Photocatalytic CO2 reduction

Using sunlight to power CO2 conversion into value-added chemicals and fuels is a promising technology to use anthropogenic CO2 emissions for alleviating our dependence on fossil fuels. In this Primer, we provide a holistic step-by-step guide for the experimentation of photocatalytic CO2 reduction, i...

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Published inNature Reviews Methods Primers Vol. 3; no. 1; p. 61
Main Authors Fang, Siyuan, Rahaman, Motiar, Bharti, Jaya, Reisner, Erwin, Robert, Marc, Ozin, Geoffrey A, Hu, Yun Hang
Format Journal Article
LanguageEnglish
Published London Nature Publishing Group 01.12.2023
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Online AccessGet full text
ISSN2662-8449
DOI10.1038/s43586-023-00243-w

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Abstract Using sunlight to power CO2 conversion into value-added chemicals and fuels is a promising technology to use anthropogenic CO2 emissions for alleviating our dependence on fossil fuels. In this Primer, we provide a holistic step-by-step guide for the experimentation of photocatalytic CO2 reduction, including catalyst synthesis and characterization, reactor construction, photocatalytic testing and mechanism exploration. We compare and analyse the state-of-the-art results with different photocatalysts and discuss possible reaction mechanisms. Furthermore, important considerations regarding practical application of photocatalytic CO2 reduction are highlighted and strategies to enhance energy conversion efficiency and product selectivity are summarized. This Primer also reveals current issues of reproducibility, standardizes data reporting and proposes a unified operation condition. Finally, future directions are outlined in terms of experiments, calculations, big-data development and practical application.Light can be used to power CO2 conversion into value-added chemicals and fuels. In this Primer, Fang et al. provide a guide for the experimentation of photocatalytic CO2 reduction, including catalyst synthesis and characterization, reactor construction, photocatalytic testing and exploration of mechanism.
AbstractList Using sunlight to power CO2 conversion into value-added chemicals and fuels is a promising technology to use anthropogenic CO2 emissions for alleviating our dependence on fossil fuels. In this Primer, we provide a holistic step-by-step guide for the experimentation of photocatalytic CO2 reduction, including catalyst synthesis and characterization, reactor construction, photocatalytic testing and mechanism exploration. We compare and analyse the state-of-the-art results with different photocatalysts and discuss possible reaction mechanisms. Furthermore, important considerations regarding practical application of photocatalytic CO2 reduction are highlighted and strategies to enhance energy conversion efficiency and product selectivity are summarized. This Primer also reveals current issues of reproducibility, standardizes data reporting and proposes a unified operation condition. Finally, future directions are outlined in terms of experiments, calculations, big-data development and practical application.Light can be used to power CO2 conversion into value-added chemicals and fuels. In this Primer, Fang et al. provide a guide for the experimentation of photocatalytic CO2 reduction, including catalyst synthesis and characterization, reactor construction, photocatalytic testing and exploration of mechanism.
Author Ozin, Geoffrey A
Rahaman, Motiar
Hu, Yun Hang
Reisner, Erwin
Fang, Siyuan
Robert, Marc
Bharti, Jaya
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  year: 2023
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  day: 01
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PublicationTitle Nature Reviews Methods Primers
PublicationYear 2023
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Snippet Using sunlight to power CO2 conversion into value-added chemicals and fuels is a promising technology to use anthropogenic CO2 emissions for alleviating our...
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StartPage 61
SubjectTerms Big Data
Carbon dioxide
Catalysis
Catalysts
Chemical synthesis
Chromatography
Electrocatalysis
Electrons
Energy consumption
Energy conversion efficiency
Experimentation
Fossil fuels
Fourier transforms
Market prices
Metallurgy
Microscopy
NMR
Nuclear magnetic resonance
Oxidation
Photocatalysis
Reaction mechanisms
Textile industry
Title Photocatalytic CO2 reduction
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