Lead-Free (Ba<inf>0.70</inf>Sr<inf>0.30</inf>)TiO<inf>3</inf>-Modified Bi<inf>0.5</inf>(Na<inf>0.80</inf>K<inf>0.20</inf>)<inf>0.5</inf>TiO<inf>3</inf>Ceramics with Large Electric Field-Induced Strains

© 2016 The American Ceramic Society. The dielectric, ferroelectric, and electric field-induced strain behavior of Bi0.5(Na0.80K0.20)0.5TiO3(BNKT) ceramics modified with (Ba0.70Sr0.30)O3(BST) were investigated as a function of composition and temperature. The ceramic samples were synthesized by a sol...

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Main Authors: Pharatree Jaita, Anucha Watcharapasorn, Nitish Kumar, Sukanda Jiansirisomboon, David P. Cann
Format: Journal
Published: 2018
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http://cmuir.cmu.ac.th/jspui/handle/6653943832/55648
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Institution: Chiang Mai University
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spelling th-cmuir.6653943832-556482018-09-05T03:04:55Z Lead-Free (Ba<inf>0.70</inf>Sr<inf>0.30</inf>)TiO<inf>3</inf>-Modified Bi<inf>0.5</inf>(Na<inf>0.80</inf>K<inf>0.20</inf>)<inf>0.5</inf>TiO<inf>3</inf>Ceramics with Large Electric Field-Induced Strains Pharatree Jaita Anucha Watcharapasorn Nitish Kumar Sukanda Jiansirisomboon David P. Cann Earth and Planetary Sciences Materials Science © 2016 The American Ceramic Society. The dielectric, ferroelectric, and electric field-induced strain behavior of Bi0.5(Na0.80K0.20)0.5TiO3(BNKT) ceramics modified with (Ba0.70Sr0.30)O3(BST) were investigated as a function of composition and temperature. The ceramic samples were synthesized by a solid-state mixed oxide method and sintered at 1125°C for 2 h. The XRD and Raman spectra showed coexisting rhombohedral and tetragonal phases throughout the entire compositional range with the tetragonal phase becoming dominant at higher BST concentrations. For all compositions, the temperature dependence of the dielectric spectra revealed a frequency dependence that is characteristic of a relaxor mechanism. This suggests that these ceramics lacked long-range order and it appears that the maximum disorder was observed for the composition with 5 mol% BST (BNKT-0.05BST sample). This was evidenced by the observation of pinched hysteresis loops, even at room temperature, and a significant decrease in the Prand Ecvalues which resulted in large electric field-induced strains (Smax) of 0.40% and a normalized strain coefficient (d33∗- = Smax/Emax) of 732 pm/V. This significant strain enhancement at the composition of x = 0.05 may be attributed to both a composition-induced structural phase transition and a field-induced relaxor to ferroelectric phase transition. 2018-09-05T02:59:14Z 2018-09-05T02:59:14Z 2016-05-01 Journal 15512916 00027820 2-s2.0-84969335392 10.1111/jace.14136 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84969335392&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/55648
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
topic Earth and Planetary Sciences
Materials Science
spellingShingle Earth and Planetary Sciences
Materials Science
Pharatree Jaita
Anucha Watcharapasorn
Nitish Kumar
Sukanda Jiansirisomboon
David P. Cann
Lead-Free (Ba<inf>0.70</inf>Sr<inf>0.30</inf>)TiO<inf>3</inf>-Modified Bi<inf>0.5</inf>(Na<inf>0.80</inf>K<inf>0.20</inf>)<inf>0.5</inf>TiO<inf>3</inf>Ceramics with Large Electric Field-Induced Strains
description © 2016 The American Ceramic Society. The dielectric, ferroelectric, and electric field-induced strain behavior of Bi0.5(Na0.80K0.20)0.5TiO3(BNKT) ceramics modified with (Ba0.70Sr0.30)O3(BST) were investigated as a function of composition and temperature. The ceramic samples were synthesized by a solid-state mixed oxide method and sintered at 1125°C for 2 h. The XRD and Raman spectra showed coexisting rhombohedral and tetragonal phases throughout the entire compositional range with the tetragonal phase becoming dominant at higher BST concentrations. For all compositions, the temperature dependence of the dielectric spectra revealed a frequency dependence that is characteristic of a relaxor mechanism. This suggests that these ceramics lacked long-range order and it appears that the maximum disorder was observed for the composition with 5 mol% BST (BNKT-0.05BST sample). This was evidenced by the observation of pinched hysteresis loops, even at room temperature, and a significant decrease in the Prand Ecvalues which resulted in large electric field-induced strains (Smax) of 0.40% and a normalized strain coefficient (d33∗- = Smax/Emax) of 732 pm/V. This significant strain enhancement at the composition of x = 0.05 may be attributed to both a composition-induced structural phase transition and a field-induced relaxor to ferroelectric phase transition.
format Journal
author Pharatree Jaita
Anucha Watcharapasorn
Nitish Kumar
Sukanda Jiansirisomboon
David P. Cann
author_facet Pharatree Jaita
Anucha Watcharapasorn
Nitish Kumar
Sukanda Jiansirisomboon
David P. Cann
author_sort Pharatree Jaita
title Lead-Free (Ba<inf>0.70</inf>Sr<inf>0.30</inf>)TiO<inf>3</inf>-Modified Bi<inf>0.5</inf>(Na<inf>0.80</inf>K<inf>0.20</inf>)<inf>0.5</inf>TiO<inf>3</inf>Ceramics with Large Electric Field-Induced Strains
title_short Lead-Free (Ba<inf>0.70</inf>Sr<inf>0.30</inf>)TiO<inf>3</inf>-Modified Bi<inf>0.5</inf>(Na<inf>0.80</inf>K<inf>0.20</inf>)<inf>0.5</inf>TiO<inf>3</inf>Ceramics with Large Electric Field-Induced Strains
title_full Lead-Free (Ba<inf>0.70</inf>Sr<inf>0.30</inf>)TiO<inf>3</inf>-Modified Bi<inf>0.5</inf>(Na<inf>0.80</inf>K<inf>0.20</inf>)<inf>0.5</inf>TiO<inf>3</inf>Ceramics with Large Electric Field-Induced Strains
title_fullStr Lead-Free (Ba<inf>0.70</inf>Sr<inf>0.30</inf>)TiO<inf>3</inf>-Modified Bi<inf>0.5</inf>(Na<inf>0.80</inf>K<inf>0.20</inf>)<inf>0.5</inf>TiO<inf>3</inf>Ceramics with Large Electric Field-Induced Strains
title_full_unstemmed Lead-Free (Ba<inf>0.70</inf>Sr<inf>0.30</inf>)TiO<inf>3</inf>-Modified Bi<inf>0.5</inf>(Na<inf>0.80</inf>K<inf>0.20</inf>)<inf>0.5</inf>TiO<inf>3</inf>Ceramics with Large Electric Field-Induced Strains
title_sort lead-free (ba<inf>0.70</inf>sr<inf>0.30</inf>)tio<inf>3</inf>-modified bi<inf>0.5</inf>(na<inf>0.80</inf>k<inf>0.20</inf>)<inf>0.5</inf>tio<inf>3</inf>ceramics with large electric field-induced strains
publishDate 2018
url https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84969335392&origin=inward
http://cmuir.cmu.ac.th/jspui/handle/6653943832/55648
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