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Synthesis and Optical Properties of Solid and Hollow ZnO Microspheres Prepared by Hydrothermal Method

机译:水热法制备固态和空心ZnO微球的合成及光学性质

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We successfully synthesized solid and hollow ZnO microspheres by a template-free hydrothermal method on the substrate of porous alumina membranes. The morphology of prepared sample was characterized by scanning electron microscopy and transmission electron microscopy. The growth mechanism of the synthesized ZnO microspheres is discussed in detail. At step 1, solid ZnO microspheres were prepared by the thermal decomposition of the Zn(OH)2 microspheres synthesized under the mixture of Zn(NO3)2·6H2O, C6H12N4, and C6H5Na3O7·2H2O solution. The quantity of C6H5Na3O7·2H2O dopant will greatly affect the morphology of the prepared sample by controlling ZnO nucleation and growth rate. At step 2, hollow ZnO microspheres were prepared by removing the Zn(OH)2 cores in an alkaline solution. The proper pH value also plays a key role in preparing hollow ZnO microspheres with high quality. Compared with hollow nanostructure, the solid ZnO microsphere shows the relatively strong Raman peaks at 437 cm-1, which suggests that the prepared solid spheres should have the better crystal quality. Photoluminescence spectra show that the solid ZnO microspheres have the relatively strong ultraviolet (UV) peak at ~?380?nm attributed to the recombination of free exciton, and the weak green peak owing to the low surface-to-volume ratio.
机译:我们通过无模板水热法成功地在多孔氧化铝膜的基底上合成了固态和空心ZnO微球。通过扫描电子显微镜和透射电子显微镜对所制备样品的形态进行表征。详细讨论了合成的ZnO微球的生长机理。在步骤1,通过在Zn(NO3)2·6H2O,C6H12N4和C6H5Na3O7·2H2O溶液的混合物下合成的Zn(OH)2微球的热分解来制备固体ZnO微球。通过控制ZnO的成核和生长速率,C6H5Na3O7·2H2O的掺杂量将极大地影响所制备样品的形貌。在步骤2中,通过在碱性溶液中去除Zn(OH)2核来制备空心ZnO微球。适当的pH值在制备高质量的空心ZnO微球中也起着关键作用。与空心纳米结构相比,固态ZnO微球在437 cm-1处显示出相对较强的拉曼峰,这表明所制备的固态球应具有更好的晶体质量。光致发光光谱表明,固态ZnO微球在约〜380nm处具有相对较强的紫外线(UV)峰,这归因于自由激子​​的复合,而由于表面-体积比低而导致的绿色峰较弱。

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