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Comparison of magnetic-nanometer titanium dioxide/ferriferous oxide (TiO2/Fe3O4) composite photocatalyst prepared by acid–sol and homogeneous precipitation methods

机译:酸溶胶-均相沉淀法制备磁性纳米二氧化钛/亚铁氧化物(TiO 2 / Fe 3 O 4 )复合光催化剂的比较方法

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摘要

Novel magnetic-nanometer titanium dioxide/ferriferous oxide (TiO2/Fe3O4) composite photocatalyst was prepared using acid–sol and homogenous precipitation methods. The photocatalyst particle was made of a Fe3O4 core covered with nanocrystal anatase TiO2, without a high-temperature heat-treatment step. The catalyst has been characterized by X-ray diffraction, transmission electron microscopy, differential thermal analysis measurements, and ultraviolet spectrum. The results suggested that titania was mainly presented as anatase and Fe3O4 did not appear on the surface of the composite particles when the molar ratio of TiO2/Fe3O4 increased to 20:1 in the acid–sol method, but 5:1 in the homogeneous precipitin method. The size of the crystal was ranged from 2.4 to 3.6 nm prepared by both methods. In the catalytic test, the composite particles, which were prepared by acid–sol, had higher catalytic activity than that prepared by homogenous precipitation method due to the size difference of the composite particles.
机译:利用酸溶胶和均相沉淀法制备了新型的磁性纳米二氧化钛/亚铁氧化物(TiO 2 / Fe 3 O 4 )复合光催化剂方法。该光催化剂颗粒由覆盖有纳米晶锐钛矿型TiO 2 的Fe 3 O 4 芯构成,无需高温热处理步骤。通过X射线衍射,透射电子显微镜,差热分析测量和紫外光谱对催化剂进行了表征。结果表明,当TiO 2 <2时,Fe 3 O 4 主要以锐钛矿形式存在,而Fe 3 O 4 未出现在复合颗粒表面。 / sub> Fe 3 O 4 在酸-溶胶法中增加到20:1,但在均相沉淀法中增加到5:1。通过两种方法制备的晶体的尺寸为2.4至3.6nm。在催化试验中,由于复合颗粒的尺寸差异,酸-溶胶制得的复合颗粒的催化活性高于均相沉淀法。

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