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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Photocatalytic Properties of Porous Metal Oxide Networks Formed by Nanoparticle Infiltration in a Polymer Gel Template
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Photocatalytic Properties of Porous Metal Oxide Networks Formed by Nanoparticle Infiltration in a Polymer Gel Template

机译:聚合物凝胶模板中纳米粒子渗透形成的多孔金属氧化物网络的光催化性能

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The infiltration of preformed nanoparticles in a porous polymer gel template for the formation of inorganic networks retaining high porosity is described. The use of a number of metal oxide sols including titania, zirconia, and indium oxide, and mixtures of TiO_2/ZrO_2 AND TiO_2/In_2O_3, resulted in structures that demonstrated templating of the initial organic gel. The final networks were homogeneously porous and had significant surface areas of up to 65 m~2 g~(-1). The wall thickness of the inorganic structure and the surface area, along with the final amount of inorganic material that infiltrated the polymer gel, were found to be dependent on the metal oxide being considered. Photocatalytic studies of the titania-containing networks were monitored by the degradation of 2-chlorophenol and compared with the reference titania photocatalyst, Degussa P25. The titania network was about 20% more active than the standard and the mixed metal oxides showed higher activity again (up to 80% more active than the Degussa P25 sample). The addition of the second metal oxide to the titania decreased the amount of the rutile crystalline phase in the final structure and increased the network surface area, both of these changes are considered positive for enhancement of the photocatalytic activity.
机译:描述了预先形成的纳米颗粒在多孔聚合物凝胶模板中的渗透,以形成保留高孔隙率的无机网络。使用多种金属氧化物溶胶,包括二氧化钛,氧化锆和氧化铟,以及TiO_2 / ZrO_2和TiO_2 / In_2O_3的混合物,可以证明初始有机凝胶具有模板性。最终的网络是均匀多孔的,并具有高达65 m〜2 g〜(-1)的显着表面积。发现无机结构的壁厚和表面积,以及渗透到聚合物凝胶中的无机材料的最终量,取决于所考虑的金属氧化物。通过2-氯苯酚的降解监测含二氧化钛网络的光催化研究,并与参考二氧化钛光催化剂Degussa P25进行比较。二氧化钛网络的活性比标准品高约20%,混合金属氧化物的活性再次更高(比Degussa P25样品高80%)。向二氧化钛中添加第二种金属氧化物减少了最终结构中金红石晶相的数量并增加了网络表面积,这两种变化都被认为对增强光催化活性是有利的。

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