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Visible Light Photocatalysis of BiOI and Its Photocatalytic Activity Enhancement by in Situ Ionic Liquid Modification

机译:BiOI的可见光光催化及其原位离子液体改性增强其光催化活性

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In this study, we investigate the photocatalysis mechanism of BiOI in detail and therefore demonstrate that the photocatalytic activity of BiOI could be enhanced greatly by in situ modification of an ionic liquid [Bmim]I (1-bury-3-methylimidazoIium iodide). The ionic liquid modified BiOI (IL-BiOI) was prepared by reacting bismuth nitrate with [Bmim]I in water at 70 °C, where the ionic liquid could act as both iodine source and surface modified agent. On degradation of methyl orange (MO) under visible light irradiation (λ > 420 nm), IL-BiOI photocatalyst exhibited superior photocatalytic activity to the unmodified counterpart synthesized in the absence of [Bmim]I. The effects of ionic liquid modification on the photocatalytic activity enhancement were systematically investigated. We found that IL modification could trap the photoexcited electron at conduction band of BiOI to inhibit the recombination of photoinduced electron-hole pairsand thus enhance its photocatalytic activity on the degradation of organic pollutants.
机译:在这项研究中,我们详细研究了BiOI的光催化机理,因此证明,通过原位修饰离子液体[Bmim] I(碘化1-bury-3-甲基咪唑鎓)可以大大提高BiOI的光催化活性。离子液体改性的BiOI(IL-BiOI)是通过硝酸铋与[Bmim] I在70°C的水中反应制得的,其中离子液体既可以充当碘源,又可以充当表面改性剂。在可见光照射下(λ> 420 nm)降解甲基橙(MO)时,IL-BiOI光催化剂显示出比在没有[Bmim] I的情况下合成的未修饰对应物更好的光催化活性。系统研究了离子液体改性对光催化活性增强的影响。我们发现,IL修饰可以将光激发的电子捕获在BiOI的导带上,从而抑制光诱导的电子-空穴对的重组,从而增强其对有机污染物降解的光催化活性。

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