Enhanced photoreduction CO2 efficiency by criss-crossed TiO2 nanoflakes combined with CdS under visible light

In this paper, a novel photocatalyst CNCC with excellent visible light photocatalytic performance was successfully prepared to optimize the CO2 photoreduction performance. The results showed that the methanol formation rate of CNCC was 24.7 µmol g−1 h−1, which was 1.42 times higher than that of NCC....

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Main Authors: Fei Wang, Juangang Wang, Yunhuan Cheng
Format: Article
Language:English
Published: The Royal Society 2019-03-01
Series:Royal Society Open Science
Subjects:
Online Access:https://royalsocietypublishing.org/doi/pdf/10.1098/rsos.181789
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spelling doaj-11674551645a4730a677d0faa5aba5eb2020-11-25T04:00:19ZengThe Royal SocietyRoyal Society Open Science2054-57032019-03-016310.1098/rsos.181789181789Enhanced photoreduction CO2 efficiency by criss-crossed TiO2 nanoflakes combined with CdS under visible lightFei WangJuangang WangYunhuan ChengIn this paper, a novel photocatalyst CNCC with excellent visible light photocatalytic performance was successfully prepared to optimize the CO2 photoreduction performance. The results showed that the methanol formation rate of CNCC was 24.7 µmol g−1 h−1, which was 1.42 times higher than that of NCC. The enhanced photoactivity is attributed to the rapid propagation of charge carriers induced by light from the constructed composite structure.https://royalsocietypublishing.org/doi/pdf/10.1098/rsos.181789rapid propagation of charge carrierscriss-crossed tio2 nanoflakesphotoreduction co2
collection DOAJ
language English
format Article
sources DOAJ
author Fei Wang
Juangang Wang
Yunhuan Cheng
spellingShingle Fei Wang
Juangang Wang
Yunhuan Cheng
Enhanced photoreduction CO2 efficiency by criss-crossed TiO2 nanoflakes combined with CdS under visible light
Royal Society Open Science
rapid propagation of charge carriers
criss-crossed tio2 nanoflakes
photoreduction co2
author_facet Fei Wang
Juangang Wang
Yunhuan Cheng
author_sort Fei Wang
title Enhanced photoreduction CO2 efficiency by criss-crossed TiO2 nanoflakes combined with CdS under visible light
title_short Enhanced photoreduction CO2 efficiency by criss-crossed TiO2 nanoflakes combined with CdS under visible light
title_full Enhanced photoreduction CO2 efficiency by criss-crossed TiO2 nanoflakes combined with CdS under visible light
title_fullStr Enhanced photoreduction CO2 efficiency by criss-crossed TiO2 nanoflakes combined with CdS under visible light
title_full_unstemmed Enhanced photoreduction CO2 efficiency by criss-crossed TiO2 nanoflakes combined with CdS under visible light
title_sort enhanced photoreduction co2 efficiency by criss-crossed tio2 nanoflakes combined with cds under visible light
publisher The Royal Society
series Royal Society Open Science
issn 2054-5703
publishDate 2019-03-01
description In this paper, a novel photocatalyst CNCC with excellent visible light photocatalytic performance was successfully prepared to optimize the CO2 photoreduction performance. The results showed that the methanol formation rate of CNCC was 24.7 µmol g−1 h−1, which was 1.42 times higher than that of NCC. The enhanced photoactivity is attributed to the rapid propagation of charge carriers induced by light from the constructed composite structure.
topic rapid propagation of charge carriers
criss-crossed tio2 nanoflakes
photoreduction co2
url https://royalsocietypublishing.org/doi/pdf/10.1098/rsos.181789
work_keys_str_mv AT feiwang enhancedphotoreductionco2efficiencybycrisscrossedtio2nanoflakescombinedwithcdsundervisiblelight
AT juangangwang enhancedphotoreductionco2efficiencybycrisscrossedtio2nanoflakescombinedwithcdsundervisiblelight
AT yunhuancheng enhancedphotoreductionco2efficiencybycrisscrossedtio2nanoflakescombinedwithcdsundervisiblelight
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