx.doi.org/10.1016/j.jallcom.2013.01.096 Byline: Peng Du (a), Laihui Luo (a), Weiping Li (a), Yueping Zhang (a)(b), Hongbing Chen (b) Keywords: Lead-free ceramic; Piezoelectric; Ferroelectric; Photoluminescence Abstract: a* All the NBT-xBZT:Pr ceramics exhibit a strong red emission at 607nm. a* The piezoelectric and ferroelectric properties are improved by BZT substitution. a* The red emission is influenced by phase transition. Author Affiliation: (a) Department of Physics, Ningbo University, 315211 Ningbo, China (b) Institute of Materials Science and Engineering, Ningbo University, 315211 Ningbo, China Article History: Received 1 January 2013; Revised 19 January 2013; Accepted 21 January 2013
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descriptionTo link to full-text access for this article, visit this link: http://dx.doi.org/10.1016/j.jallcom.2013.01.096 Byline: Peng Du (a), Laihui Luo (a), Weiping Li (a), Yueping Zhang (a)(b), Hongbing Chen (b) Keywords: Lead-free ceramic; Piezoelectric; Ferroelectric; Photoluminescence Abstract: a* All the NBT-xBZT:Pr ceramics exhibit a strong red emission at 607nm. a* The piezoelectric and ferroelectric properties are improved by BZT substitution. a* The red emission is influenced by phase transition. Author Affiliation: (a) Department of Physics, Ningbo University, 315211 Ningbo, China (b) Institute of Materials Science and Engineering, Ningbo University, 315211 Ningbo, China Article History: Received 1 January 2013; Revised 19 January 2013; Accepted 21 January 2013
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abstractTo link to full-text access for this article, visit this link: http://dx.doi.org/10.1016/j.jallcom.2013.01.096 Byline: Peng Du (a), Laihui Luo (a), Weiping Li (a), Yueping Zhang (a)(b), Hongbing Chen (b) Keywords: Lead-free ceramic; Piezoelectric; Ferroelectric; Photoluminescence Abstract: a* All the NBT-xBZT:Pr ceramics exhibit a strong red emission at 607nm. a* The piezoelectric and ferroelectric properties are improved by BZT substitution. a* The red emission is influenced by phase transition. Author Affiliation: (a) Department of Physics, Ningbo University, 315211 Ningbo, China (b) Institute of Materials Science and Engineering, Ningbo University, 315211 Ningbo, China Article History: Received 1 January 2013; Revised 19 January 2013; Accepted 21 January 2013
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