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Self-assembly of [1010] grown ZnO nanowhiskers with exposed reactive (0001) facets on hollow spheres and their enhanced gas sensitivity

机译:自组装的[1010]生长的ZnO纳米晶须在空心球上具有暴露的反应性(0001)面,并且具有增强的气体敏感性

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摘要

In this work, we demonstrate a simple gas-phase process to synthesize ZnO with exposed reactive {0001} facets without the use of any capping agent. The method is based on controlling the ZnO growth direction, causing it to switch from the typical [0001] to [100], resulting in [100] grown nanowhiskers with exposed reactive {0001} facets. Moreover, these nanowhiskers self-assemble on ZnO hollow spheres to form a three-dimensional hierarchical nanostructure, which stabilizes these nanowhiskers against agglomeration. Such a designed ZnO nanostructure endows the ZnO sensing material with both small crystal sizes and exposed reactive {0001} facets, which leads to greatly enhanced gas sensitivities compared to typical [0001] grown ZnO nanowires. Such reactive-facet-enhanced gas sensitivity is also shown by our calculation of the chemisorption energy of oxygen, based on density functional theory.
机译:在这项工作中,我们展示了一种简单的气相工艺,无需使用任何封端剂即可合成具有暴露的反应性{0001}面的ZnO。该方法基于控制ZnO的生长方向,从而使其从典型的[0001]切换为[100],从而导致[100]生长的纳米晶须具有暴露的{0001}活性小面。此外,这些纳米晶须在ZnO空心球上自组装形成三维层次的纳米结构,从而稳定了这些纳米晶须的团聚。这种设计的ZnO纳米结构使ZnO感测材料具有小的晶体尺寸和暴露的反应性{0001}面,与典型的[0001]生长的ZnO纳米线相比,极大地提高了气体敏感性。通过基于密度泛函理论的氧气化学吸附能的计算,也显示了这种反应性面增强的气体敏感性。

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