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Boosting of Magnetic, Ferroelectric, Energy Storage Efficiency, and Piezoelectric Properties of Zn Intercalated SrBi(4)Ti(4)O(15)-Based Ceramics

An appropriate amount of Zn-ions are incorporated into the high Curie temperature bismuth layer-structure ferroelectric material to fabricate Sr(0.2)Na(0.4)Pr(0.4)Bi(4)Ti(4)O(15):xwt%ZnO; (SNPBT:xZn), with x = 0, 0.10, 0.15, and 0.20 ceramic series to investigate the magnetic, ferroelectric, and ene...

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Autores principales: Jabeen, Nawishta, Rehman, Altaf Ur, Hassan, Najam Ul, Qaiser, Muhammad Adnan, Zaidi, Anum, Khan, Muhammad Usman, Khan, Imtiaz Ahmad, Nouman, Muhammad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9319282/
https://www.ncbi.nlm.nih.gov/pubmed/35888527
http://dx.doi.org/10.3390/ma15145057
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author Jabeen, Nawishta
Rehman, Altaf Ur
Hassan, Najam Ul
Qaiser, Muhammad Adnan
Zaidi, Anum
Khan, Muhammad Usman
Khan, Imtiaz Ahmad
Nouman, Muhammad
author_facet Jabeen, Nawishta
Rehman, Altaf Ur
Hassan, Najam Ul
Qaiser, Muhammad Adnan
Zaidi, Anum
Khan, Muhammad Usman
Khan, Imtiaz Ahmad
Nouman, Muhammad
author_sort Jabeen, Nawishta
collection PubMed
description An appropriate amount of Zn-ions are incorporated into the high Curie temperature bismuth layer-structure ferroelectric material to fabricate Sr(0.2)Na(0.4)Pr(0.4)Bi(4)Ti(4)O(15):xwt%ZnO; (SNPBT:xZn), with x = 0, 0.10, 0.15, and 0.20 ceramic series to investigate the magnetic, ferroelectric, and energy storage efficiency and piezoelectric properties. Pure SNPBT and SNPBT:xZn ceramics have maintained their structure even after the intercalation of Zn-ions at the lattice sites of SNPBT. The addition of ZnO in SNPBT has improved the multifunctional properties of the material at x = 0.15. At room temperature, SNPBT:0.15Zn has shown a high relative density of 96%, exhibited weak ferromagnetic behavior along with a low saturation magnetization (M(s)) of 0.028 emu/g with a low coercive field of 306 Oe, a high remnant polarization (P(r)) of 9.04 µC/cm(2), a recoverable energy density ([Formula: see text]) of ~0.5 J/cm(3), an energy conversion efficiency (η) of ~41%, a high piezoelectric co-efficient (d(33)) of 21 pC/N, and an impedance of 1.98 × 10(7) Ω, which are much improved as compared to pure SBT or pure SNPBT ceramics. Dielectric Constant (ɛ(r)) versus temperature plots present the sharp peak for SNPBT:0.15Zn ceramic at a Curie temperature (T(C)) ~ 605 °C, confirming the strong ferroelectric nature of the ceramic. Moreover, SNPBT:0.15Zn ceramic has shown strong, piezoelectric, thermally stable behavior, which remains at 76% (16 pC/N) of its initial value even after annealing at 500 °C. The achieved results clearly indicate that SNPBT:0.15Zn ceramic is a promising candidate for future wide-temperature pulse power applications and high-temperature piezoelectric devices.
