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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Facile Fabrication of 3D-Ordered Macroporous Nanocrystalline Iron Oxide Films with Highly Efficient Visible Light Induced Photocatalytic Activity
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Facile Fabrication of 3D-Ordered Macroporous Nanocrystalline Iron Oxide Films with Highly Efficient Visible Light Induced Photocatalytic Activity

机译:具有高效可见光诱导的光催化活性的3D有序大孔纳米晶纳米氧化铁膜的简便制备

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A facile approach of layer-by-layer depositing and hydrolysis of FeCl3 is developed to fabricate 3D-ordered Fe2O3 film. The 3D-ordered Fe2O3 film was characterized by SEM, XRD, and DRUV-vis. It has 3D-ordered interconnecting macropores (340 nm) with nanocrystalline hematite Fe2O3 walls (27.2 nm). The 3D-ordered macroporous nanocrystalline Fe2O3 film exhibits 2.4 times larger photocatalytic activity for the photodegradation of dye in the presence of H2O2 under visible irradiation than the nanocrystalline α-Fe2O3 film without macropores and very good photostability. The much higher photocatalytic activity of the 3D-ordered macroporous nanocrystalline Fe2O3 film than that of the reference Fe2O3 film is attributed to the unique nanostructure and architecture of the 3D-ordered Fe2O3 film, which result in the much greater light harvesting efficiency and efficient mass transport in the former than in the latter due to the existence of 3D-ordered interconnecting macropores. The effect of photonic stop band on the photocatalytic activity of the 3D-ordered Fe2O3 film was studied by angle-dependent solid-state photodegradation experiments with monochromatic irradiation. A slow photon enhancement of photocatalytic activity was achieved by adjusting the red edge of the photonic stop band of the 3D-ordered Fe2O3 film close to the electronic bandgap of Fe2O3. The photodegradation mechanism of crystal violet on the 3D-ordered Fe2O3 photocatalyst in the presence or absence of H2O2 was discussed.
机译:开发了一种简便的FeCl3逐层沉积和水解的方法来制造3D有序的Fe2O3膜。通过SEM,XRD和DRUV-vis对3D排序的Fe2O3薄膜进行了表征。它具有3D顺序的互连大孔(340 nm)和纳米晶赤铁矿Fe2O3壁(27.2 nm)。 3D有序大孔纳米晶Fe2O3膜在可见光照射下在H2O2存在下对染料的光降解表现出的光催化活性是没有大孔且具有很好光稳定性的纳米晶α-Fe2O3膜的2.4倍。 3D顺序的大孔纳米晶Fe2O3膜的光催化活性比参考Fe2O3膜的光催化活性高得多,这归因于3D顺序的Fe2O3膜的独特纳米结构和构造,这导致更高的光收集效率和有效的质量传递由于存在3D顺序的互连大孔,前者比后者大。通过单色照射的角度依赖性固态光降解实验研究了光子阻带对3D有序Fe2O3薄膜光催化活性的影响。通过调节3D排列的Fe2O3薄膜的光子阻带的红色边缘接近Fe2O3的电子带隙,可以实现光子活性的缓慢光子增强。讨论了存在或不存在H2O2的3D有序Fe2O3光催化剂上结晶紫的光降解机理。

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