Synthesis and Optical Properties of KYF4/Yb, Er Nanocrystals, and their Surface Modification with Undoped KYF4

H Schäfer, P Ptacek, O Zerzouf… - Advanced Functional …, 2008 - Wiley Online Library
H Schäfer, P Ptacek, O Zerzouf, M Haase
Advanced Functional Materials, 2008Wiley Online Library
Abstract KYF4/Yb3+, Er3+ nanocrystals with a mean diameter of approximately 13 nm were
synthesized at 200° C in the high boiling organic solvent N‐(2‐hydroxyethyl)
ethylenediamine (HEEDA). The particles crystallize in the cubic phase known from α‐NaYF4
and form transparent colloidal solutions in tetraethylene glycol (TEG) or propanol. Solutions
containing 1 wt% of the nanocrystals in TEG display visible upconversion emission upon
continuous wave (CW) excitation at 978 nm. Growing undoped KYF4 on the surface of the …
Abstract
KYF4/Yb3+, Er3+ nanocrystals with a mean diameter of approximately 13 nm were synthesized at 200 °C in the high boiling organic solvent N‐(2‐hydroxyethyl)ethylenediamine (HEEDA). The particles crystallize in the cubic phase known from α‐NaYF4 and form transparent colloidal solutions in tetraethylene glycol (TEG) or propanol. Solutions containing 1 wt % of the nanocrystals in TEG display visible upconversion emission upon continuous wave (CW) excitation at 978 nm. Growing undoped KYF4 on the surface of the KYF4/Yb3+, Er3+ nanocrystals increases the upconversion efficiency by more than a factor of 20. The XRD data of these particles, display a slight increase in the mean particle size from 13 to 15.5 nm, indicating that only a part of the subsequently added KYF4 shell material is deposited onto the particle surface. Nevertheless the performed surface modification obviously leads to core/shell structured particles.
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