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Published in: Optical and Quantum Electronics 11/2023

01-11-2023

Nd+ 3 ions effects on the blue emission of colloidal Y(OH)3 nanobelts

Authors: M. M. Arghavan, A. A. Sabouri-Dodaran, M. Sasani Ghamsari

Published in: Optical and Quantum Electronics | Issue 11/2023

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Abstract

In this report, we synthesized the neodymium-doped yttrium hydroxide nanobelts (Nd:Y(OH)3) using a facile route. The characterization methods, such as UV-Visible and photoluminescence spectroscopy, Raman, X-ray photoemission, Fourier transform infrared (FTIR) spectroscopy, and high resolution transmission electron microscopy (HRTEM), were applied to clarify the properties of the prepared colloidal sample. The structural characteristics of the prepared sample were analyzed via X-ray diffraction (XRD) and HRTEM. The average size of the hexagonal crystal is about 25 nm, which shows the compatibility of XRD and HRTEM spectroscopy results. Absorbance and emission spectra of the synthesized sample have demonstrated that the intensity of light emission by the colloidal sample is affected by the concentration of Nd3+ ions. In this research, it has been shown that the excitation of the samples with the wavelengths of 355 and 360 nm almost does not change the blue emission spectra because the wavelengths are related to the nature of the Nd+ 3, but with the excitation of 300 nm, the intensity of the emission spectra increases with the increase in the concentration up to 0.05 g (sample 2).

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Literature
go back to reference Bhavani, G., Ganesan, S., Selvasekarapandian, S., Monisha, S., Premalatha, M.: Synthesis and electrical characterisation of bismuth doped yttrium oxide. Int. J. Chem. Sci. 14(1), 427–434 (2016) Bhavani, G., Ganesan, S., Selvasekarapandian, S., Monisha, S., Premalatha, M.: Synthesis and electrical characterisation of bismuth doped yttrium oxide. Int. J. Chem. Sci. 14(1), 427–434 (2016)
Metadata
Title
Nd+ 3 ions effects on the blue emission of colloidal Y(OH)3 nanobelts
Authors
M. M. Arghavan
A. A. Sabouri-Dodaran
M. Sasani Ghamsari
Publication date
01-11-2023
Publisher
Springer US
Published in
Optical and Quantum Electronics / Issue 11/2023
Print ISSN: 0306-8919
Electronic ISSN: 1572-817X
DOI
https://doi.org/10.1007/s11082-023-05124-w

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