Structure, dielectric, magnetic and magnetoelectric coupling properties of xPbTiO3/(1-x)NiFe2O4 composite ceramics

In this paper, xPbTiO3/(1-x)NiFe2O4 (PTO/NFO, x = 0.1, 0.2, 0.3, 0.4 and 0.5) ceramic composites were prepared by mixing of sol-gel synthesized PTO and NFO powders, followed by their uniaxial pressing and sintering at 1150 °C. The effects of PTO/NFO composition on crystal structure, surface morpholo...

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Main Authors: Zhixin Zeng, Ruicheng Xu, Li Cheng, Jinyu Liu, Heng Wu, Xiaofeng Qin, Shulin Xing, Xiaoling Deng, Rongli Gao
Format: Article
Language:English
Published: University of Novi Sad 2020-09-01
Series:Processing and Application of Ceramics
Subjects:
Online Access:http://www.tf.uns.ac.rs/publikacije/PAC/pdf/PAC%2049%2007.pdf
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spelling doaj-e5b1537859a74bcd9ed7c2b7fbe546232020-11-25T03:50:51ZengUniversity of Novi SadProcessing and Application of Ceramics1820-61312406-10342020-09-0114322323010.2298/PAC2003223ZStructure, dielectric, magnetic and magnetoelectric coupling properties of xPbTiO3/(1-x)NiFe2O4 composite ceramicsZhixin Zeng0Ruicheng Xu1Li Cheng2 Jinyu Liu3Heng Wu4Xiaofeng Qin5Shulin Xing6Xiaoling Deng7Rongli Gao8School of Metallurgy and Materials Engineering, Chongqing University of Science and Technology, Chongqing 401331, China; Chongqing Key Laboratory of Nano/Micro Composite Material and Device, Chongqing 401331, ChinaSchool of Metallurgy and Materials Engineering, Chongqing University of Science and Technology, Chongqing 401331, China; Chongqing Key Laboratory of Nano/Micro Composite Material and Device, Chongqing 401331, ChinaSchool of Metallurgy and Materials Engineering, Chongqing University of Science and Technology, Chongqing 401331, China; Chongqing Key Laboratory of Nano/Micro Composite Material and Device, Chongqing 401331, ChinaSchool of Metallurgy and Materials Engineering, Chongqing University of Science and Technology, Chongqing 401331, China; Chongqing Key Laboratory of Nano/Micro Composite Material and Device, Chongqing 401331, ChinaSchool of Metallurgy and Materials Engineering, Chongqing University of Science and Technology, Chongqing 401331, China; Chongqing Key Laboratory of Nano/Micro Composite Material and Device, Chongqing 401331, ChinaSchool of Metallurgy and Materials Engineering, Chongqing University of Science and Technology, Chongqing 401331, China; Chongqing Key Laboratory of Nano/Micro Composite Material and Device, Chongqing 401331, ChinaSchool of Metallurgy and Materials Engineering, Chongqing University of Science and Technology, Chongqing 401331, China; Chongqing Key Laboratory of Nano/Micro Composite Material and Device, Chongqing 401331, ChinaSchool of Metallurgy and Materials Engineering, Chongqing University of Science and Technology, Chongqing 401331, China; Chongqing Key Laboratory of Nano/Micro Composite Material and Device, Chongqing 401331, ChinaSchool of Metallurgy and Materials Engineering, Chongqing University of Science and Technology, Chongqing 401331, China; Chongqing Key Laboratory of Nano/Micro Composite Material and Device, Chongqing 401331, ChinaIn this paper, xPbTiO3/(1-x)NiFe2O4 (PTO/NFO, x = 0.1, 0.2, 0.3, 0.4 and 0.5) ceramic composites were prepared by mixing of sol-gel synthesized PTO and NFO powders, followed by their uniaxial pressing and sintering at 1150 °C. The effects of PTO/NFO composition on crystal structure, surface morphology, electrical, magnetic and magnetoelectric coupling properties were studied. XRD results showed that the prepared ceramics contain only PTO and NFO phases without any impurity phase. The samples were relatively dense while the grains were evenly distributed. The dielectric constant and loss varied monotonically with the frequency for different molar ratios. The hysteresis loop of the composites with