Microwave synthesis and studies room temperature optical properties of LaF$_3$: Ce$^{3+}$, Pr$^{3+}$, Nd$^{3+}$ nanocrystals
Nanosistemy: fizika, himiâ, matematika, Tome 11 (2020) no. 1, pp. 117-122
Voir la notice de l'article provenant de la source Math-Net.Ru
Lanthanum fluoride (LaF$_{3}$: Ce$^{3+}$, Pr$^{3+}$, Nd$^{3+}$) was synthesized by water soluble LaCl$_{3}$ + CeCl$_{3}$+ PrCl$_{3}$ + NdCl$_{3}$ and NH$_{4}$F as starting materials in de-ionized water as solvent using microwave assisted technique. The structure of LaF$_{3}$: Ce$^{3+}$, Pr$^{3+}$, Nd$^{3+}$ nanocrystals analyzed by XRD and TEM analysis is found to be in hexagonal structure and average crystalline particle size is $20$ nm (JCPDS standard card (32-0483) of pure hexagonal LaF$_3$ crystals). The absorption edge in UV spectra is found at $250$ nm corresponding to energy of $4.9$ eV. It further shows a wide transparent window lying between $200$ nm–$800$ nm. For LaF$_{3}$: Ce$^{3+}$, Pr$^{3+}$, Nd$^{3+}$ nanocrystals emission of blue color ($458$ nm) has been observed with at an excitation wavelength of $254$ nm. The measured relative second harmonic generation (SHG) efficiency of LaF$_{3}$: Ce$^{3+}$, Pr$^{3+}$, Nd$^{3+}$ in de-ionized water with respect to KDP crystal is $0.186$.
Keywords:
microwave radiation, sHG.
Mots-clés : hexagonal shape, x-ray diffraction, luminescent
Mots-clés : hexagonal shape, x-ray diffraction, luminescent
@article{NANO_2020_11_1_a13,
author = {Sidheshwar G Gaurkhede},
title = {Microwave synthesis and studies room temperature optical properties of {LaF}$_3$: {Ce}$^{3+}$, {Pr}$^{3+}$, {Nd}$^{3+}$ nanocrystals},
journal = {Nanosistemy: fizika, himi\^a, matematika},
pages = {117--122},
publisher = {mathdoc},
volume = {11},
number = {1},
year = {2020},
language = {en},
url = {http://geodesic.mathdoc.fr/item/NANO_2020_11_1_a13/}
}
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AU - Sidheshwar G Gaurkhede
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Sidheshwar G Gaurkhede. Microwave synthesis and studies room temperature optical properties of LaF$_3$: Ce$^{3+}$, Pr$^{3+}$, Nd$^{3+}$ nanocrystals. Nanosistemy: fizika, himiâ, matematika, Tome 11 (2020) no. 1, pp. 117-122. http://geodesic.mathdoc.fr/item/NANO_2020_11_1_a13/