Study on vibrational Raman modes and electric properties of lead-free sodium bismuth titanate – bismuth magnesium zirconate piezoelectric ceramics

Raman spectra of lead- free piezoelectric sodium bismuth titanate-bismuth magnesium zirconate (1-x)(Na0.5Bi0.5)TiO3-xBi(Mg0.5Zr0.5)O3 [NBT-BMZ] ceramics are recorded and analyzed. Vibration phonon frequencies associated to Bi-O, Na-O, TiO6 octahedra and oxygen vibrations are noticed. Intensity chang...

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Main Author: D.E. Jain Ruth
Format: Article
Language:English
Published: Elsevier 2023-06-01
Series:Chemical Physics Impact
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2667022423000117
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author D.E. Jain Ruth
author_facet D.E. Jain Ruth
author_sort D.E. Jain Ruth
collection DOAJ
description Raman spectra of lead- free piezoelectric sodium bismuth titanate-bismuth magnesium zirconate (1-x)(Na0.5Bi0.5)TiO3-xBi(Mg0.5Zr0.5)O3 [NBT-BMZ] ceramics are recorded and analyzed. Vibration phonon frequencies associated to Bi-O, Na-O, TiO6 octahedra and oxygen vibrations are noticed. Intensity changes on E(TO1) mode at 110 cm−1 arising from Bi-O vibrations is due to difference in polarizability of substituted cations in the A-site of NBT. Frequency shift in 247 and 281 cm−1 mode are attributed to lattice change and TiO6 octahedral rotation induced by substitution of BMZ in NBT. Increase of E(TO4) and A1(TO4) vibration modes due to decrease of TiO6 octahedral rotation reduces the lattice distortion and homogeneous strain which in turn prompts softening of coercive field and enhances remnant polarization as well as dielectric constant in NBT-BMZ piezoceramics. Also, vibrational Raman modes E(TO1), E(TO4) and A1(TO4) are the decisive phonons for interpreting the interesting dielectric behavior of NBT-based ceramics.
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spelling doaj.art-522e86a526374d9986d4c1a2e6f489a02023-06-19T04:30:09ZengElsevierChemical Physics Impact2667-02242023-06-016100172Study on vibrational Raman modes and electric properties of lead-free sodium bismuth titanate – bismuth magnesium zirconate piezoelectric ceramicsD.E. Jain Ruth0Department of Physics, St. Xavier's College (Autonomous) Palayamkottai, Tirunelveli, India 627002Raman spectra of lead- free piezoelectric sodium bismuth titanate-bismuth magnesium zirconate (1-x)(Na0.5Bi0.5)TiO3-xBi(Mg0.5Zr0.5)O3 [NBT-BMZ] ceramics are recorded and analyzed. Vibration phonon frequencies associated to Bi-O, Na-O, TiO6 octahedra and oxygen vibrations are noticed. Intensity changes on E(TO1) mode at 110 cm−1 arising from Bi-O vibrations is due to difference in polarizability of substituted cations in the A-site of NBT. Frequency shift in 247 and 281 cm−1 mode are attributed to lattice change and TiO6 octahedral rotation induced by substitution of BMZ in NBT. Increase of E(TO4) and A1(TO4) vibration modes due to decrease of TiO6 octahedral rotation reduces the lattice distortion and homogeneous strain which in turn prompts softening of coercive field and enhances remnant polarization as well as dielectric constant in NBT-BMZ piezoceramics. Also, vibrational Raman modes E(TO1), E(TO4) and A1(TO4) are the decisive phonons for interpreting the interesting dielectric behavior of NBT-based ceramics.http://www.sciencedirect.com/science/article/pii/S2667022423000117PiezoelectricLattice volumeSodium bismuth titanateRaman
spellingShingle D.E. Jain Ruth
Study on vibrational Raman modes and electric properties of lead-free sodium bismuth titanate – bismuth magnesium zirconate piezoelectric ceramics
Chemical Physics Impact
Piezoelectric
Lattice volume
Sodium bismuth titanate
Raman
title Study on vibrational Raman modes and electric properties of lead-free sodium bismuth titanate – bismuth magnesium zirconate piezoelectric ceramics
title_full Study on vibrational Raman modes and electric properties of lead-free sodium bismuth titanate – bismuth magnesium zirconate piezoelectric ceramics
title_fullStr Study on vibrational Raman modes and electric properties of lead-free sodium bismuth titanate – bismuth magnesium zirconate piezoelectric ceramics
title_full_unstemmed Study on vibrational Raman modes and electric properties of lead-free sodium bismuth titanate – bismuth magnesium zirconate piezoelectric ceramics
title_short Study on vibrational Raman modes and electric properties of lead-free sodium bismuth titanate – bismuth magnesium zirconate piezoelectric ceramics
title_sort study on vibrational raman modes and electric properties of lead free sodium bismuth titanate bismuth magnesium zirconate piezoelectric ceramics
topic Piezoelectric
Lattice volume
Sodium bismuth titanate
Raman
url http://www.sciencedirect.com/science/article/pii/S2667022423000117
work_keys_str_mv AT dejainruth studyonvibrationalramanmodesandelectricpropertiesofleadfreesodiumbismuthtitanatebismuthmagnesiumzirconatepiezoelectricceramics