high amount of high resistance NFO phase (x = 0.1, 0.2) has the shape characteristic for a material with large leakage current. The samples with x = 0.1 showed the largest saturated magnetization, while the sample with x = 0.2 had the maximum remnant magnetization. It was also shown that the polarization was affected by the external magnetic field of 1 mT and the strongest ME coupling (relative polarization change of 15.4%) was observed for the 0.5PbTiO3/0.5NiFe2O4 composite. In addition, the relevant calculation showed that the leakage mechanism may not be the main factor affecting the polarization of the obtained ceramics.http://www.tf.uns.ac.rs/publikacije/PAC/pdf/PAC%2049%2007.pdfpbtio3 /nife2o4 ceramicsferroelectricferromagneticmagnetoelectric coupling effect
collection DOAJ
language English
format Article
sources DOAJ
author Zhixin Zeng
Ruicheng Xu
Li Cheng
Jinyu Liu
Heng Wu
Xiaofeng Qin
Shulin Xing
Xiaoling Deng
Rongli Gao
spellingShingle Zhixin Zeng
Ruicheng Xu
Li Cheng
Jinyu Liu
Heng Wu
Xiaofeng Qin
Shulin Xing
Xiaoling Deng
Rongli Gao
Structure, dielectric, magnetic and magnetoelectric coupling properties of xPbTiO3/(1-x)NiFe2O4 composite ceramics
Processing and Application of Ceramics
pbtio3 /nife2o4 ceramics
ferroelectric
ferromagnetic
magnetoelectric coupling effect
author_facet Zhixin Zeng
Ruicheng Xu
Li Cheng
Jinyu Liu
Heng Wu
Xiaofeng Qin
Shulin Xing
Xiaoling Deng
Rongli Gao
author_sort Zhixin Zeng
title Structure, dielectric, magnetic and magnetoelectric coupling properties of xPbTiO3/(1-x)NiFe2O4 composite ceramics
title_short Structure, dielectric, magnetic and magnetoelectric coupling properties of xPbTiO3/(1-x)NiFe2O4 composite ceramics
title_full Structure, dielectric, magnetic and magnetoelectric coupling properties of xPbTiO3/(1-x)NiFe2O4 composite ceramics
title_fullStr Structure, dielectric, magnetic and magnetoelectric coupling properties of xPbTiO3/(1-x)NiFe2O4 composite ceramics
title_full_unstemmed Structure, dielectric, magnetic and magnetoelectric coupling properties of xPbTiO3/(1-x)NiFe2O4 composite ceramics
title_sort structure, dielectric, magnetic and magnetoelectric coupling properties of xpbtio3/(1-x)nife2o4 composite ceramics
publisher University of Novi Sad
series Processing and Application of Ceramics
issn 1820-6131
2406-1034
publishDate 2020-09-01
description In this paper, xPbTiO3/(1-x)NiFe2O4 (PTO/NFO, x = 0.1, 0.2, 0.3, 0.4 and 0.5) ceramic composites were prepared by mixing of sol-gel synthesized PTO and NFO powders, followed by their uniaxial pressing and sintering at 1150 °C. The effects of PTO/NFO composition on crystal structure, surface morphology, electrical, magnetic and magnetoelectric coupling properties were studied. XRD results showed that the prepared ceramics contain only PTO and NFO phases without any impurity phase. The samples were relatively dense while the grains were evenly distributed. The dielectric constant and loss varied monotonically with the frequency for different molar ratios. The hysteresis loop of the composites with high amount of high resistance NFO phase (x = 0.1, 0.2) has the shape characteristic for a material with large leakage current. The samples with x = 0.1 showed the largest saturated magnetization, while the sample with x = 0.2 had the maximum remnant magnetization. It was also shown that the polarization was affected by the external magnetic field of 1 mT and the strongest ME coupling (relative polarization change of 15.4%) was observed for the 0.5PbTiO3/0.5NiFe2O4 composite. In addition, the relevant calculation showed that the leakage mechanism may not be the main factor affecting the polarization of the obtained ceramics.
topic pbtio3 /nife2o4 ceramics
ferroelectric
ferromagnetic
magnetoelectric coupling effect
url http://www.tf.uns.ac.rs/publikacije/PAC/pdf/PAC%2049%2007.pdf
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