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Renewable Lignosulfonate-Assisted Synthesis of Hierarchical Nanoflake-Array-Flower ZnO Nanomaterials in Mixed Solvents and Their Photocatalytic Performance

机译:混合溶剂中可再生木质素磺酸盐辅助合成的多层纳米片-阵列-花ZnO纳米材料及其光催化性能

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摘要

With the assistance of sodium lignosulfonate, hierarchical nanoflake-array-flower nanostructure of ZnO has been fabricated by a facile precipitation method in mixed solvents. The sodium lignosulfonate amount used in our synthetic route is able to fine-tune ZnO morphology and an abundance of pores have been observed in the nanoflake-array-flower ZnO, which result in specific surface area reaching as high as 82.9 m2 · g−1. The synthesized ZnO exhibits superior photocatalytic activity even under low-power UV illumination (6 W). It is conjectured that both nanoflake-array structure and plenty of pores embedded in ZnO flakes may provide scaffold microenvironments to enhance photocatalytic activity. Additionally, this catalyst can be used repeatedly without a significant loss in photocatalytic activity. The low-cost, simple synthetic approach as well as high photocatalytic and recycling efficiency of our ZnO nanomaterials allows for application to treat wastewater containing organic pollutants in an effective way.
机译:在木质素磺酸钠的辅助下,通过简便的沉淀法在混​​合溶剂中制备了ZnO的分层纳米片状阵列花纳米结构。在我们的合成路线中使用的木质素磺酸钠数量能够微调ZnO的形态,并且在纳米片状阵列花ZnO中观察到大量的孔,这导致比表面积高达82.9m 2 ·g −1 。合成的ZnO即使在低功率紫外线照射(6 W)下也表现出优异的光催化活性。推测纳米薄片阵列结构和ZnO薄片中嵌入的大量孔都可以提供支架微环境以增强光催化活性。另外,该催化剂可以重复使用而不会显着降低光催化活性。我们的ZnO纳米材料的低成本,简单的合成方法以及高的光催化和再循环效率,使其可以有效地处理含有机污染物的废水。

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