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New strategy to obtain high surface area anatase nanotube/AuNP photocatalyst

机译:获得高表面积Anatase Nanotube / AUNP光催化剂的新策略

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Anatase nanotubes with high surface area (ca. 350 m(2) g(-1)), containing gold nanoparticles, were successfully obtained from trititanate nanotubes, prepared by a template-free hydrothermal method, and calcined at 450 degrees C. The high surface area and tubular morphology were attained due to the presence of ionic silsesquioxane, which acts as anti-sintering agent for titania during calcination process, by forming a thin silica coating between anatase nanotubes. Additionally, the ionic silsesquioxane also acts as stabilizing and adhesion agent for gold nanoparticles on the surface of anatase nanotubes. The influence of the ionic silsesquioxane on the morphological and textural properties of anatase nanotubes was studied in three different moments during the synthesis: before, after and before/after nanotubes were rolled up. The photocatalytic activity of the nanotube samples was evaluated by hydrogen generation showing remarkable enhancement in hydrogen production and stability of catalyst when compare with the bare anatase sample and commercial P-25.
机译:含有高表面积(约350m(2)G(-1))的锐钛矿纳米管,含有金纳米颗粒,由Tritanate Nanitubes成功获得,通过无模板的水热法制制备,并在450℃下煅烧由于存在离子硅氧烷的存在,通过在煅烧过程中作为抗烧结剂作用为抗烧结剂,通过在锐钛矿纳米管之间形成薄二氧化硅涂层来实现表面积和管状形态。另外,离子硅氧烷还用作锐钛矿纳米管表面上的金纳米颗粒的稳定和粘附剂。在合成期间,在三种不同的时刻研究了离子倍半硅氧烷对锐钛矿纳米管形态学和纹理性质的影响:在卷起纳米管之后和之前/之前/之后。通过氢气产生纳米管样品的光催化活性,显示用裸锐钛矿样品和商业P-25比较时催化剂的氢气产生和稳定性的增强。

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