Issue 32, 2019

Strong photoluminescence and sensing performance of nanosized Ca0.8Ln0.1Na0.1WO4 (Ln = Sm,Eu) compounds obtained by the dry “top-down” grinding method

Abstract

Two lanthanide doped nanosystems Ca0.8Ln0.1Na0.1WO4 (Ln = Eu, Sm), denoted as Eu@CWO and Sm@CWO, were prepared by a “top-down” approach in three simple steps: activation, miniaturization by high-energy milling, and further calcination. The solids were thoroughly characterized by X-ray powder diffraction (XRPD) and Scanning-electron microscopy (SEM). Also, analyses of the structure of the compounds and the impact of milling on the crystallite shape and size were carried out through Rietveld refinements. Solid-state photoluminescence was studied in terms of excitation, emission, lifetimes (τobs) and europium-quantum yields. Finally, the Eu@CWO sample was employed as a potential water-stable chemical sensor towards toxic cations, showing a quenching effect in the presence of iron ions.

Graphical abstract: Strong photoluminescence and sensing performance of nanosized Ca0.8Ln0.1Na0.1WO4 (Ln = Sm,Eu) compounds obtained by the dry “top-down” grinding method

Supplementary files

Article information

Article type
Paper
Submitted
18 May 2019
Accepted
30 Jun 2019
First published
01 Jul 2019

Dalton Trans., 2019,48, 12080-12087

Strong photoluminescence and sensing performance of nanosized Ca0.8Ln0.1Na0.1WO4 (Ln = Sm,Eu) compounds obtained by the dry “top-down” grinding method

G. E. Gomez, C. A. López, R. L. Ayscue, K. E. Knope, M. D. R. Torres Deluigi and G. E. Narda, Dalton Trans., 2019, 48, 12080 DOI: 10.1039/C9DT02109D

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