In 2 O 3 /Bi 19 Br 3 S 27 S-scheme heterojunction with enhanced photocatalytic CO 2 reduction

Yuqin Bian, Houwei He,Graham Dawson,Jinfeng Zhang,Kai Dai

Science China Materials(2024)

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摘要
In recent years, semiconductor catalysts have attracted lots of attention due to their substantial redox capability and adequate stability. However, many semiconductor catalysts have difficulties in realizing real word applications because of the high complexation and low oxidizing ability of photogenerated electron-holes. In-depth investigation has revealed that the S-scheme heterojunction possesses a unique mechanism of carrier movement, resulting in a robust redox capacity and strong driving force. Herein, we synthesized an In 2 O 3 /Bi 19 Br 3 S 27 step-scheme (S-scheme) heterojunction through the hydrothermal method comprised of Bi 19 Br 3 S 27 nanoflowers grown on In 2 O 3 nanospheres. This configuration effectively facilitates the separation and transfer of photogenerated charge carriers. As a result, the reduction yield of CO 2 by In 2 O 3 /Bi 19 Br 3 S 27 composite reaches 28.36 µmol h − 1 g − 1 , which is 19 times higher than that of In 2 O 3 and 3.5 times higher than that of Bi 19 Br 3 S 27 . Furthermore, the intermediates involved in the photocatalytic reaction were examined through in situ diffuse reflectance infrared Fourier transform spectroscopy, revealing the reaction process of photocatalytic reduction of CO 2 . This work offers a concept on the method of constructing S-scheme heterojunction photocatalysts to enhance the catalyzed reduction of CO 2 .
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关键词
photocatalytic CO2 reduction,S-scheme heterojunction,In2O3,Bi19Br3S27
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