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首页> 外文期刊>Applied Surface Science >Facile one-pot synthesis of nickel-incorporated titanium dioxide/graphene oxide composites: Enhancement of photodegradation under visible-irradiation
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Facile one-pot synthesis of nickel-incorporated titanium dioxide/graphene oxide composites: Enhancement of photodegradation under visible-irradiation

机译:掺镍的二氧化钛/氧化石墨烯复合材料的一锅法合成:可见光照射下光降解的增强

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摘要

Nickel (Ni) incorporated titanium dioxide (TiO2)/graphene oxide composite photocatalysts were prepared by anchoring the TiO2 and Ni onto the surface of graphene oxide (GO) sheets by a straightforward microwave-assisted, one-pot method for the first time. The as-prepared composite photocatalysts with high Ni content (40-50 wt%) showed good adsorption capacity in the dark and high reaction rate constants under visible illumination while the composite photocatalysts with low Ni content (5-10 wt%) exhibited weak activity. An anatase phase, a small amount of rutile phase and Ni metal were detected using X-ray diffraction (XRD) and transmission electron microscopy (TEM). Raman measurements identified a small fraction of NiTiO3 only at high Ni content. The formation of NiTiO3 and the increase in the specific surface area (SSA) for 40 and 50 wt% Ni-loaded catalysts improved the adsorption capacity and photocatalytic activity upon exposure to visible light, resulting in very effective removal of dye contaminants under visible light irradiation. Increasing the Ni content up to 40 and 50 wt% induced not only a structural change affording high porosity but also a narrowing of the band gap to 2.51 eV. Meanwhile, the presence of GO in the composite photocatalysts inhibited the agglomeration of Ni particles even at high Ni content, resulting in similar Ni particle sizes regardless of the Ni content. At the same time, Ni metal accelerated the reduction of the GO sheets, as evidenced by the Raman data. (C) 2016 Elsevier B.V. All rights reserved.
机译:首次通过直接微波辅助单锅法将TiO2和Ni锚固在氧化石墨(GO)片的表面上,制备了掺有镍(Ni)的二氧化钛(TiO2)/氧化石墨烯复合光催化剂。所制备的高Ni含量(40-50 wt%)的复合光催化剂在黑暗中表现出良好的吸附能力,在可见光下具有高的反应速率常数,而低Ni含量(5-10 wt%)的复合光催化剂表现出较弱的活性。 。使用X射线衍射(XRD)和透射电子显微镜(TEM)检测了锐钛矿相,少量金红石相和Ni金属。拉曼测量仅在高镍含量下才发现一小部分NiTiO3。 NiTiO3的形成以及40和50 wt%的负载Ni的催化剂的比表面积(SSA)的增加改善了在可见光下的吸附能力和光催化活性,从而在可见光照射下非常有效地去除了染料污染物。将Ni含量增加至40和50wt%不仅引起提供高孔隙率的结构变化,而且使带隙变窄至2.51eV。同时,即使在高Ni含量下,复合光催化剂中GO的存在也抑制了Ni颗粒的团聚,无论Ni含量如何,都导致相似的Ni粒径。同时,如拉曼数据所示,镍金属加速了GO板的还原。 (C)2016 Elsevier B.V.保留所有权利。

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