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On the Reaction Pathways and Growth Mechanisms of LiNbO(3) Nanocrystals from the Non-Aqueous Solvothermal Alkoxide Route

Phase-pure, highly crystalline sub-50 nm LiNbO(3) nanocrystals were prepared from a non-aqueous solvothermal process for 72 h at 230 °C and a commercial precursor solution of mixed lithium niobium ethoxide in its parent alcohol. A systematic variation of the reaction medium composition with the addi...

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Autores principales: Urbain, Mathias, Riporto, Florian, Beauquis, Sandrine, Monnier, Virginie, Marty, Jean-Christophe, Galez, Christine, Durand, Christiane, Chevolot, Yann, Dantec, Ronan Le, Mugnier, Yannick
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7828100/
https://www.ncbi.nlm.nih.gov/pubmed/33435460
http://dx.doi.org/10.3390/nano11010154
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author Urbain, Mathias
Riporto, Florian
Beauquis, Sandrine
Monnier, Virginie
Marty, Jean-Christophe
Galez, Christine
Durand, Christiane
Chevolot, Yann
Dantec, Ronan Le
Mugnier, Yannick
author_facet Urbain, Mathias
Riporto, Florian
Beauquis, Sandrine
Monnier, Virginie
Marty, Jean-Christophe
Galez, Christine
Durand, Christiane
Chevolot, Yann
Dantec, Ronan Le
Mugnier, Yannick
author_sort Urbain, Mathias
collection PubMed
description Phase-pure, highly crystalline sub-50 nm LiNbO(3) nanocrystals were prepared from a non-aqueous solvothermal process for 72 h at 230 °C and a commercial precursor solution of mixed lithium niobium ethoxide in its parent alcohol. A systematic variation of the reaction medium composition with the addition of different amounts of co-solvent including butanol, 1,3-propanediol, 1,4-butanediol, and 1,5-pentanediol resulted in the formation of nanocrystals of adjustable mean size and shape anisotropy, as demonstrated from XRD measurements and TEM imaging. Colloidal stability of ethanol- and water-based suspensions was evaluated from dynamic light scattering (DLS)/zeta potential studies and correlated with FTIR data. Thanks to the evolution in the nanocrystal size and shape distribution we observed, as well as to the available literature on the alkoxide chemistry, the reaction pathways and growth mechanisms were finally discussed with a special attention on the monomer formation rate, leading to the nucleation step. The polar, non-perovskite crystalline structure of LiNbO(3) was also evidenced to play a major role in the nanocrystal shape anisotropy.
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spelling pubmed-78281002021-01-25 On the Reaction Pathways and Growth Mechanisms of LiNbO(3) Nanocrystals from the Non-Aqueous Solvothermal Alkoxide Route Urbain, Mathias Riporto, Florian Beauquis, Sandrine Monnier, Virginie Marty, Jean-Christophe Galez, Christine Durand, Christiane Chevolot, Yann Dantec, Ronan Le Mugnier, Yannick Nanomaterials (Basel) Article Phase-pure, highly crystalline sub-50 nm LiNbO(3) nanocrystals were prepared from a non-aqueous solvothermal process for 72 h at 230 °C and a commercial precursor solution of mixed lithium niobium ethoxide in its parent alcohol. A systematic variation of the reaction medium composition with the addition of different amounts of co-solvent including butanol, 1,3-propanediol, 1,4-butanediol, and 1,5-pentanediol resulted in the formation of nanocrystals of adjustable mean size and shape anisotropy, as demonstrated from XRD measurements and TEM imaging. Colloidal stability of ethanol- and water-based suspensions was evaluated from dynamic light scattering (DLS)/zeta potential studies and correlated with FTIR data. Thanks to the evolution in the nanocrystal size and shape distribution we observed, as well as to the available literature on the alkoxide chemistry, the reaction pathways and growth mechanisms were finally discussed with a special attention on the monomer formation rate, leading to the nucleation step. The polar, non-perovskite crystalline structure of LiNbO(3) was also evidenced to play a major role in the nanocrystal shape anisotropy. MDPI 2021-01-09 /pmc/articles/PMC7828100/ /pubmed/33435460 http://dx.doi.org/10.3390/nano11010154 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Urbain, Mathias
Riporto, Florian
Beauquis, Sandrine
Monnier, Virginie
Marty, Jean-Christophe
Galez, Christine
Durand, Christiane
Chevolot, Yann
Dantec, Ronan Le
Mugnier, Yannick
On the Reaction Pathways and Growth Mechanisms of LiNbO(3) Nanocrystals from the Non-Aqueous Solvothermal Alkoxide Route
title On the Reaction Pathways and Growth Mechanisms of LiNbO(3) Nanocrystals from the Non-Aqueous Solvothermal Alkoxide Route
title_full On the Reaction Pathways and Growth Mechanisms of LiNbO(3) Nanocrystals from the Non-Aqueous Solvothermal Alkoxide Route
title_fullStr On the Reaction Pathways and Growth Mechanisms of LiNbO(3) Nanocrystals from the Non-Aqueous Solvothermal Alkoxide Route
title_full_unstemmed On the Reaction Pathways and Growth Mechanisms of LiNbO(3) Nanocrystals from the Non-Aqueous Solvothermal Alkoxide Route
title_short On the Reaction Pathways and Growth Mechanisms of LiNbO(3) Nanocrystals from the Non-Aqueous Solvothermal Alkoxide Route
title_sort on the reaction pathways and growth mechanisms of linbo(3) nanocrystals from the non-aqueous solvothermal alkoxide route
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7828100/
https://www.ncbi.nlm.nih.gov/pubmed/33435460
http://dx.doi.org/10.3390/nano11010154
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