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A general single-pot heating method for morphology, size and luminescence-controllable synthesis of colloidal ZnO nanocrystals

机译:一般的单罐加热方法形态、大小和luminescence-controllable胶体的合成氧化锌纳米晶体

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摘要

Here we demonstrate a single-pot heating approach for controllable synthesis of colloidal zinc oxide nanocrystals from zinc acetylacetonate. Such single-pot heating approaches are inherently amenable to large scale production. We have systematically studied the crystallization process, investigating the growth of nanocrystals and the influence of ligands on the morphology and luminescence of ZnO nanoparticles. We show that the morphology can be tuned to produce dendritic structures, nano-needles, nano-pinecones, nanoclusters, hexagonal pyramid nanoparticles and irregularly-shaped nanoparticles by varying the surfactants and co-surfactants used in synthesis. Moreover, we investigated the effect of ligands on the defect-related photoluminescence of ZnO NPs and demonstrated blue, green, white, yellow, and orange emission. This study opens up new possibilities for the practical use of ZnO nanomaterials for optoelectronic devices and bio-imaging.
机译:在这里我们展示一种单罐加热方法胶态锌的可控合成从乙酰丙酮锌氧化物纳米晶体。这样的单罐加热方法本质上是适合大规模的生产。系统地研究了结晶调查过程中,纳米晶体的生长和配体在形态学的影响和氧化锌纳米粒子的发光。生产的形态可以通过调优树突结构、nano-needlesnano-pinecones,制备六角金字塔纳米颗粒和形状不规则的纳米粒子通过改变表面活性剂和助用于合成。配体的影响的调查defect-related氧化锌NPs与光致发光展示了蓝色,绿色,白色,黄色,和橙色的排放。氧化锌的实际应用的可能性对光电设备和纳米材料能。

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