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Single crystal growth of BaZrO3 from the melt at 2700 °C using optical floating zone technique and growth prospects from BaB2O4 flux at 1350 °C

Authors :
Alain Maillard
Michaël Josse
Jens Kreisel
Monica Ciomaga Hatnean
Geetha Balakrishnan
Daniel Rytz
Matias Velázquez
Mael Guennou
Raphael Haumont
Constance Toulouse
Philippe Veber
Nathalie Valle
Romuald Saint Martin
Cong Xin
Mario Maglione
Institut de Chimie de la Matière Condensée de Bordeaux (ICMCB)
Université de Bordeaux (UB)-Institut Polytechnique de Bordeaux-Institut de Chimie du CNRS (INC)-Centre National de la Recherche Scientifique (CNRS)
Luxembourg Institute of Science and Technology (LIST)
Luminescence (LUMINESCENCE)
Institut Lumière Matière [Villeurbanne] (ILM)
Centre National de la Recherche Scientifique (CNRS)-Université Claude Bernard Lyon 1 (UCBL)
Université de Lyon-Université de Lyon-Centre National de la Recherche Scientifique (CNRS)-Université Claude Bernard Lyon 1 (UCBL)
Université de Lyon-Université de Lyon
University of Warwick [Coventry]
Institut de Chimie Moléculaire et des Matériaux d'Orsay (ICMMO)
Université Paris-Sud - Paris 11 (UP11)-Centre National de la Recherche Scientifique (CNRS)-Institut de Chimie du CNRS (INC)
Laboratoire Matériaux Optiques, Photonique et Systèmes (LMOPS)
CentraleSupélec-Université de Lorraine (UL)
FEE Gmbh
FEE GmBh
Physics and Materials Science Research Unit
University of Luxembourg [Luxembourg]
This work was supported by the Innovative Training Networks (ITN) – Marie Skłodowska-Curie Actions-European Joint Doctorate in Functional Material Research (EJD-FunMat) project (no. 641640). The work at the University of Warwick was supported by the EPSRC, UK, Grant EP/M028771/1. Cong Xin, Dr. Mael Guennou, Dr Constance Toulouse and Prof. Jens Kreisel acknowledge support from the National Research Fund Luxembourg through a Pearl Grant (FNR/P12/4853155).
European Project: 641640,H2020,H2020-MSCA-ITN-2014,EJD-FunMat(2015)
Université Claude Bernard Lyon 1 (UCBL)
Université de Lyon-Université de Lyon-Centre National de la Recherche Scientifique (CNRS)
Université Paris-Sud - Paris 11 (UP11)-Institut de Chimie du CNRS (INC)-Centre National de la Recherche Scientifique (CNRS)
Source :
CrystEngComm, CrystEngComm, Royal Society of Chemistry, 2019, 21 (3), pp.502-512. ⟨10.1039/C8CE01665H⟩, CrystEngComm, 2019, 21 (3), pp.502-512. ⟨10.1039/C8CE01665H⟩
Publication Year :
2019
Publisher :
Royal Society of Chemistry, 2019.

Abstract

International audience; We report the growth of BaZrO3 single crystals by the optical floating zone technique and the investigation on its flux growth using BaB2O4 as a solvent. 6 mm long colorless and transparent single crystals were obtained with a mirror furnace without the need for post-treatment annealing. Its properties are determined and compared with those of two commercial crystals grown by the tri-arc Czochralski method. The chemical composition was investigated using glow discharge mass spectrometry (GDMS) and secondary ion mass spectrometry (SIMS), which indicate minor impurities of Sr, Hf, Ca and Ti, with maximal concentrations for Sr and Hf in the range of 0.3–0.5% at. The optical band gap determined by UV-visible spectroscopy is found to be ∼4.8 eV and indicates the high quality of the BaZrO3 crystals grown by the optical floating zone technique. Raman spectroscopy at ambient conditions and at low temperatures down to 4.2 K reveals a relatively sharp second-order spectrum and does not reveal any structural phase transition. Prospective high-temperature solution growth using BaB2O4 self-flux was investigated and led to 150–200 μm BaZrO3 crystals. This solvent opens the way to grow BaZrO3 at half its melting point by the flux method.

Details

Language :
English
ISSN :
14668033
Database :
OpenAIRE
Journal :
CrystEngComm, CrystEngComm, Royal Society of Chemistry, 2019, 21 (3), pp.502-512. ⟨10.1039/C8CE01665H⟩, CrystEngComm, 2019, 21 (3), pp.502-512. ⟨10.1039/C8CE01665H⟩
Accession number :
edsair.doi.dedup.....ab241c1215d8e6d4efeff19932762b59
Full Text :
https://doi.org/10.1039/C8CE01665H⟩