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spelling pubmed-93192822022-07-27 Boosting of Magnetic, Ferroelectric, Energy Storage Efficiency, and Piezoelectric Properties of Zn Intercalated SrBi(4)Ti(4)O(15)-Based Ceramics Jabeen, Nawishta Rehman, Altaf Ur Hassan, Najam Ul Qaiser, Muhammad Adnan Zaidi, Anum Khan, Muhammad Usman Khan, Imtiaz Ahmad Nouman, Muhammad Materials (Basel) Article An appropriate amount of Zn-ions are incorporated into the high Curie temperature bismuth layer-structure ferroelectric material to fabricate Sr(0.2)Na(0.4)Pr(0.4)Bi(4)Ti(4)O(15):xwt%ZnO; (SNPBT:xZn), with x = 0, 0.10, 0.15, and 0.20 ceramic series to investigate the magnetic, ferroelectric, and energy storage efficiency and piezoelectric properties. Pure SNPBT and SNPBT:xZn ceramics have maintained their structure even after the intercalation of Zn-ions at the lattice sites of SNPBT. The addition of ZnO in SNPBT has improved the multifunctional properties of the material at x = 0.15. At room temperature, SNPBT:0.15Zn has shown a high relative density of 96%, exhibited weak ferromagnetic behavior along with a low saturation magnetization (M(s)) of 0.028 emu/g with a low coercive field of 306 Oe, a high remnant polarization (P(r)) of 9.04 µC/cm(2), a recoverable energy density ([Formula: see text]) of ~0.5 J/cm(3), an energy conversion efficiency (η) of ~41%, a high piezoelectric co-efficient (d(33)) of 21 pC/N, and an impedance of 1.98 × 10(7) Ω, which are much improved as compared to pure SBT or pure SNPBT ceramics. Dielectric Constant (ɛ(r)) versus temperature plots present the sharp peak for SNPBT:0.15Zn ceramic at a Curie temperature (T(C)) ~ 605 °C, confirming the strong ferroelectric nature of the ceramic. Moreover, SNPBT:0.15Zn ceramic has shown strong, piezoelectric, thermally stable behavior, which remains at 76% (16 pC/N) of its initial value even after annealing at 500 °C. The achieved results clearly indicate that SNPBT:0.15Zn ceramic is a promising candidate for future wide-temperature pulse power applications and high-temperature piezoelectric devices. MDPI 2022-07-20 /pmc/articles/PMC9319282/ /pubmed/35888527 http://dx.doi.org/10.3390/ma15145057 Text en © 2022 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
Jabeen, Nawishta
Rehman, Altaf Ur
Hassan, Najam Ul
Qaiser, Muhammad Adnan
Zaidi, Anum
Khan, Muhammad Usman
Khan, Imtiaz Ahmad
Nouman, Muhammad
Boosting of Magnetic, Ferroelectric, Energy Storage Efficiency, and Piezoelectric Properties of Zn Intercalated SrBi(4)Ti(4)O(15)-Based Ceramics
title Boosting of Magnetic, Ferroelectric, Energy Storage Efficiency, and Piezoelectric Properties of Zn Intercalated SrBi(4)Ti(4)O(15)-Based Ceramics
title_full Boosting of Magnetic, Ferroelectric, Energy Storage Efficiency, and Piezoelectric Properties of Zn Intercalated SrBi(4)Ti(4)O(15)-Based Ceramics
title_fullStr Boosting of Magnetic, Ferroelectric, Energy Storage Efficiency, and Piezoelectric Properties of Zn Intercalated SrBi(4)Ti(4)O(15)-Based Ceramics
title_full_unstemmed Boosting of Magnetic, Ferroelectric, Energy Storage Efficiency, and Piezoelectric Properties of Zn Intercalated SrBi(4)Ti(4)O(15)-Based Ceramics
title_short Boosting of Magnetic, Ferroelectric, Energy Storage Efficiency, and Piezoelectric Properties of Zn Intercalated SrBi(4)Ti(4)O(15)-Based Ceramics
title_sort boosting of magnetic, ferroelectric, energy storage efficiency, and piezoelectric properties of zn intercalated srbi(4)ti(4)o(15)-based ceramics
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9319282/
https://www.ncbi.nlm.nih.gov/pubmed/35888527
http://dx.doi.org/10.3390/ma15145057
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