Kumar, Santosh, Isaacs, Mark A., Trofimovaite, Rima et al. (7 more authors) (2017) P25@CoAl layered double hydroxide heterojunction nanocomposites for CO2 photocatalytic reduction. APPLIED CATALYSIS B-ENVIRONMENTAL. pp. 394-404. ISSN 0926-3373
Abstract
Artificial photosynthesis driven by inorganic photocatalysts offers a promising route to renewable solar fuels, however efficient CO2 photoreduction remains a challenge. A family of hierarchical nanocomposites, comprising P25 nanoparticles encapsulated within microporous CoAl-layered double hydroxides (CoAl-LDHs) were prepared via a one-pot hydrothermal synthesis. Heterojunction formation between the visible light absorbing CoAl-LDH and UV light absorbing P25 semiconductors extends utilisation of the solar spectrum, while the solid basicity of the CoAl-LDH increases CO2 availability at photocatalytic surfaces. Matching of the semiconductor band structures and strong donor–acceptor coupling improves photoinduced charge carrier separation and transfer via the heterojunction. Hierarchical P25@CoAl-LDH nanocomposites exhibit good activity and selectivity (>90%) for aqueous CO2 photoreduction to CO, without a sacrificial hole acceptor. This represents a facile and cost-effective strategy for the design and development of LDH-based nanomaterials for efficient photocatalysis for renewable solar fuel production from particularly CO2 and water.
Metadata
Item Type: | Article |
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Authors/Creators: |
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Copyright, Publisher and Additional Information: | © 2017 The Authors. |
Keywords: | CO,Layered double hydroxide,Nanocomposite,Photocatalysis,Titania |
Dates: |
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Institution: | The University of York |
Academic Units: | The University of York > Faculty of Sciences (York) > Chemistry (York) The University of York > Faculty of Sciences (York) > Physics (York) |
Depositing User: | Pure (York) |
Date Deposited: | 22 Mar 2017 15:40 |
Last Modified: | 09 Apr 2025 23:12 |
Published Version: | https://doi.org/10.1016/j.apcatb.2017.03.006 |
Status: | Published |
Refereed: | Yes |
Identification Number: | 10.1016/j.apcatb.2017.03.006 |
Related URLs: | |
Open Archives Initiative ID (OAI ID): | oai:eprints.whiterose.ac.uk:114054 |
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