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Facile Fabrication of BiOI/BiOCl Immobilized Films With Improved Visible Light Photocatalytic Performance

机译:易于制备的BiOI / BiOCl固定膜具有改善的可见光光催化性能

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>HIGHLIGHTS class="unordered" style="list-style-type:disc">A facial method was used to fabricate BiOI/BiOCl film at room temperature.30% BiOI/BiOCl showed an excellent photocatalytic activity and stability.Improvement of photocatalytic activity was owed to expanded visible light absorption and high separation efficiency of charge.Photocatalysis has been considered to be one of the most promising ways to photodegrade organic pollutants. Herein, a series of BiOI/BiOCl films coating on FTO were fabricated through a simple method at room temperature. The photocatalytic efficiency of 30%BiOI/BiOCl could reach more than 99% aiming to degrading RhB and MB after 90 and 120 min, respectively. Compared with BiOCl, 30%BiOI/BiOCl showed 12 times higher efficiency when degrading RhB. In comparison with BiOI, 30%BiOI/BiOCl showed 5 and 6 times higher efficiency when degrading RhB and MB, respectively. These obvious enhancements were attributed to expanded visible light absorption and high separation performance of photoinduced charge. Moreover, the photocatalytic activity of 30%BiOI/BiOCl had no obvious decrease after five recycles, suggesting that it was a promising photocatalyst for the removal of MB and RhB pollutants. Finally, the possible growth process for the BiOI/BiOCl thin films and photocatalysis mechanism were investigated in details. This work would provide insight to the reasonable construction of BiOX heterojunction and the photocatalytic mechanism in degrading organic pollutants.
机译:>重点 class =“ unordered” style =“ list-style-type:disc”> <!-list-behavior = unordered prefix-word = mark-type = disc max-label-size = 0-> 在室温下采用面部方法制备BiOI / BiOCl膜。 30%BiOI / BiOCl具有优异的光催化活性和稳定性。 光催化活性的提高归因于可见光吸收的扩大和电荷的高分离效率。 光催化被认为是光降解有机污染物的最有希望的方法之一。本文中,通过简单的方法在室温下制备了一系列在FTO上涂覆的BiOI / BiOCl膜。 30%BiOI / BiOCl的光催化效率可以达到99%以上,目的是分别在90和120分钟后降解RhB和MB。与BiOCl相比,降解RhB时30%BiOI / BiOCl的效率高12倍。与BiOI相比,当降解RhB和MB时,30%BiOI / BiOCl的效率分别提高了5倍和6倍。这些明显的增强归因于扩大的可见光吸收和光诱导电荷的高分离性能。此外,经过5次循环,30%BiOI / BiOCl的光催化活性没有明显降低,表明它是一种有前途的光催化剂,可去除MB和RhB污染物。最后,详细研究了BiOI / BiOCl薄膜的可能生长过程和光催化机理。这项工作将为BiOX异质结的合理构建和降解有机污染物的光催化机理提供见解。

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