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- W4213118371 endingPage "112108" @default.
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- W4213118371 abstract "In this work, novel heterostructure photocatalyst contains MIL-53(Fe) and sliver chromate (Ag2CrO4) were successfully prepared through a precipitation method. The prepared composites included various weight percentages (25, 50, and 75%) of MIL-53(Fe). PXRD, FESEM, EDX, BET-BJH, UV–Vis, DRS, and FTIR techniques were used to study the structural, chemical, and optical properties of the prepared nanocomposites. Introducing Ag2CrO4 particles on the surface of MIL-53(Fe) with a high surface area led to the increase in the photocatalytic activity of Ag2CrO4 to remove AO7 dye under visible light irradiation. DRS analysis indicated that Ag2CrO4/MIL-53(Fe) has a narrower band-gap compared to MIL-53(Fe), and it can absorb light in the visible light region. The effect of photocatalyst dosage, initial solution pH, and initial dye concentration were investigated to evaluate the photocatalytic activity of prepared samples. The photo-degradation activity of AO7 dye was tremendously enhanced over Ag2CrO4/50%MIL-53(Fe) sample under the simulated solar light, and •OH and h+ were the main photodegradation mechanism. So, prepared Ag2CrO4/MIL-53(Fe) nanocomposites can be suggested as a potential and appropriate option to solve water pollution." @default.
- W4213118371 created "2022-02-24" @default.
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- W4213118371 date "2022-03-01" @default.
- W4213118371 modified "2023-10-11" @default.
- W4213118371 title "MIL-(53)Fe metal-organic framework (MOF)-based Ag2CrO4 hetrostructure with enhanced solar-light degradation of organic dyes" @default.
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- W4213118371 doi "https://doi.org/10.1016/j.optmat.2022.112108" @default.
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