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Microwave-assisted hydrothermal synthesis of Sn.sub.3O.sub.4 and SnO for electrocatalytic reduction of CO.sub.2 to high-added-value compounds
by
Perini, João Angelo Lima
, Romeiro, Fernanda da Costa
, Silva, Beatriz Costa e
, Martins, Alysson Stefan
, Zanoni, Maria Valnice Boldrin
, Orlandi, Marcelo Ornaghi
in
Acetone
/ Methanol
/ Semiconductors
2023
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Microwave-assisted hydrothermal synthesis of Sn.sub.3O.sub.4 and SnO for electrocatalytic reduction of CO.sub.2 to high-added-value compounds
by
Perini, João Angelo Lima
, Romeiro, Fernanda da Costa
, Silva, Beatriz Costa e
, Martins, Alysson Stefan
, Zanoni, Maria Valnice Boldrin
, Orlandi, Marcelo Ornaghi
in
Acetone
/ Methanol
/ Semiconductors
2023
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Microwave-assisted hydrothermal synthesis of Sn.sub.3O.sub.4 and SnO for electrocatalytic reduction of CO.sub.2 to high-added-value compounds
by
Perini, João Angelo Lima
, Romeiro, Fernanda da Costa
, Silva, Beatriz Costa e
, Martins, Alysson Stefan
, Zanoni, Maria Valnice Boldrin
, Orlandi, Marcelo Ornaghi
in
Acetone
/ Methanol
/ Semiconductors
2023
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Microwave-assisted hydrothermal synthesis of Sn.sub.3O.sub.4 and SnO for electrocatalytic reduction of CO.sub.2 to high-added-value compounds
Journal Article
Microwave-assisted hydrothermal synthesis of Sn.sub.3O.sub.4 and SnO for electrocatalytic reduction of CO.sub.2 to high-added-value compounds
2023
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Overview
Sn-based electrocatalysts have recently been applied for CO.sub.2 reduction to generate fuels. Here, tin oxide crossed architectures (SnO) and petal-like Sn.sub.3O.sub.4 semiconductors were synthesized using the microwave-assisted hydrothermal method. The synthesized materials were applied in electrochemical reduction of CO.sub.2 and promoted the formation of methanol, ethanol and acetone. The best condition (greatest amount of products) was obtained with - 0.5 V vs Ag/AgCl for both electrocatalysts. For the first time, acetone formation was observed using both SnO and Sn.sub.3O.sub.4 materials. The SnO electrocatalyst exhibited the best electrochemical activity for CO.sub.2 reduction, ascribed to higher charge transfer corroborated by the higher current densities and lower resistance in the Nyquist diagram. Differences in methanol concentration obtained by the samples were ascribed to the different morphology and charge transfer over the films. The results showed that Sn-based electrocatalysts can be applied to generate important products, such as methanol and ethanol, aside from promoting acetone formation.
Publisher
Springer
Subject
MBRLCatalogueRelatedBooks
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