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Novel Recovery of Nano-Structured Ceria (CeO(2)) from Ce(III)-Benzoxazine Dimer Complexes via Thermal Decomposition

N,N-bis(2-hydroxybenzyl)alkylamines, benzoxazine dimers, are the major product produced from benzoxazine monomers on mono-functional phenol by the one step ring opening reaction. Due to the metal responsive property of benzoxazine dimers, in this present work, N,N-bis(5-methyl-2-hydroxybenzyl)methyl...

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Autores principales: Veranitisagul, Chatchai, Kaewvilai, Attaphon, Sangngern, Sarawut, Wattanathana, Worawat, Suramitr, Songwut, Koonsaeng, Nattamon, Laobuthee, Apirat
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Molecular Diversity Preservation International (MDPI) 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3155356/
https://www.ncbi.nlm.nih.gov/pubmed/21845083
http://dx.doi.org/10.3390/ijms12074365
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author Veranitisagul, Chatchai
Kaewvilai, Attaphon
Sangngern, Sarawut
Wattanathana, Worawat
Suramitr, Songwut
Koonsaeng, Nattamon
Laobuthee, Apirat
author_facet Veranitisagul, Chatchai
Kaewvilai, Attaphon
Sangngern, Sarawut
Wattanathana, Worawat
Suramitr, Songwut
Koonsaeng, Nattamon
Laobuthee, Apirat
author_sort Veranitisagul, Chatchai
collection PubMed
description N,N-bis(2-hydroxybenzyl)alkylamines, benzoxazine dimers, are the major product produced from benzoxazine monomers on mono-functional phenol by the one step ring opening reaction. Due to the metal responsive property of benzoxazine dimers, in this present work, N,N-bis(5-methyl-2-hydroxybenzyl)methylamine (MMD), N,N-bis (5-ethyl-2-hydroxybenzyl)methylamine (EMD), and N,N-bis(5-methoxy-2-hydroxybenzyl) methyl amine (MeMD), are considered as novel ligands for rare earth metal ion, such as cerium(III) ion. The complex formed when the clear and colorless solutions of cerium nitrate and benzoxazine dimers were mixed, results in a brown colored solution. The metal-ligand ratios determined by the molar ratio and the Job’s methods were found to be in a ratio of 1:6. To clarify the evidence of the complex formation mechanism, the interactions among protons in benzoxazine dimers both prior to and after the formation of complexes were determined by means of (1)H-NMR, 2D-NMR and a computational simulation. The single phase ceria (CeO(2)) was successfully prepared by thermal decomposition of the Ce(III)-benzoxazine dimer complexes at 600 °C for 2 h, was then characterized using XRD. In addition, the ceria powder investigated by TEM is spherical with an average diameter of 20 nm.
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spelling pubmed-31553562011-08-15 Novel Recovery of Nano-Structured Ceria (CeO(2)) from Ce(III)-Benzoxazine Dimer Complexes via Thermal Decomposition Veranitisagul, Chatchai Kaewvilai, Attaphon Sangngern, Sarawut Wattanathana, Worawat Suramitr, Songwut Koonsaeng, Nattamon Laobuthee, Apirat Int J Mol Sci Article N,N-bis(2-hydroxybenzyl)alkylamines, benzoxazine dimers, are the major product produced from benzoxazine monomers on mono-functional phenol by the one step ring opening reaction. Due to the metal responsive property of benzoxazine dimers, in this present work, N,N-bis(5-methyl-2-hydroxybenzyl)methylamine (MMD), N,N-bis (5-ethyl-2-hydroxybenzyl)methylamine (EMD), and N,N-bis(5-methoxy-2-hydroxybenzyl) methyl amine (MeMD), are considered as novel ligands for rare earth metal ion, such as cerium(III) ion. The complex formed when the clear and colorless solutions of cerium nitrate and benzoxazine dimers were mixed, results in a brown colored solution. The metal-ligand ratios determined by the molar ratio and the Job’s methods were found to be in a ratio of 1:6. To clarify the evidence of the complex formation mechanism, the interactions among protons in benzoxazine dimers both prior to and after the formation of complexes were determined by means of (1)H-NMR, 2D-NMR and a computational simulation. The single phase ceria (CeO(2)) was successfully prepared by thermal decomposition of the Ce(III)-benzoxazine dimer complexes at 600 °C for 2 h, was then characterized using XRD. In addition, the ceria powder investigated by TEM is spherical with an average diameter of 20 nm. Molecular Diversity Preservation International (MDPI) 2011-07-05 /pmc/articles/PMC3155356/ /pubmed/21845083 http://dx.doi.org/10.3390/ijms12074365 Text en © 2011 by the authors; licensee MDPI, Basel, Switzerland. http://creativecommons.org/licenses/by/3.0 This article is an open-access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Veranitisagul, Chatchai
Kaewvilai, Attaphon
Sangngern, Sarawut
Wattanathana, Worawat
Suramitr, Songwut
Koonsaeng, Nattamon
Laobuthee, Apirat
Novel Recovery of Nano-Structured Ceria (CeO(2)) from Ce(III)-Benzoxazine Dimer Complexes via Thermal Decomposition
title Novel Recovery of Nano-Structured Ceria (CeO(2)) from Ce(III)-Benzoxazine Dimer Complexes via Thermal Decomposition
title_full Novel Recovery of Nano-Structured Ceria (CeO(2)) from Ce(III)-Benzoxazine Dimer Complexes via Thermal Decomposition
title_fullStr Novel Recovery of Nano-Structured Ceria (CeO(2)) from Ce(III)-Benzoxazine Dimer Complexes via Thermal Decomposition
title_full_unstemmed Novel Recovery of Nano-Structured Ceria (CeO(2)) from Ce(III)-Benzoxazine Dimer Complexes via Thermal Decomposition
title_short Novel Recovery of Nano-Structured Ceria (CeO(2)) from Ce(III)-Benzoxazine Dimer Complexes via Thermal Decomposition
title_sort novel recovery of nano-structured ceria (ceo(2)) from ce(iii)-benzoxazine dimer complexes via thermal decomposition
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3155356/
https://www.ncbi.nlm.nih.gov/pubmed/21845083
http://dx.doi.org/10.3390/ijms12074365
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