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Efficient Sunlight-Induced Methylene Blue Removal over One-Dimensional Mesoporous Monoclinic BiVO4 Nanorods

机译:一维介孔单斜BiVO4纳米棒的高效阳光诱导亚甲基蓝去除。

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摘要

Sunlight-driven mesoporous BiVO4 nanorods with monoclinic structure have been successfully synthesized via a simple hydrothermal method. The as-prepared one-dimensional BiVO4 nanorods exhibited high specific surface area due to their unique mesoporous structure. The mesoporous BiVO4 nanorods possessed strong photoabsorption properties in the visible light region as well as the ultravisible region, and the band gap was estimated to be ca. 2.18 eV. The photocatalytic activities were evaluated by decolorization of methylene blue under sunlight irradiation. Photocatalytic tests demonstrated that the decolorization rate of as-prepared mesoporous BiVO4 nanorods was even up to 98.8% in 180 min, much better than that prepared by solid-state reaction (23.1%) and the commercial TiO2 (Degussa P25) (14.2%) under the same conditions, due to their higher specific surface area and appropriate band gap. Moreover, the unique BiVO4 nanorods exhibit high stability after five photocatalytic degradation recycles.
机译:通过简单的水热法成功地合成了具有单斜晶结构的阳光驱动的介孔BiVO4纳米棒。制备的一维BiVO4纳米棒由于其独特的介孔结构而具有较高的比表面积。介孔BiVO4纳米棒在可见光区域和超可见光区域均具有很强的光吸收性能,据估计其带隙约为。 2.18 eV。通过在阳光照射下亚甲基蓝的脱色评价光催化活性。光催化试验表明,所制备的介孔BiVO4纳米棒在180 min内的脱色率甚至高达98.8%,远好于固态反应(23.1%)和市售的TiO2(Degussa P25)(14.2%)。在相同条件下,由于其较高的比表面积和合适的带隙。此外,独特的BiVO4纳米棒在五次光催化降解循环后显示出高稳定性。

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