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Hierarchical ZnO microarchitectures assembled by ultrathin nanosheets: hydrothermal synthesis and enhanced photocatalytic activity

机译:超薄纳米片组装的分层ZnO微结构:水热合成和增强的光催化活性

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摘要

A simple and economical citrate-mediated hydrothermal route has been developed to fabricate three-dimensional hierarchical ZnO microarchitectures with high surface-to-volume ratio and large population of unconventional (0001) surface planes. This complex architecture with flowerlike morphology is assembled by many interleaving nanosheets which have ultrathin thickness of about 5 nm. According to the experimental results, a growth mechanism which involves the assembly of the nanosheets from nanoparticles into flowerlike morphology is proposed. Importantly, this type of hierarchically-structured ZnO displays a strong structure-induced enhancement of photocatalytic performance and exhibits a significantly improved photocatalytic activity in the photodegradation of methyl orange than that of other monomorphological ZnO, such as ZnO nanoparticles, nanorods, and nanosheets. In addition to the large specific surface areas due to ultrathin size of the nanosheet building blocks, the enhanced photocatalytic activity can mainly be ascribed to the special structural feature with good stability and high proportion of active .(0001) planes. This work provides an efficient route for the structure-induced enhancement of photocatalytic performance by designing a desirable micro/ nanoarchitecture, which could also be extended to synthesize other metal-oxide microarchitectures with superior photocatalytic performance.
机译:已开发出一种简单且经济的柠檬酸盐介导的水热路线,以制造具有高表面积体积比和大量非常规(0001)表面的三维分层ZnO微结构。这种具有花状形态的复杂结构是由许多交错的纳米片组装而成的,它们的超薄厚度约为5 nm。根据实验结果,提出了一种将纳米片从纳米颗粒组装成花状形态的生长机理。重要的是,这种类型的分层结构的ZnO在结构上诱导了光催化性能的增强,并且在甲基橙的光降解中比其他单形态ZnO(例如ZnO纳米颗粒,纳米棒和纳米片)表现出显着改善的光催化活性。除了由于纳米片构造块的超薄尺寸而导致的大比表面积外,增强的光催化活性还可以归因于具有良好稳定性和高比例活性(0001)平面的特殊结构特征。这项工作通过设计理想的微/纳米体系结构,为结构诱导的光催化性能增强提供了一条有效途径,也可以扩展为合成具有优异光催化性能的其他金属氧化物微体系结构。

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