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Fabrication and Luminescent Properties of Er-Doped Sr5(PO4)3F Ceramics
by
Novikova, Anastasia
, Koshkin, Vitaliy
, Kurashkin, Sergey
, Permin, Dmitry
, Nazmutdinov, Marsel
, Balabanov, Stanislav
, Belyaev, Alexander
in
Ceramic powders
/ Ceramics
/ erbium
/ Fluorapatite
/ Fluorides
/ Grain size
/ Hot pressing
/ Lasers
/ Luminescence
/ Morphology
/ Optical properties
/ Plasma sintering
/ SFAP
/ Single crystals
/ Strontium
/ Strontium compounds
/ transparent ceramics
2023
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Fabrication and Luminescent Properties of Er-Doped Sr5(PO4)3F Ceramics
by
Novikova, Anastasia
, Koshkin, Vitaliy
, Kurashkin, Sergey
, Permin, Dmitry
, Nazmutdinov, Marsel
, Balabanov, Stanislav
, Belyaev, Alexander
in
Ceramic powders
/ Ceramics
/ erbium
/ Fluorapatite
/ Fluorides
/ Grain size
/ Hot pressing
/ Lasers
/ Luminescence
/ Morphology
/ Optical properties
/ Plasma sintering
/ SFAP
/ Single crystals
/ Strontium
/ Strontium compounds
/ transparent ceramics
2023
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Fabrication and Luminescent Properties of Er-Doped Sr5(PO4)3F Ceramics
by
Novikova, Anastasia
, Koshkin, Vitaliy
, Kurashkin, Sergey
, Permin, Dmitry
, Nazmutdinov, Marsel
, Balabanov, Stanislav
, Belyaev, Alexander
in
Ceramic powders
/ Ceramics
/ erbium
/ Fluorapatite
/ Fluorides
/ Grain size
/ Hot pressing
/ Lasers
/ Luminescence
/ Morphology
/ Optical properties
/ Plasma sintering
/ SFAP
/ Single crystals
/ Strontium
/ Strontium compounds
/ transparent ceramics
2023
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Fabrication and Luminescent Properties of Er-Doped Sr5(PO4)3F Ceramics
Journal Article
Fabrication and Luminescent Properties of Er-Doped Sr5(PO4)3F Ceramics
2023
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Overview
Nanopowders of strontium fluoroapatite Sr5(PO4)3F (SFAP) were synthesized using a co-precipitation method with different starting strontium compounds. Based on the data of XRD, BET and SEM measurements, the nitrate-derived powders were chosen as the least agglomerated. The SFAP powders were hot pressed at 1000 °C to ceramic samples with a transmittance up to 82% in a mid-IR region. The designed approach was adopted to prepare 2 mol % of Er-doped SFAP powders and ceramics. It was established that Er:SFAP ceramics have luminescence in the range of 1.5–1.7 μm, the intensity of which increases with the calcination temperature of the initial powders.
Publisher
MDPI AG
Subject
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