Synthesis and Characterization of Upconversion Fluorescent Yb3 +, Er3 + Doped CsY 2 F7 Nano‐ and Microcrystals
Author(s) -
Helmut Schäfer,
Pavel Ptáček,
H. Eickmeier,
Markus Haase
Publication year - 2009
Publication title -
journal of nanomaterials
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.463
H-Index - 66
eISSN - 1687-4129
pISSN - 1687-4110
DOI - 10.1155/2009/685624
Subject(s) - photon upconversion , materials science , fluorescence , characterization (materials science) , doping , nano , analytical chemistry (journal) , nanotechnology , nuclear chemistry , optoelectronics , optics , physics , chemistry , chromatography , composite material
Cs Y2F7: 78% Y3+, 20% Yb3+, 2% Er3+ nanocrystals with a mean diameter of approximately 8 nm were synthesized at 185°C in the high boiling organic solvent N-(2-hydroxyethyl)-ethylenediamine (HEEDA) using ammonium fluoride, the rare earth chlorides and a solution of caesium alkoxide of N-(2-hydroxyethyl)-ethylenediamine in HEEDA. In parallel with this approach, a microwave assisted synthesis was carried out which forms nanocrystals of the same material, about 50 nm in size, in aqueous solution at 200∘C/8 bar starting from ammonium fluoride, the rare earth chlorides, and caesium fluoride. In case of the nanocrystals, derived from the HEEDA synthesis, TEM images reveal that the particles are separated but have a broad size distribution. Also an occurred heat-treatment of these nanocrystals (600∘C for 45 minutes) led to bulk material which shows highly efficient light emission upon continuous wave (CW) excitation at 978 nm. Besides the optical properties, the structure and the morphology of the three products were investigated by means of powder XRD and Rietveld method
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