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首页> 外文期刊>Journal of nanomaterials >Synthesis and Characterization of Flower-Like Bundles of ZnO Nanosheets by a Surfactant-Free Hydrothermal Process
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Synthesis and Characterization of Flower-Like Bundles of ZnO Nanosheets by a Surfactant-Free Hydrothermal Process

机译:无表面活性剂水热法合成和表征花簇状的ZnO纳米片。

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Flower-like bundles of ZnO nanosheets have been prepared by using preheating hydrothermal process without any surfactants. The flower-like bundles consist of many thin and uniform hexagonal-structured ZnO nanosheets, with a thickness of 50 nm. The selected area electronic diffraction (SAED) and high-resolution transmission electron microscope (HRTEM) images indicate that the ZnO nanosheets are single crystal in nature. The growth mechanism of the flower-like bundles of ZnO nanosheets is discussed based on the morphology evolution with growth times and reaction conditions. It is believed that the formation of flower-like bundles of ZnO nanosheets is related to the shielding effect of OH−ions and the self-assembly process, which is dominated by a preheating time. Room temperature photoluminescence spectra results show that the annealing atmosphere strongly affects the visible emission band, which is sensitive to intrinsic and surface defects, especially oxygen interstitials, in flower-like bundles of ZnO nanosheets.
机译:花朵状的ZnO纳米片束是通过使用预热水热工艺制备的,不含任何表面活性剂。花状束由许多薄且均匀的六角形ZnO纳米片组成,厚度为50 anm。所选区域的电子衍射(SAED)和高分辨率透射电子显微镜(HRTEM)图像表明ZnO纳米片本质上是单晶。基于形貌随生长时间和反应条件的演变,探讨了ZnO纳米片花状束的生长机理。据信,ZnO纳米片的花状束的形成与OH-离子的屏蔽作用和自组装过程有关,而自组装过程主要受预热时间的影响。室温光致发光光谱结果表明,退火气氛强烈影响可见光发射带,该可见光发射带对ZnO纳米片状花状束中的固有缺陷和表面缺陷(特别是氧间隙)敏感。

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