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TiBALDH as a precursor for biomimetic TiO(2) synthesis: stability aspects in aqueous media

Titanium(iv) bis(ammonium lactate)dihydroxide (TiBALDH) is a commercially available reagent frequently used to synthesize TiO(2). Particularly, for the biomimetic synthesis of TiO(2), TiBALDH is the preferred precursor because it can be mixed in aqueous solutions with no apparent hydrolysis or conde...

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Autores principales: Hernández-Gordillo, Armin, Hernández-Arana, Andrés, Campero-Celis, Antonio, Vera-Robles, L. Irais
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9073908/
https://www.ncbi.nlm.nih.gov/pubmed/35529993
http://dx.doi.org/10.1039/c9ra05923g
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author Hernández-Gordillo, Armin
Hernández-Arana, Andrés
Campero-Celis, Antonio
Vera-Robles, L. Irais
author_facet Hernández-Gordillo, Armin
Hernández-Arana, Andrés
Campero-Celis, Antonio
Vera-Robles, L. Irais
author_sort Hernández-Gordillo, Armin
collection PubMed
description Titanium(iv) bis(ammonium lactate)dihydroxide (TiBALDH) is a commercially available reagent frequently used to synthesize TiO(2). Particularly, for the biomimetic synthesis of TiO(2), TiBALDH is the preferred precursor because it can be mixed in aqueous solutions with no apparent hydrolysis or condensation reactions. Thus, proteins or other biomolecules can be used as a template in aqueous systems for the synthesis of TiO(2) from TiBALDH. Nevertheless, there is evidence that TiBALDH is in equilibrium with TiO(2), and even, the principal structure of the complex has been suggested as [Ti(4)O(4)(lactate)(8)](8−). Since that chemical equilibrium depends on the polarity of the solvent, in this work we explored a diversity of media to test the chemical stability of TiBALDH and its equilibrium with TiO(2) at room temperature. TiBALDH (2.078 M) contains particles of 18.6 ± 7.3 nm in size, if it is diluted with deionized water, the particles reach a size of 5.2 ± 1.7 nm, which suggest that intermolecular interactions form polymers of titanium lactate complexes reversibly, reaching equilibrium after 10 hours. Typical buffer systems were tested; TiBALDH reacted rapidly only with phosphate groups, even if the source came from DNA. Therefore, phosphate buffer must be avoided in biomineralization TiO(2) synthesis. In solutions of TiBALDH at basic pH, condensation reactions are promoted to form a gel containing anatase nanoparticles, but if the solutions are acidic, monodisperse anatase nanoparticles of ∼5 nm were observed. The results show that the commercial reagent TiBALDH contains many species of titanium lactate complexes in equilibrium with TiO(2), and it is affected by the concentration, time, pH, and several ions. This peculiar behavior must be taken into account when this precursor is used and it could be useful to develop novel synthesis routes of macrostructures with biomolecules in aqueous systems.
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spelling pubmed-90739082022-05-06 TiBALDH as a precursor for biomimetic TiO(2) synthesis: stability aspects in aqueous media Hernández-Gordillo, Armin Hernández-Arana, Andrés Campero-Celis, Antonio Vera-Robles, L. Irais RSC Adv Chemistry Titanium(iv) bis(ammonium lactate)dihydroxide (TiBALDH) is a commercially available reagent frequently used to synthesize TiO(2). Particularly, for the biomimetic synthesis of TiO(2), TiBALDH is the preferred precursor because it can be mixed in aqueous solutions with no apparent hydrolysis or condensation reactions. Thus, proteins or other biomolecules can be used as a template in aqueous systems for the synthesis of TiO(2) from TiBALDH. Nevertheless, there is evidence that TiBALDH is in equilibrium with TiO(2), and even, the principal structure of the complex has been suggested as [Ti(4)O(4)(lactate)(8)](8−). Since that chemical equilibrium depends on the polarity of the solvent, in this work we explored a diversity of media to test the chemical stability of TiBALDH and its equilibrium with TiO(2) at room temperature. TiBALDH (2.078 M) contains particles of 18.6 ± 7.3 nm in size, if it is diluted with deionized water, the particles reach a size of 5.2 ± 1.7 nm, which suggest that intermolecular interactions form polymers of titanium lactate complexes reversibly, reaching equilibrium after 10 hours. Typical buffer systems were tested; TiBALDH reacted rapidly only with phosphate groups, even if the source came from DNA. Therefore, phosphate buffer must be avoided in biomineralization TiO(2) synthesis. In solutions of TiBALDH at basic pH, condensation reactions are promoted to form a gel containing anatase nanoparticles, but if the solutions are acidic, monodisperse anatase nanoparticles of ∼5 nm were observed. The results show that the commercial reagent TiBALDH contains many species of titanium lactate complexes in equilibrium with TiO(2), and it is affected by the concentration, time, pH, and several ions. This peculiar behavior must be taken into account when this precursor is used and it could be useful to develop novel synthesis routes of macrostructures with biomolecules in aqueous systems. The Royal Society of Chemistry 2019-10-28 /pmc/articles/PMC9073908/ /pubmed/35529993 http://dx.doi.org/10.1039/c9ra05923g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Hernández-Gordillo, Armin
Hernández-Arana, Andrés
Campero-Celis, Antonio
Vera-Robles, L. Irais
TiBALDH as a precursor for biomimetic TiO(2) synthesis: stability aspects in aqueous media
title TiBALDH as a precursor for biomimetic TiO(2) synthesis: stability aspects in aqueous media
title_full TiBALDH as a precursor for biomimetic TiO(2) synthesis: stability aspects in aqueous media
title_fullStr TiBALDH as a precursor for biomimetic TiO(2) synthesis: stability aspects in aqueous media
title_full_unstemmed TiBALDH as a precursor for biomimetic TiO(2) synthesis: stability aspects in aqueous media
title_short TiBALDH as a precursor for biomimetic TiO(2) synthesis: stability aspects in aqueous media
title_sort tibaldh as a precursor for biomimetic tio(2) synthesis: stability aspects in aqueous media
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9073908/
https://www.ncbi.nlm.nih.gov/pubmed/35529993
http://dx.doi.org/10.1039/c9ra05923g
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