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Electric field-induced photoluminescence quenching in Pr-doped BNT ceramics across the MPB region
- Source :
- Journal of Materiomics, Vol 8, Iss 2, Pp 288-294 (2022)
- Publication Year :
- 2022
- Publisher :
- Elsevier, 2022.
-
Abstract
- Piezophotonics is a great interesting field of physics that has led to a number of important technologies, such as light source, smart sensors, and mechatronics. In this work, we reported Pr-doped (Bi0·5Na0.5)TiO3-based lead-free ceramics with strong red photoluminescence emission and large strain response (d33∗ = 460 pm/V, S = 0.32 %). The PL emission can be quenched by decreasing the intensity by 93 % after electrical polarization (E = 50 kV/cm). The local structure and electric field-induced structural changes were systematically investigated to reveal the significant distinction in photoluminescence properties caused by electrical polarization. The results indicated that polarization treatment eliminates the structural inhomogeneities and establishes a long-range ferroelectric tetragonal and rhombohedral distortion. The crystal structure transformed irreversibly from a non-ergodic to a normal ferroelectric state. PL quenching originated from the decreased distortion of octahedral due to the transition from a non-ergodic state to a highly ordered symmetrical structure. Meanwhile, the enlarged domain structure contributed to the photoluminescence quenching effect. Our findings demonstrate that an electric field can be a robust tool for adjusting the photoluminescence property and provide insights into the relationship between the structure and PL properties of BNT-based ceramics under an external stimulus.
- Subjects :
- Electric field-induced
Materials science
Photoluminescence
Condensed matter physics
Doping
Metals and Alloys
Crystal structure
Ferroelectricity
BNT-based ceramics
Surfaces, Coatings and Films
Electronic, Optical and Magnetic Materials
Tetragonal crystal system
Rare-earth doping
visual_art
Electric field
visual_art.visual_art_medium
TA401-492
Ceramic
Polarization (electrochemistry)
Materials of engineering and construction. Mechanics of materials
Photoluminescence quenching
Subjects
Details
- Language :
- English
- ISSN :
- 23528478
- Volume :
- 8
- Issue :
- 2
- Database :
- OpenAIRE
- Journal :
- Journal of Materiomics
- Accession number :
- edsair.doi.dedup.....63358edfa5ac79449d68b42eab8bcd4f