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- W4294927003 abstract "In this report, Cu2(OH)2CO3-MoS2@Ag2S composites were constructed by combining with ions exchange reaction and precipitation method. The results showed that the MoS2 microflowers were coated by the Ag2S nanoparticles. The as-prepared Cu2(OH)2CO3-MoS2@Ag2S composites exhibited the highest rate constant for Methyl Orange(MO) degradation (14.17 × 10−3min−1) and H2 evolution (1.488 mmol/g/h) under visible light irradiation, respectively, which is 20.5 and 4.7 times higher than that of MoS2. The enhanced MO degradation and H2 evolution performance of the Cu2(OH)2CO3-MoS2@Ag2S system is attributed to: 1) the intimate contact between Ag2S and MoS2 beneficial to charge transfer; 2) efficient solar light harvesting of Ag2S on the surface of the MoS2 microflowers; 3) Cu2(OH)2CO3 clusters served as photogenerated electrons traps further promoting the separation of photogenerated charge carriers. The results of the trapping experiment revealed that e− and h+ played key roles in the process of the photocatalytic MO degradation and water splitting. Our research showed a promising approach for constructing highly efficient heterojunction photocatalysts in environment and energy issues." @default.
- W4294927003 created "2022-09-08" @default.
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- W4294927003 date "2022-12-01" @default.
- W4294927003 modified "2023-10-17" @default.
- W4294927003 title "Cu2(OH)2CO3 clusters modified MoS2@Ag2S heterojunctions for efficient photocatalytic pollutant degradation and hydrogen evolution" @default.
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- W4294927003 doi "https://doi.org/10.1016/j.matlet.2022.133140" @default.
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