Upconversion luminescence, ferroelectrics and piezoelectrics of Er Doped SrBi4Ti4O15

Er3+ doped SrBi4Ti4O15 (SBT) bismuth layered-structure ferroelectric ceramics were synthesized by the traditional solid-state method, and their upconversion photoluminescent (UC) properties were investigated as a function of Er3+ concentration and incident pump power. Green (555 nm) and red (670 nm)...

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Main Authors: Dengfeng Peng, Hua Zou, Chaonan Xu, Xusheng Wang, Xi Yao, Jian Lin, Tiantuo Sun
Format: Article
Language:English
Published: AIP Publishing LLC 2012-12-01
Series:AIP Advances
Online Access:http://dx.doi.org/10.1063/1.4773318
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spelling doaj-88ae6b6abd4a468aaa63dbf76cf402402020-11-24T23:39:16ZengAIP Publishing LLCAIP Advances2158-32262012-12-0124042187042187-1010.1063/1.4773318087204ADVUpconversion luminescence, ferroelectrics and piezoelectrics of Er Doped SrBi4Ti4O15Dengfeng Peng0Hua Zou1Chaonan Xu2Xusheng Wang3Xi Yao4Jian Lin5Tiantuo Sun6Functional Materials Research Laboratory, Tongji University, 1239 Siping Road, Shanghai 200092, ChinaFunctional Materials Research Laboratory, Tongji University, 1239 Siping Road, Shanghai 200092, ChinaNational Institute of Advanced Industrial Science and Technology, Kyushu, 807-1 Shuku, Tosu, Saga 841-0052, JapanFunctional Materials Research Laboratory, Tongji University, 1239 Siping Road, Shanghai 200092, ChinaFunctional Materials Research Laboratory, Tongji University, 1239 Siping Road, Shanghai 200092, ChinaSchool of Material Science and Engineering, Tongji University, 4800 Cao'an Highway, Shanghai 201804, ChinaSchool of Material Science and Engineering, Tongji University, 4800 Cao'an Highway, Shanghai 201804, ChinaEr3+ doped SrBi4Ti4O15 (SBT) bismuth layered-structure ferroelectric ceramics were synthesized by the traditional solid-state method, and their upconversion photoluminescent (UC) properties were investigated as a function of Er3+ concentration and incident pump power. Green (555 nm) and red (670 nm) emission bands were obtained under 980 nm excitation at room temperature, which corresponded to the radiative transitions from 4S3/2, and 4F9/2 to 4I15/2, respectively. The emission color of the samples could be changed with moderating the doping concentrations. The dependence of UC intensity on pumping power indicated a two-photon emission process. Studies on dielectric properties indicated that the introduction of Er increased the ferroelectric-paraelectric phase transition temperature (Tc) of SBT, thus making this ceramic suitable for piezoelectric sensor applications at higher temperatures. Piezoelectric measurement showed that the doped SBT had a relative higher piezoelectric constant d33 compared with the non-doped ceramics. The thermal annealing behaviors of the doped sample revealed a stable piezoelectric property. The doped SBT showed bright UC emission while simultaneously having increased Tc and d33. As a multifunctional material, Er doped SBT ferroelectric oxide showed great potential in application of sensor, future optical-electro integration and coupling devices.http://dx.doi.org/10.1063/1.4773318
collection DOAJ
language English
format Article
sources DOAJ
author Dengfeng Peng
Hua Zou
Chaonan Xu
Xusheng Wang
Xi Yao
Jian Lin
Tiantuo Sun
spellingShingle Dengfeng Peng
Hua Zou
Chaonan Xu
Xusheng Wang
Xi Yao
Jian Lin
Tiantuo Sun
Upconversion luminescence, ferroelectrics and piezoelectrics of Er Doped SrBi4Ti4O15
AIP Advances
author_facet Dengfeng Peng
Hua Zou
Chaonan Xu
Xusheng Wang
Xi Yao
Jian Lin
Tiantuo Sun
author_sort Dengfeng Peng
title Upconversion luminescence, ferroelectrics and piezoelectrics of Er Doped SrBi4Ti4O15
title_short Upconversion luminescence, ferroelectrics and piezoelectrics of Er Doped SrBi4Ti4O15
title_full Upconversion luminescence, ferroelectrics and piezoelectrics of Er Doped SrBi4Ti4O15
title_fullStr Upconversion luminescence, ferroelectrics and piezoelectrics of Er Doped SrBi4Ti4O15
title_full_unstemmed Upconversion luminescence, ferroelectrics and piezoelectrics of Er Doped SrBi4Ti4O15
title_sort upconversion luminescence, ferroelectrics and piezoelectrics of er doped srbi4ti4o15
publisher AIP Publishing LLC
series AIP Advances
issn 2158-3226
publishDate 2012-12-01
description Er3+ doped SrBi4Ti4O15 (SBT) bismuth layered-structure ferroelectric ceramics were synthesized by the traditional solid-state method, and their upconversion photoluminescent (UC) properties were investigated as a function of Er3+ concentration and incident pump power. Green (555 nm) and red (670 nm) emission bands were obtained under 980 nm excitation at room temperature, which corresponded to the radiative transitions from 4S3/2, and 4F9/2 to 4I15/2, respectively. The emission color of the samples could be changed with moderating the doping concentrations. The dependence of UC intensity on pumping power indicated a two-photon emission process. Studies on dielectric properties indicated that the introduction of Er increased the ferroelectric-paraelectric phase transition temperature (Tc) of SBT, thus making this ceramic suitable for piezoelectric sensor applications at higher temperatures. Piezoelectric measurement showed that the doped SBT had a relative higher piezoelectric constant d33 compared with the non-doped ceramics. The thermal annealing behaviors of the doped sample revealed a stable piezoelectric property. The doped SBT showed bright UC emission while simultaneously having increased Tc and d33. As a multifunctional material, Er doped SBT ferroelectric oxide showed great potential in application of sensor, future optical-electro integration and coupling devices.
url http://dx.doi.org/10.1063/1.4773318
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