header

Controllable and Reversible Electric Field Tuning of Photoluminescence Response in Lanthanide Ions Doped Ferroelectric Films

15 Pages Posted: 20 Mar 2024 Publication Status: Published

See all articles by Ming Zheng

Ming Zheng

China University of Mining and Technology (CUMT) - School of Materials and Physics

Jian Yang

Chinese Academy of Sciences (CAS)

Yixiao Zhang

Chinese Academy of Sciences (CAS)

Pengfei Guan

Chinese Academy of Sciences (CAS)

Haotian Wang

Chinese Academy of Sciences (CAS)

Xiaolong Zhu

Chinese Academy of Sciences (CAS)

Yaping Qi

Tohoku University

Heliang Fan

China University of Mining and Technology (CUMT) - School of Materials and Physics

Litong Guo

Chinese Academy of Sciences (CAS)

Shiguang Yan

Chinese Academy of Sciences (CAS) - Key Laboratory of Inorganic Functional Materials and Devices; Tohoku University

Chang Yang

East China Normal University (ECNU)

Abstract

The rare-earth doped ferroelectric photoluminescence (PL) phosphors are attracting considerable interest because of their flexible structure, wide band gap and high-quality fluorescence signal emission. Although the change of PL performance in different samples have been solved to a certain extent, how to achieve the tuning of PL intensity in one sample sensitively and reversibly is still an issue. In this work, we present an "electric-elastic-optical" coupling structure of 0.94Bi0.5Na0.5TiO3-0.06BaTiO3:1%Eu3+/ 0.7Pb(Mg1/3Nb2/3)O3-0.3PbTiO3 heterostructures, which transfers strain from the PMN-PT to the BNTBT:Eu film substrate via the converse piezoelectric effect and dynamically modulates the PL response of the epitaxial thin film. Our findings demonstrate that the PL response of the thin film can be effectively and linearly tuned under the influence of an external electric field. The relative change in the PL intensity of the BNTBT:Eu film was found to be linearly correlated with the lateral strain of the substrate. We also propose a novel design strategy for detecting strain, with significant implications for using BNTBT:Eu/PMN-PT heterostructures as sensors for integrating piezophotonic devices. This work provides valuable insights into the feasibility of electric field tuning PL performance, which could inspire future research endeavors in the fields of nanophotonics, optical storage technology and photovoltaics.

Keywords: Photoluminescence, Ferroelectric, Strain, Linear, Reversible

Suggested Citation

Zheng, Ming and Yang, Jian and Zhang, Yixiao and Guan, Pengfei and Wang, Haotian and Zhu, Xiaolong and Qi, Yaping and Fan, Heliang and Guo, Litong and Yan, Shiguang and Yang, Chang, Controllable and Reversible Electric Field Tuning of Photoluminescence Response in Lanthanide Ions Doped Ferroelectric Films. Available at SSRN: https://ssrn.com/abstract=4758741 or http://dx.doi.org/10.2139/ssrn.4758741

Ming Zheng (Contact Author)

China University of Mining and Technology (CUMT) - School of Materials and Physics ( email )

Xuzhou, 221116
China

Jian Yang

Chinese Academy of Sciences (CAS) ( email )

Yixiao Zhang

Chinese Academy of Sciences (CAS) ( email )

Pengfei Guan

Chinese Academy of Sciences (CAS) ( email )

Haotian Wang

Chinese Academy of Sciences (CAS) ( email )

Xiaolong Zhu

Chinese Academy of Sciences (CAS) ( email )

Yaping Qi

Tohoku University ( email )

SKK Building, Katahira 2
Aoba-ku, Sendai, 980-8577
Japan

Heliang Fan

China University of Mining and Technology (CUMT) - School of Materials and Physics ( email )

Xuzhou, 221116
China

Litong Guo

Chinese Academy of Sciences (CAS) ( email )

Shiguang Yan

Chinese Academy of Sciences (CAS) - Key Laboratory of Inorganic Functional Materials and Devices ( email )

Tohoku University ( email )

Chang Yang

East China Normal University (ECNU) ( email )

Do you have a job opening that you would like to promote on SSRN?

Paper statistics

Downloads
20
Abstract Views
138
PlumX Metrics