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New visible-light-driven Bi2MoO6/Cs3Sb2Br9 heterostructure for selective photocatalytic oxidation of toluene to benzaldehyde

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dc.contributor.author Sujitra Wongthep
dc.contributor.author Prayoonsak Pluengphon
dc.contributor.author Doldet Tantraviwat
dc.contributor.author Waraporn Panchan
dc.contributor.author Sadanan Boochakiat
dc.contributor.author Kasornkamol Jarusuphakornkul
dc.contributor.author Qilong Wu
dc.contributor.author Jun Chen
dc.contributor.author Burapat Inceesungvorn
dc.contributor.other Chiang Mai University. Faculty of Science. Center of Excellence in Materials Science and Technology th
dc.contributor.other Huachiew Chalermprakiet University. Faculty of Science and Technology. Division of Physical Science th
dc.contributor.other Chiang Mai University. Faculty of Engineering. Department of Electrical Engineering th
dc.contributor.other National Science and Technology Development Agency. National Metal and Materials Technology Center th
dc.contributor.other Chiang Mai University. Faculty of Science. Center of Excellence in Materials Science and Technology th
dc.contributor.other Chiang Mai University. Faculty of Science. Center of Excellence in Materials Science and Technology th
dc.contributor.other University of Wollongong. Australian Institute for Innovative Materials, Innovation Campus th
dc.contributor.other University of Wollongong. Australian Institute for Innovative Materials, Innovation Campus th
dc.contributor.other Chiang Mai University. Faculty of Science. Center of Excellence in Materials Science and Technology th
dc.date.accessioned 2024-04-15T09:39:11Z
dc.date.available 2024-04-15T09:39:11Z
dc.date.issued 2024
dc.identifier.citation Journal of Colloid and Interface Science 655 (February 2024): 32-42 th
dc.identifier.other https://doi.org/10.1016/j.jcis.2023.10.148
dc.identifier.uri https://has.hcu.ac.th/jspui/handle/123456789/2063
dc.description สามารถเข้าถึงบทความฉบับเต็มได้ที่ https://doi.org/10.1016/j.jcis.2023.10.148 th
dc.description.abstract Herein, new Bi2MoO6/Cs3Sb2Br9 heterostructure (BiMo/CSB) was investigated for the first time as a visible-light-driven photocatalyst for C(sp3)–H bond activation using molecular oxygen as a green oxidant and toluene as a model substrate. The optimized BiMo/CSB photocatalyst exhibited enhanced toluene oxidation activity (2,346 μmol g-1h−1), which was almost two- and five-fold that of pristine CSB (1,165 μmol g-1h−1) and BiMo (482 μmol g-1h−1), respectively. The improved photocatalytic performance was essentially attributed to the formation of staggered band energy lineup in the BiMo/CSB hybrid, which promoted S-scheme charge transfer across the BiMo/CSB heterointerface as supported by ultraviolet photoelectron spectroscopy (UPS), density functional theoretical (DFT), time-resolve photoluminescence (TRPL), and photoelectrochemical studies. Spin–trapping electron paramagnetic resonance (EPR) and radical scavenging studies revealed that photoinduced hole, molecular oxygen, and superoxide radical are key active species in this photocatalytic system. The developed BiMo/CSB catalyst provided good selectivity toward benzaldehyde product (94–98 %), presumably due to the inhibiting effect of benzyl alcohol on benzaldehyde oxidation. No significant change in structure and morphology was observed for the spent catalyst, however small negative shift of Sb 3d and Bi 4f binding energy was found suggesting partial reduction of Sb3+ and Bi3+. This work not only provides a new visible-light-driven photocatalyst for C(sp3)–H bond activation but also opens the doors for exploitation of the conversion and functionalization of this inert bond toward the production of high value-added organic chemicals. th
dc.language.iso en_US th
dc.subject โครงสร้างเฮทเทอโร th
dc.subject Heterostructure th
dc.subject การเร่งปฏิกิริยาด้วยแสง th
dc.subject Photocatalysis th
dc.subject โทลูอีน th
dc.subject Toluene th
dc.subject เบนซัลดีไฮด์ th
dc.subject Benzaldehyd th
dc.title New visible-light-driven Bi2MoO6/Cs3Sb2Br9 heterostructure for selective photocatalytic oxidation of toluene to benzaldehyde th
dc.type Article th


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