Issue 8, 2015

β-NaGdF4 nanotubes: one-pot synthesis and luminescence properties

Abstract

Hexagonal-phase NaGdF4 nanotubes were successfully fabricated through a template- and catalyst-free method in a hydrothermal environment. The intrinsic and external factors contributing to the formation of tubular nanocrystals were discussed, namely the anisotropic crystal structure of the hexagonal-phase NaGdF4 and the insufficient supply of reagents. Furthermore, the addition of ethylene glycol and hydrazine had a significant effect on the morphological variation. The desirable multicolor outputs were achieved by co-doping Ce3+ and Ln3+ (Ln = Eu, Tb, and Dy) ions in the NaGdF4 crystal, in which the Gd3+ ions acted as an intermediate medium transforming the excitation energy to the activator ions. Finally, the upconversion luminescence and magnetic performance of the sodium rare earth fluoride were demonstrated.

Graphical abstract: β-NaGdF4 nanotubes: one-pot synthesis and luminescence properties

Supplementary files

Article information

Article type
Paper
Submitted
26 Nov 2014
Accepted
26 Dec 2014
First published
07 Jan 2015

Dalton Trans., 2015,44, 3745-3752

β-NaGdF4 nanotubes: one-pot synthesis and luminescence properties

Q. Zhao, B. Shao, W. Lü, W. Lv, M. Jiao, L. Zhao and H. You, Dalton Trans., 2015, 44, 3745 DOI: 10.1039/C4DT03619K

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