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An efficient visible light driven bismuth ferrite incorporated bismuth oxyiodide (BiFeO_3/BiOI) composite photocatalytic material for degradation of pollutants

机译:一种掺有碘化铋(BiFeO_3 / BiOI)复合光催化材料的高效可见光驱动铋铁氧体,用于污染物的降解

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摘要

An efficient BiFeO3/BiOI composite photocatalytic material was fabricated via simple wet impregnation process and photocatalytic performances were evaluated by the catalytic degradation of Rhodamine B (RhB) and bisphenol A (BPA) in visible-light illumination. Structural, light absorption and morphological features of the fabricated photocatalysts were investigated by various spectroscopic and microscopic procedures. The photodegradation efficiency results demonstrated that the BiFeO3/BiOI composite with 2 wt% loading of BiFeO3 (2% BiFeO3/BiOI) displayed the higher photocatalytic activity than various other BiFeO3 loadings, pristine BiOI and BiFeO3. A maximal photodegradation efficiency of RhB and BPA are similar to 100% and 71% were accomplished using the optimized composite when compared to merely similar to 56% and similar to 36% using pristine BiOI, respectively. The significant enhancement in the photodegradation rates of RhB (similar to 5 times) and BPA (similar to 2 times) pollutants using 2% BiFeO3/BiOI composite is credited to the efficient charge separation of photoinduced hole-electron pairs by transferring the electrons from BiOI to BiFeO3 catalyst surface. The photostability results revealed that the compost was retained their photocatalytic activity up to 3 cycles of degradation experiments. The higher photocatalytic activity, long time stability and reusability tests exposed that the BiFeO3/BiOI composite might be a potential photocatalytic material for topical applications in the field of water treatment.
机译:通过简单的湿法浸渍工艺制备了高效的BiFeO3 / BiOI复合光催化材料,并通过在可见光照射下罗丹明B(RhB)和双酚A(BPA)的催化降解来评价其光催化性能。通过各种光谱学和微观方法研究了所制备的光催化剂的结构,光吸收和形态特征。光降解效率结果表明,BiFeO3 / BiOI复合材料的BiFeO3含量为2 wt%(2%BiFeO3 / BiOI)比其他BiFeO3含量,原始的BiOI和BiFeO3表现出更高的光催化活性。与仅使用原始BiOI分别仅达到56%和接近36%相比,使用优化的复合材料可实现RhB和BPA的最大光降解效率接近100%和71%。使用2%BiFeO3 / BiOI复合材料可显着提高RhB(约5倍)和BPA(约2倍)污染物的光降解速率,这归因于通过转移BiOI中的电子来有效分离光致空穴电子对的电荷到BiFeO3催化剂表面。光稳定性结果表明,堆肥在降解实验中最多保留了3个循环。较高的光催化活性,长期稳定性和可重复使用性测试表明,BiFeO3 / BiOI复合材料可能是水处理领域局部应用的潜在光催化材料。

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