Asymmetric mesoporous rutile TiO2 microspheres with single-crystal-like frameworks

In this issue of Chem, Zhao and co-workers present a novel pressure-driven oriented assembly approach to synthesizing asymmetric dehiscent rutile TiO2 microparticles with single-crystal-like walls and a precisely controlled crystalline phase for photocatalytic H2 production. This versatile strategy...

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Main Authors: Guan, Bu Yuan, Lou, David Xiong Wen
Other Authors: School of Chemical and Biomedical Engineering
Format: Article
Language:English
Published: 2020
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Online Access:https://hdl.handle.net/10356/144012
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1440122020-10-08T02:43:40Z Asymmetric mesoporous rutile TiO2 microspheres with single-crystal-like frameworks Guan, Bu Yuan Lou, David Xiong Wen School of Chemical and Biomedical Engineering Engineering::Chemical engineering TiO2 Photocatalytic Activity In this issue of Chem, Zhao and co-workers present a novel pressure-driven oriented assembly approach to synthesizing asymmetric dehiscent rutile TiO2 microparticles with single-crystal-like walls and a precisely controlled crystalline phase for photocatalytic H2 production. This versatile strategy could pave a new way for constructing mesoporous micro- and nanomaterials for diverse applications. In this issue of Chem, Zhao and co-workers present a novel pressure-driven oriented assembly approach to synthesizing asymmetric dehiscent rutile TiO2 microparticles with single-crystal-like walls and a precisely controlled crystalline phase for photocatalytic H2 production. This versatile strategy could pave a new way for constructing mesoporous micro- and nanomaterials for diverse applications. 2020-10-08T02:43:40Z 2020-10-08T02:43:40Z 2018 Journal Article Guan, B. Y., & Lou, D. X. W. (2018). Asymmetric mesoporous rutile TiO2 microspheres with single-crystal-like frameworks. Chem, 4(10), 2264-2266. doi:10.1016/j.chempr.2018.09.023 2451-9294 https://hdl.handle.net/10356/144012 10.1016/j.chempr.2018.09.023 10 4 2264 2266 en Chem © 2018 Elsevier Inc. All rights reserved.
institution Nanyang Technological University
building NTU Library
country Singapore
collection DR-NTU
language English
topic Engineering::Chemical engineering
TiO2
Photocatalytic Activity
spellingShingle Engineering::Chemical engineering
TiO2
Photocatalytic Activity
Guan, Bu Yuan
Lou, David Xiong Wen
Asymmetric mesoporous rutile TiO2 microspheres with single-crystal-like frameworks
description In this issue of Chem, Zhao and co-workers present a novel pressure-driven oriented assembly approach to synthesizing asymmetric dehiscent rutile TiO2 microparticles with single-crystal-like walls and a precisely controlled crystalline phase for photocatalytic H2 production. This versatile strategy could pave a new way for constructing mesoporous micro- and nanomaterials for diverse applications. In this issue of Chem, Zhao and co-workers present a novel pressure-driven oriented assembly approach to synthesizing asymmetric dehiscent rutile TiO2 microparticles with single-crystal-like walls and a precisely controlled crystalline phase for photocatalytic H2 production. This versatile strategy could pave a new way for constructing mesoporous micro- and nanomaterials for diverse applications.
author2 School of Chemical and Biomedical Engineering
author_facet School of Chemical and Biomedical Engineering
Guan, Bu Yuan
Lou, David Xiong Wen
format Article
author Guan, Bu Yuan
Lou, David Xiong Wen
author_sort Guan, Bu Yuan
title Asymmetric mesoporous rutile TiO2 microspheres with single-crystal-like frameworks
title_short Asymmetric mesoporous rutile TiO2 microspheres with single-crystal-like frameworks
title_full Asymmetric mesoporous rutile TiO2 microspheres with single-crystal-like frameworks
title_fullStr Asymmetric mesoporous rutile TiO2 microspheres with single-crystal-like frameworks
title_full_unstemmed Asymmetric mesoporous rutile TiO2 microspheres with single-crystal-like frameworks
title_sort asymmetric mesoporous rutile tio2 microspheres with single-crystal-like frameworks
publishDate 2020
url https://hdl.handle.net/10356/144012
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