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A simple way to fabricate pure anatase 2D TiO(2) IO monolayer: structure, color control and its application in electrochromism

Pure anatase two dimensional (2D) TiO(2) inverse opal (IO) films, consisting of a highly ordered hexagonal-patterned structure, are synthesized from various sized polystyrene spheres (PS) as colloidal template simply coupled with TiOSO(4) aqueous solution as TiO(2) precursor using a “dynamic-hard-te...

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Autores principales: Li, Hua, Robichaud, Jacques, Djaoued, Yahia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8695061/
https://www.ncbi.nlm.nih.gov/pubmed/35423313
http://dx.doi.org/10.1039/d0ra10648h
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author Li, Hua
Robichaud, Jacques
Djaoued, Yahia
author_facet Li, Hua
Robichaud, Jacques
Djaoued, Yahia
author_sort Li, Hua
collection PubMed
description Pure anatase two dimensional (2D) TiO(2) inverse opal (IO) films, consisting of a highly ordered hexagonal-patterned structure, are synthesized from various sized polystyrene spheres (PS) as colloidal template simply coupled with TiOSO(4) aqueous solution as TiO(2) precursor using a “dynamic-hard-template infiltration” strategy. Herein, the TiOSO(4) solution is directly infiltrated into the interstices of the 2D self-assembled PS opal template at an air/water interface resulting in a TiOSO(4)/PS opal composite film floating on the surface of water which was further deposited onto ITO or silicon substrates. Calcination of the obtained opal composite films at temperatures ranging from 300 to 550 °C resulted in 2D TiO(2) IO films with various pore sizes having an inverse moth's eye structure. Based on EDS measurements, sulfur ions S(6+) were detected in the IO films calcined up to 550 °C. In order to eliminate these S(6+) ions and obtain pure anatase 2D TiO(2) IO, aqueous immersion was performed after calcination without disturbance of the IO ordered structure. Surface morphology, crystal phase and optical transmittance of the TiO(2) IO films, were concurrently investigated by SEM, Raman and UV-vis-NIR. Owing to their precisely adjustable structure, the obtained TiO(2) 2D IO films exhibited structural colors varying from pale purple, to blue, to polychrome as the array period increases. The films obtained on ITO substrates were successfully used as active electrodes in the fabrication of electrochromic (EC) devices.
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spelling pubmed-86950612022-04-13 A simple way to fabricate pure anatase 2D TiO(2) IO monolayer: structure, color control and its application in electrochromism Li, Hua Robichaud, Jacques Djaoued, Yahia RSC Adv Chemistry Pure anatase two dimensional (2D) TiO(2) inverse opal (IO) films, consisting of a highly ordered hexagonal-patterned structure, are synthesized from various sized polystyrene spheres (PS) as colloidal template simply coupled with TiOSO(4) aqueous solution as TiO(2) precursor using a “dynamic-hard-template infiltration” strategy. Herein, the TiOSO(4) solution is directly infiltrated into the interstices of the 2D self-assembled PS opal template at an air/water interface resulting in a TiOSO(4)/PS opal composite film floating on the surface of water which was further deposited onto ITO or silicon substrates. Calcination of the obtained opal composite films at temperatures ranging from 300 to 550 °C resulted in 2D TiO(2) IO films with various pore sizes having an inverse moth's eye structure. Based on EDS measurements, sulfur ions S(6+) were detected in the IO films calcined up to 550 °C. In order to eliminate these S(6+) ions and obtain pure anatase 2D TiO(2) IO, aqueous immersion was performed after calcination without disturbance of the IO ordered structure. Surface morphology, crystal phase and optical transmittance of the TiO(2) IO films, were concurrently investigated by SEM, Raman and UV-vis-NIR. Owing to their precisely adjustable structure, the obtained TiO(2) 2D IO films exhibited structural colors varying from pale purple, to blue, to polychrome as the array period increases. The films obtained on ITO substrates were successfully used as active electrodes in the fabrication of electrochromic (EC) devices. The Royal Society of Chemistry 2021-02-18 /pmc/articles/PMC8695061/ /pubmed/35423313 http://dx.doi.org/10.1039/d0ra10648h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Li, Hua
Robichaud, Jacques
Djaoued, Yahia
A simple way to fabricate pure anatase 2D TiO(2) IO monolayer: structure, color control and its application in electrochromism
title A simple way to fabricate pure anatase 2D TiO(2) IO monolayer: structure, color control and its application in electrochromism
title_full A simple way to fabricate pure anatase 2D TiO(2) IO monolayer: structure, color control and its application in electrochromism
title_fullStr A simple way to fabricate pure anatase 2D TiO(2) IO monolayer: structure, color control and its application in electrochromism
title_full_unstemmed A simple way to fabricate pure anatase 2D TiO(2) IO monolayer: structure, color control and its application in electrochromism
title_short A simple way to fabricate pure anatase 2D TiO(2) IO monolayer: structure, color control and its application in electrochromism
title_sort simple way to fabricate pure anatase 2d tio(2) io monolayer: structure, color control and its application in electrochromism
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8695061/
https://www.ncbi.nlm.nih.gov/pubmed/35423313
http://dx.doi.org/10.1039/d0ra10648h
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