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Nanocone Decorated ZnO Microspheres Exposing the (0001) Plane and Enhanced Photocatalytic Properties

机译:纳米尼核酒装饰ZnO微球暴露(0001)平面和增强的光催化性质

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ZnO spherical particles exposing only the (0001) planes are prepared by an established solvothermal method using a water-ethylene glycol (EG) mix as a solvent. It is found that poorly crystalline nanoparticles form first, followed by their aggregation into microspheres consisting of crystallites embedded in EG and precursor molecules/ions. The grown up nanocrystallites and nanocones in the microspheres are all radially aligned. The possible formation mechanisms, in particular, the roles of water molecules, EG, and the intrinsic dipolar field of ZnO crystals, are discussed. X-ray photoelecton spectroscopy experiments indicate that the spherical particles are terminated solely by zinc atoms. Brunauer- Emmett-Teller measurements in conjunction with the degradation of methylene blue dye data demonstrate that the photocatalytic performance of the ZnO spheres depends on the growth time and is significantly improved compared to traditional ZnO nanorods. This study is a rare example which combines nanostructural characterization of ZnO particles terminated with a single (0001) plane of known Zn~(2+)-polarity with their photocatalytic performance.
机译:仅使用水 - 乙二醇(例如)混合作为溶剂,仅通过建立的溶剂热法制备的溶液曝光(0001)平面。结果发现,首先结晶纳米颗粒形式,然后将它们的聚集成微球,其由嵌入例如前体分子/离子的微晶组成。在微球中成长的纳米晶体和纳米核苷酸是径向对齐的。讨论了可能的形成机制,特别是水分子的作用,例如和ZnO晶体的固有偶极场。 X射线光电型光谱实验表明,球形颗粒仅通过锌原子终止。 Brunauer-Emmett-Teller测量与亚甲基蓝染料数据的降解表明,与传统的ZnO纳米棒相比,ZnO球体的光催化性能取决于生长时间并显着改善。该研究是一个罕见的例子,其结合了终止于已知Zn〜(2 +)极性的单个(0001)平面的ZnO颗粒的纳米结构表征与其光催化性能。

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