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Efficient Photocatalytic Activities of TiO2 Hollow Fibers with Mixed Phases and Mesoporous Walls

机译:混合相和中孔壁TiO2中空纤维的高效光催化活性

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摘要

Currently, Degussa P25, with the typical mixed phases of anatase and rutile TiO2, is widely applied as the commercial photocatalysts. However, there are still some of obstacles for the P25 nanoparticles with totally high photocatalytic activities, especially for the catalytic stability due to their inevitable aggregation of the nanoparticles when used as the photocatalysts. In the present work, we reported the exploration of a novel TiO2 photocatalyst, which could offer an ideal platform for synergetic combination of the mixed-phase composition, hollow architecture and mesoporous walls for the desired excellent photocatalytic efficiency and robust stability. The mesoporous TiO2 hollow nanofibers were fabricated via a facile single capillary electrospinning technique, in which the foaming agents were used for creating mesopores throughout the walls of the hollow fibers. The obtained hollow fibers exhibit a high purity and possess the mixed phases of 94.6% anatase and 5.4% rutile TiO2. As compared to P25, the as-fabricated mesoporous TiO2 hollow fibers exhibited much higher efficient photocatalytic activities and stabilities toward the hydrogen evolution with a rate of ~499.1 μmol g−1·h−1 and ~99.5% degradation Rhodamine B (RhB) in 60 min, suggesting their promising application in efficient photocatalysts.
机译:目前,具有锐钛矿和金红石型TiO2的典型混合相的Degussa P25被广泛用作商业光催化剂。然而,对于具有完全高的光催化活性的P25纳米颗粒,仍然存在一些障碍,特别是由于其在用作光催化剂时不可避免地聚集在纳米颗粒上,因此对于催化稳定性。在目前的工作中,我们报道了对新型TiO2光催化剂的探索,该催化剂可以为混合相组合物,空心结构和中孔壁的协同组合提供理想的平台,以实现所需的出色的光催化效率和鲁棒的稳定性。介孔TiO2中空纳米纤维是通过一种简便的单毛细管电纺丝技术制备的,其中发泡剂用于在整个中空纤维壁上产生中孔。所获得的中空纤维显示出高纯度并且具有94.6%的锐钛矿和5.4%的金红石TiO 2的混合相。与P25相比,制备的介孔TiO2中空纤维表现出更高的有效光催化活性和对氢析出的稳定性,速率约为499.1μmolg -1 ·h -1 <并在60分钟内降解〜99.5%的若丹明B(RhB),表明它们在高效光催化剂中的应用前景广阔。

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