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- W633718681 abstract "BiOBrxCl1−x (0<x<1) nanoflakes with lateral dimensions of ~1 μm and thickness of <100 nm were synthesized using bismuth nitrate pentahydrate, potassium bromide and sodium chloride by a microwave-assisted synthesis method. The X-ray diffraction (XRD) studies confirmed the formation of pure crystalline phase of BiOBrxCl1−x. The UV–visible diffuse reflectance and photoluminescence (PL) spectroscopies revealed the indirect band gap of ~2.82 eV for the bismuth oxybromochloride nanoflakes. Visible light-assisted photocatalytic studies showed that the degradation efficiency of the as-prepared BiOBrxCl1−x for (100 mL of 10 mg L−1) Rhodamine B (RhB), Natural Red 4 (N-Red) dye solutions was 98.14% and for the colorless organic pentachlorophenol (PCP) solution was 91.09% over 150 min. The possible mechanisms involved in the visible light photodegradation of the pollutants by BiOBrxCl1−x photocatalyst were also discussed." @default.
- W633718681 created "2016-06-24" @default.
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- W633718681 date "2015-10-01" @default.
- W633718681 modified "2023-09-30" @default.
- W633718681 title "Microwave-assisted synthesis of bismuth oxybromochloride nanoflakes for visible light photodegradation of pollutants" @default.
- W633718681 cites W152661579 @default.
- W633718681 cites W1965337420 @default.
- W633718681 cites W1968007278 @default.
- W633718681 cites W1970834155 @default.
- W633718681 cites W1972084576 @default.
- W633718681 cites W1972996504 @default.
- W633718681 cites W1973849145 @default.
- W633718681 cites W1974391677 @default.
- W633718681 cites W1979286878 @default.
- W633718681 cites W1982670841 @default.
- W633718681 cites W1983115916 @default.
- W633718681 cites W1986129318 @default.
- W633718681 cites W1990575370 @default.
- W633718681 cites W1991097742 @default.
- W633718681 cites W1995309733 @default.
- W633718681 cites W1998570255 @default.
- W633718681 cites W2003042754 @default.
- W633718681 cites W2003617244 @default.
- W633718681 cites W2004062594 @default.
- W633718681 cites W2015869322 @default.
- W633718681 cites W2016723688 @default.
- W633718681 cites W2018882426 @default.
- W633718681 cites W2020093144 @default.
- W633718681 cites W2022900558 @default.
- W633718681 cites W2024458810 @default.
- W633718681 cites W2027422630 @default.
- W633718681 cites W2033480131 @default.
- W633718681 cites W2036376248 @default.
- W633718681 cites W2037555540 @default.
- W633718681 cites W2039764100 @default.
- W633718681 cites W2042583714 @default.
- W633718681 cites W2045137932 @default.
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- W633718681 cites W2055745124 @default.
- W633718681 cites W2062256718 @default.
- W633718681 cites W2063686396 @default.
- W633718681 cites W2064060218 @default.
- W633718681 cites W2064462778 @default.
- W633718681 cites W2068715617 @default.
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- W633718681 cites W2076548033 @default.
- W633718681 cites W2080168485 @default.
- W633718681 cites W2083221435 @default.
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- W633718681 cites W2165860252 @default.
- W633718681 cites W2169170815 @default.
- W633718681 cites W2269845054 @default.
- W633718681 cites W2312827137 @default.
- W633718681 cites W2315664135 @default.
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- W633718681 cites W2321731103 @default.
- W633718681 cites W2328357150 @default.
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- W633718681 cites W2334665113 @default.
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- W633718681 doi "https://doi.org/10.1016/j.physb.2015.06.013" @default.
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