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Shape-Enhanced Photocatalytic Activities of Thoroughly Mesoporous ZnO Nanofibers

机译:完全介孔的ZnO纳米纤维的形状增强光催化活性

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1D mesoporous materials have attracted extensive interest recently, owning to their fascinating properties and versatile applications. However, it remains as a grand challenge to develop a simple and efficient technique to produce oxide nanofibers with mesoporous architectures, controlled morphologies, large surface areas, and optimal performances. In this work, a facile foaming-assisted electrospinning strategy with foaming agent of tea saponin is used to produce thoroughly mesoporous ZnO nanofibers with high purity and controlled morphology. Interestingly, mesoporous fibers with elliptical cross-section exhibit the significantly enhanced photocatalytic activity for hydrogen production, as compared to the counterparts with circular and rectangular cross-sections, and they also perform better than the commercial ZnO nanopowders. The unexpected shape dependence of photocatalytic activities is attributed to the different stacking modes of the mesoporous fibers, and a geometrical model is developed to account for the shape dependence. This work represents an important step toward producing thoroughly mesoporous ZnO nanofibers with tailored morphologies, and the discovery that fibers with elliptical cross-section render the best performance provides a valuable guideline for improving the photocatalytic performance of such mesoporous nanomaterials.
机译:一维介孔材料因其引人入胜的性能和广泛的用途而受到了广泛的关注。然而,开发一种简单有效的技术来生产具有介孔结构,可控形态,大表面积和最佳性能的氧化物纳米纤维仍然是一个巨大的挑战。在这项工作中,使用茶皂素起泡剂的简便起泡辅助电纺策略可生产出具有高纯度和可控形态的透孔介孔ZnO纳米纤维。有趣的是,与具有圆形和矩形横截面的对应物相比,具有椭圆形横截面的中孔纤维表现出显着增强的产氢光催化活性,并且它们的性能也优于市售的ZnO纳米粉。光催化活性的意外形状依赖性归因于中孔纤维的不同堆积模式,并且开发了几何模型来考虑形状依赖性。这项工作代表了全面生产具有定制形貌的中孔ZnO纳米纤维的重要一步,发现具有椭圆形横截面的纤维具有最佳性能的发现为改善此类中孔纳米材料的光催化性能提供了宝贵的指导。

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