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首页> 外文期刊>CrystEngComm >Hydrothermally controlled ZnO nanosheet self-assembled hollow spheres/hierarchical aggregates and their photocatalytic activities
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Hydrothermally controlled ZnO nanosheet self-assembled hollow spheres/hierarchical aggregates and their photocatalytic activities

机译:水热控制ZnO纳米片自组装空心球/层级聚集体及其光催化活性

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摘要

We synthesized ZnO nano-micro structures, including microrods, nanosheets, a nanosheet selfassembled hollow sphere (NSHS), and a hollow hierarchical aggregate (HHA) by changing the concentration of trisodium citrate in a hydrothermal process. The NSHS was formed by the self-assembly of 2D nanosheets on the surface of a formaldehyde bubble, while the HHA was obtained by the self-assembly and hierarchical arrangement of NSHS. The photocatalytic activities of the ZnO structures were evaluated from the degradation of methylene blue under visible and black light irradiation. The NSHS showed better photocatalytic performance due to its excellent photon absorbance, low defect density and low emission quantum yield compared with the HHA. Furthermore, the size and number of the 2D nanosheets hydrothermally grown on the NSHS bubble template were controlled by changing the growth temperature.
机译:我们通过改变水热过程中柠檬酸三钠的浓度合成了ZnO纳米微结构,包括微棒,纳米片,纳米片自组装空心球(NSHS)和空心分层聚集体(HHA)。 NSHS是由2D纳米片在甲醛气泡表面上的自组装形成的,而HHA是通过NSHS的自组装和分层排列获得的。通过在可见光和黑光照射下亚甲基蓝的降解来评估ZnO结构的光催化活性。与HHA相比,NSHS具有出色的光子吸收能力,低缺陷密度和低发射量子产率,因此具有更好的光催化性能。此外,通过改变生长温度来控制在NSHS气泡模板上水热生长的2D纳米片的大小和数量。

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