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- W4386317876 abstract "Abstract This study examines In 2 S 3 concentration to the photo‐induced current density of particulate In 2 O 3 –In 2 S 3 composite heterostructures under visible light irradiation. A self‐templated approach involving hydrothermal sulfidation of In 2 O 3 nanofibers with thioacetamide (TAA) in water produces the In 2 O 3 –In 2 S 3 core–shell structure at a moderate temperature. The In 2 S 3 fraction is readily tunable by adjusting the TAA concentration. Incorporating In 2 S 3 (45–82 wt.%) leads to a decreased bandgap from 3.1 to ca. 2.3 eV, enabling the harvest of partial visible‐light energy to create charged carriers efficiently. The photocurrent is particularly pronounced when the In 2 O 3 –In 2 S 3 composites consist of 45 wt.% In 2 S 3 , to which the photocurrent intensity is more significant than 0.1 mA⋅cm −2 at 0.8 V in 0.1 M Na 2 SO 4 solution compared to less than 0.01 mA⋅cm −2 for the rest of the In 2 O 3 –In 2 S 3 counterparts. This is attributable to the enhanced electron–hole separation at the semiconducting heterojunction and the more efficient use of the light spectrum due to the narrowing bandgap." @default.
- W4386317876 created "2023-09-01" @default.
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- W4386317876 date "2023-09-07" @default.
- W4386317876 modified "2023-09-27" @default.
- W4386317876 title "Facile preparation of In2O3‐In2S3 core‐shell composites for enhanced photoelectric activity" @default.
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- W4386317876 doi "https://doi.org/10.1111/ijac.14530" @default.
- W4386317876 hasPublicationYear "2023" @default.
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