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Enhanced UV-Visible Light Photocatalytic Activity by Constructing Appropriate Heterostructures between Mesopore TiO2 Nanospheres and Sn3O4 Nanoparticles

机译:通过在中孔TiO2纳米球和Sn3O4纳米颗粒之间构建适当的异质结构增强了紫外可见光的光催化活性。

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摘要

Novel TiO2/Sn3O4 heterostructure photocatalysts were ingeniously synthesized via a scalable two-step method. The impressive photocatalytic abilities of the TiO2/Sn3O4 sphere nanocomposites were validated by the degradation test of methyl orange and •OH trapping photoluminescence experiments under ultraviolet (UV) and visible light irradiation, respectively. Especially under the visible light, the TiO2/Sn3O4 nanocomposites demonstrated a superb photocatalytic activity, with 81.2% of methyl orange (MO) decomposed at 30 min after irradiation, which greatly exceeded that of the P25 (13.4%), TiO2 (0.5%) and pure Sn3O4 (59.1%) nanostructures. This enhanced photocatalytic performance could be attributed to the mesopore induced by the monodispersed TiO2 cores that supply sufficient surface areas and accessibility to reactant molecules. This exquisite hetero-architecture facilitates extended UV-visible absorption and efficient photoexcited charge carrier separation.
机译:通过可扩展的两步法巧妙地合成了新型的TiO2 / Sn3O4异质结构光催化剂。 TiO2 / Sn3O4球形纳米复合材料的令人印象深刻的光催化能力分别通过甲基橙的降解试验和在紫外光和可见光照射下的•OH捕获光致发光实验进行了验证。尤其是在可见光下,TiO2 / Sn3O4纳米复合材料表现出了极好的光催化活性,辐照后30分钟分解了81.2%的甲基橙(MO),大大超过了P25(13.4%),TiO2(0.5%)以及纯Sn3O4(59.1%)纳米结构。这种增强的光催化性能可以归因于由单分散的TiO2核诱导的介孔,该核提供了足够的表面积和反应物分子的可及性。这种精致的异质结构有助于扩展紫外可见吸收和有效的光激发电荷载流子分离。

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