Structure and Photocatalytic Performance of Zr~(4+) Doped Bi_2WO_6 Synthesized by Fast Microwave-ass

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Zr~(4+) doped Bi_2WO_6 was prepared by a fast microwave-assisted hydrothermal method and used for photocatalytic degradation of organic dyes. The as-prepared samples were characterized by X-ray diffraction(XRD), transmission electron microscopy(TEM) and UV-Vis spectroscopy. The results indicate that cell volume of Bi_2WO_6 has a slight increase dependent on the substitution of W6+ by Zr~(4+) with increasing the Zr doping amount. The photocatalytic performance of Zr~(4+) doped Bi_2WO_6 was evaluated by the photodegradation of MO under visible light irradiation. Compared with samples obtained with traditional hydrothermal method as well as pure Bi_2WO_6, an obviously improved photocatalytic efficiency of Zr~(4+) doped Bi_2WO_6 is achieved by this microwave-assisted hydrothermal way. The 3% Zr doped Bi_2WO_6 sample exhibited the best photocatalytic activity, which is probably because of the appropriate proportion of components and optimum amount of oxygen vacancies of the sample. Zr 4+ doped Bi 2 WO 6 was prepared by a fast microwave-assisted hydrothermal method and used for photocatalytic degradation of organic dyes. The as-prepared samples were characterized by X-ray diffraction (XRD), transmission electron microscopy (TEM) and UV-Vis spectroscopy. The results indicate that cell volume of Bi_2WO_6 has a slight increase in dependent on the substitution of W6 + by Zr ~ (4+) with increasing the Zr doping amount. The photocatalytic performance of Zr ~ (4+) doped Bi_2WO_6 was evaluated by the photodegradation of MO under visible light irradiation. Compared with samples obtained with traditional hydrothermal method as well as pure Bi_2WO_6, an obviously improved photocatalytic efficiency of Zr ~ (4+) doped Bi_2WO_6 is achieved by this microwave-assisted hydrothermal way. 3% Zr doped Bi_2WO_6 sample exhibited the best photocatalytic activity, which is probably because of the appropriate proportion of components and optimum amount of oxygen vacancies of the sample.
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