4.6 Article

Design of LaPO4:Nd3+ materials by using ionic liquids

Journal

OPTICAL MATERIALS
Volume 63, Issue -, Pages 76-87

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.optmat.2016.09.025

Keywords

Orthophosphates; Ionic liquids assisted synthesis; Neodymium doping; NIR emitting phosphors

Funding

  1. European Regional Development Fund within the Innovative Economy Program [POIG.01.01.02-02-006/09]
  2. Critical Materials Institute, an Energy Innovation Hub - U.S. Department of Energy, Office of Energy Efficiency and Renewable Energy, Advanced Manufacturing Office

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Monoclinic monazite-type Nd3+-doped lanthanum orthophosphate (LaPO4:Nd3+) nanoparticles were prepared by microwave treatment of simple lanthanide precursors such as Nd(OAc)(3)center dot xH(2)O, OAc = acetate) with task-specific dihydrogen phosphate ionic liquids (ILs) 1-butyl-1-methylpyrrolidinium dihydrogenphosphate- BmPyrH(2)PO(4) (IL1) and 2-hydroxyethyl-N,N,N-trimethylammonium, [choline][H2PO4) (112) as the reaction medium, reactant and in-situ nanoparticle stabilizer. This synthesis route possesses many advantages as it is a fast and facile preparation method of the desired phosphate nanomaterials without the necessity for post-reaction heat treatment to obtain the anhydrous high temperature monazite phosphate phase. The nano-sized phosphors Nd3+:LaPO4 were carefully analyzed by the powder X-ray diffraction, electron microscopy and spectroscopic techniques taking advantage of the Nd3+ spectroscopic probe to analyze in detail the structural properties. Applied high resolution low temperature absorption and emission techniques allowed to complete the structural information unavailable from the XRD powder patterns. A clear influence of the used task-specific dihydrogen phosphate ILs on the structure, morphology, luminescence intensity and lifetimes of the obtained Nd3+:LaPO4 was found. It is worth noting that the Nd3+ luminescence in LaPO4 has never been reported up to now. (C) 2016 Elsevier B.V. All rights reserved.

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