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Facile Synthesis, Metastable Phase Induced Morphological Evolution and Crystal Ripening, and Structure-Dependent Photocatalytic Properties of 3D Hierarchical Anatase Superstructures

机译:简便的合成,亚稳相诱导的形态演化和晶体成熟以及3D分级锐钛矿超结构的结构依赖性光催化性能

摘要

Unique 3D hierarchical anatase TiO2 superstructures with evolvable morphologies and tunable sizes were successfully fabricated through a facile solvothermal route without using any structure-directing additives. A complex assembly process involving nucleation of nascent nanoparticles, agglomeration and ordered attachment of tiny nanocrystals, and regrowth induced by metastable crystal phase was put forward for the formation and morphology evolution of the anatase superstructures. It was revealed the crystalline phase experienced a ripening process from semicrystal to mesocrystal status accompanying the morphologies evolving from peony-like to chrysanthemum-like and eventually to spherical structures. The obtained 3D hierarchical anatase TiO2 superstructures exhibited superior photocatalytic activities for organic pollutant degradation, which could be largely attributed to the more efficient light-harvesting ability and the high specific surface area of the unique structures.
机译:在不使用任何结构导向添加剂的情况下,通过简便的溶剂热途径成功制备了具有可演化形态和可调尺寸的独特3D分层锐钛矿型TiO2超结构。提出了一个复杂的组装过程,该过程涉及新生的纳米颗粒的成核,团聚和微小纳米晶体的有序附着,以及由亚稳态晶体相诱导的再生,从而形成了锐钛矿超晶格结构。结果表明,结晶相经历了从半晶态到中晶态的成熟过程,伴随着形态从牡丹状演变成菊花状,最终演变成球形结构。所获得的3D分层锐钛矿型TiO2超结构对有机污染物的降解表现出优异的光催化活性,这在很大程度上可以归因于更有效的光收集能力和独特结构的高比表面积。

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