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- W3177158066 abstract "Nanostructured titanium dioxide (TiO2) has a potential platform for the removal of organic contaminants, but it has some limitations. To overcome these limitations, we devised a promising strategy in the present work, the heterostructures of TiO2 sensitized by molybdenum disulfide (MoS2) nanoflowers synthesized by the mechanochemical route and utilized as an efficient photocatalyst for methyl orange (MO) degradation. The surface of TiO2 sensitized by MoS2 was comprehensively characterized by X-ray diffraction (XRD), Raman spectroscopy, Fourier transform–infrared spectroscopy (FT–IR), scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray photoelectron spectroscopy (XPS), energy dispersive spectroscopy (EDS), UV–vis diffuse reflectance spectroscopy (UV–vis DRS), photoluminescence spectroscopy (PL), Brunauer–Emmett–Teller (BET) surface area, and thermogravimetric analysis (TGA). From XRD results, the optimized MoS2–TiO2 (5.0 wt %) nanocomposite showcases the lowest crystallite size of 14.79 nm than pristine TiO2 (20 nm). The FT–IR and XPS analyses of the MoS2–TiO2 nanocomposite exhibit the strong interaction between MoS2 and TiO2. The photocatalytic results show that sensitization of TiO2 by MoS2 drastically enhanced the photocatalytic activity of pristine TiO2. According to the obtained results, the optimal amount of MoS2 loading was assumed to be 5.0 wt %, which exhibited a 21% increment of MO photodegradation efficiency compared to pristine TiO2 under UV–vis light. The outline of the overall study describes the superior photocatalytic performance of 5.0 wt % MoS2–TiO2 nanocomposite which is ascribed to the delayed recombination by efficient charge transfer, high surface area, and elevated surface oxygen vacancies. The context of the obtained results designates that the sensitization of TiO2 with MoS2 is a very efficient nanomaterial for photocatalytic applications." @default.
- W3177158066 created "2021-07-05" @default.
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- W3177158066 date "2021-06-23" @default.
- W3177158066 modified "2023-10-18" @default.
- W3177158066 title "Nanostructured TiO<sub>2</sub> Sensitized with MoS<sub>2</sub> Nanoflowers for Enhanced Photodegradation Efficiency toward Methyl Orange" @default.
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- W3177158066 cites W1697648747 @default.
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- W3177158066 cites W1968392461 @default.
- W3177158066 cites W1971008178 @default.
- W3177158066 cites W1974159114 @default.
- W3177158066 cites W1979112470 @default.
- W3177158066 cites W1988652871 @default.
- W3177158066 cites W1992322736 @default.
- W3177158066 cites W2001605190 @default.
- W3177158066 cites W2024966938 @default.
- W3177158066 cites W2026973457 @default.
- W3177158066 cites W2028505019 @default.
- W3177158066 cites W2040697085 @default.
- W3177158066 cites W2045326727 @default.
- W3177158066 cites W2051703013 @default.
- W3177158066 cites W2057082382 @default.
- W3177158066 cites W2065583386 @default.
- W3177158066 cites W2085862323 @default.
- W3177158066 cites W2087264820 @default.
- W3177158066 cites W2115786064 @default.
- W3177158066 cites W2131744028 @default.
- W3177158066 cites W2134187077 @default.
- W3177158066 cites W2149112880 @default.
- W3177158066 cites W2166828764 @default.
- W3177158066 cites W2202407046 @default.
- W3177158066 cites W2256651028 @default.
- W3177158066 cites W2273014737 @default.
- W3177158066 cites W2321419346 @default.
- W3177158066 cites W2334176011 @default.
- W3177158066 cites W2344044392 @default.
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- W3177158066 cites W2483746133 @default.
- W3177158066 cites W2501308740 @default.
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- W3177158066 cites W2538446639 @default.
- W3177158066 cites W2572994732 @default.
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- W3177158066 cites W2889736103 @default.
- W3177158066 cites W2900906360 @default.
- W3177158066 cites W2902572925 @default.
- W3177158066 cites W2903537896 @default.
- W3177158066 cites W2903713308 @default.
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- W3177158066 cites W2925054296 @default.
- W3177158066 cites W2944438593 @default.
- W3177158066 cites W2945737486 @default.
- W3177158066 cites W2950263162 @default.
- W3177158066 cites W2962768446 @default.
- W3177158066 cites W2982482763 @default.
- W3177158066 cites W2987595189 @default.
- W3177158066 cites W2999573973 @default.
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- W3177158066 cites W3016388777 @default.
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- W3177158066 doi "https://doi.org/10.1021/acsomega.1c02194" @default.
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- W3177158066 hasPublicationYear "2021" @default.
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