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Enhanced Photocatalysis from Truncated Octahedral Bipyramids of Anatase TiO(2) with Exposed {001}/{101} Facets

[Image: see text] In this study, we develop a new synthetic method to grow anatase TiO(2) crystals composed of truncated octahedral bipyramids (TOBs) with exposed {001} and {101} facets by a vapor–solid reaction growth (VSRG) method. The VSRG method employs TiCl(4(g)) to react with CaO((s))/Ca(OH)(2...

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Autores principales: Lee, Tzu-Yuan, Lee, Chi-Young, Chiu, Hsin-Tien
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2018
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6644679/
https://www.ncbi.nlm.nih.gov/pubmed/31459151
http://dx.doi.org/10.1021/acsomega.8b01251
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author Lee, Tzu-Yuan
Lee, Chi-Young
Chiu, Hsin-Tien
author_facet Lee, Tzu-Yuan
Lee, Chi-Young
Chiu, Hsin-Tien
author_sort Lee, Tzu-Yuan
collection PubMed
description [Image: see text] In this study, we develop a new synthetic method to grow anatase TiO(2) crystals composed of truncated octahedral bipyramids (TOBs) with exposed {001} and {101} facets by a vapor–solid reaction growth (VSRG) method. The VSRG method employs TiCl(4(g)) to react with CaO((s))/Ca(OH)(2(s)) at 823–1043 K under atmospheric pressure. The O-deficient pale-blue TOB TiO(2) crystals display high amount of both {001} and {101} facets. Together, they decompose methylene blue photocatalytically under UV–visible (UV–vis) light irradiation. The most-efficient TOB catalyst VT923 (grown at 923 K, average edge length 400 nm, average thickness 200 nm, and surface area 4.20 m(2)/g) shows a degradation rate constant k, 0.0527 min(–1). This is close to that of the P25 standard 0.0577 min(–1). However, the surface area of P25 (46.8 m(2)/g) is about 12 times that of VT923. The extraordinary performance of VT923 is attributed to the presence of high amount of coexisting {001} and {101} facets to form effective surface heterojunctions. They would separate photogenerated electrons and holes effectively on {101} and {001} surfaces, respectively. For VT923, the {001}/{101} ratio is 0.764, which is close to 1, the highest value observed for all TOB samples grown in this study. The surface heterojunctions prolong the electron–hole separation so that VT923 demonstrates the excellent photocatalytic capability. In addition, residual Cl atoms on the exposed faces are easily removed to show clean TiO surface layers with sufficient amount of O-deficient sites in the current samples.
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spelling pubmed-66446792019-08-27 Enhanced Photocatalysis from Truncated Octahedral Bipyramids of Anatase TiO(2) with Exposed {001}/{101} Facets Lee, Tzu-Yuan Lee, Chi-Young Chiu, Hsin-Tien ACS Omega [Image: see text] In this study, we develop a new synthetic method to grow anatase TiO(2) crystals composed of truncated octahedral bipyramids (TOBs) with exposed {001} and {101} facets by a vapor–solid reaction growth (VSRG) method. The VSRG method employs TiCl(4(g)) to react with CaO((s))/Ca(OH)(2(s)) at 823–1043 K under atmospheric pressure. The O-deficient pale-blue TOB TiO(2) crystals display high amount of both {001} and {101} facets. Together, they decompose methylene blue photocatalytically under UV–visible (UV–vis) light irradiation. The most-efficient TOB catalyst VT923 (grown at 923 K, average edge length 400 nm, average thickness 200 nm, and surface area 4.20 m(2)/g) shows a degradation rate constant k, 0.0527 min(–1). This is close to that of the P25 standard 0.0577 min(–1). However, the surface area of P25 (46.8 m(2)/g) is about 12 times that of VT923. The extraordinary performance of VT923 is attributed to the presence of high amount of coexisting {001} and {101} facets to form effective surface heterojunctions. They would separate photogenerated electrons and holes effectively on {101} and {001} surfaces, respectively. For VT923, the {001}/{101} ratio is 0.764, which is close to 1, the highest value observed for all TOB samples grown in this study. The surface heterojunctions prolong the electron–hole separation so that VT923 demonstrates the excellent photocatalytic capability. In addition, residual Cl atoms on the exposed faces are easily removed to show clean TiO surface layers with sufficient amount of O-deficient sites in the current samples. American Chemical Society 2018-08-30 /pmc/articles/PMC6644679/ /pubmed/31459151 http://dx.doi.org/10.1021/acsomega.8b01251 Text en Copyright © 2018 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Lee, Tzu-Yuan
Lee, Chi-Young
Chiu, Hsin-Tien
Enhanced Photocatalysis from Truncated Octahedral Bipyramids of Anatase TiO(2) with Exposed {001}/{101} Facets
title Enhanced Photocatalysis from Truncated Octahedral Bipyramids of Anatase TiO(2) with Exposed {001}/{101} Facets
title_full Enhanced Photocatalysis from Truncated Octahedral Bipyramids of Anatase TiO(2) with Exposed {001}/{101} Facets
title_fullStr Enhanced Photocatalysis from Truncated Octahedral Bipyramids of Anatase TiO(2) with Exposed {001}/{101} Facets
title_full_unstemmed Enhanced Photocatalysis from Truncated Octahedral Bipyramids of Anatase TiO(2) with Exposed {001}/{101} Facets
title_short Enhanced Photocatalysis from Truncated Octahedral Bipyramids of Anatase TiO(2) with Exposed {001}/{101} Facets
title_sort enhanced photocatalysis from truncated octahedral bipyramids of anatase tio(2) with exposed {001}/{101} facets
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6644679/
https://www.ncbi.nlm.nih.gov/pubmed/31459151
http://dx.doi.org/10.1021/acsomega.8b01251
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