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Synthesis and characterization of zinc oxide quantum dots using an acidic precursor

机译:酸性前体氧化锌量子点的合成与表征

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Zinc oxide (ZnO) quantum dots (QDs) exhibit large exciton binding energy as a wide-bandgap semiconductor. They have a great advantage for catalytic processes due to their large surface area, which is extremely important in many fields of science and industry. In the present work, the focus was on zinc oxide QDs prepared through a simple direct-precipitation process that uses zinc acetate (ZnC4H6O4) and sodium hydroxide (NaOH). The characterizations showed variations in optical bandgap, particle size, morphology and elemental composition among the QDs. The optical absorption showed distinct excitonic features at 362 nm and an optical bandgap at 3.14 eV. The X-ray diffraction results indicated that the synthesized zinc oxide QDs had pure wurtzite structures. The crystal size obtained was 1-18 angstrom, along with a d-spacing of 1.83 angstrom. Scanning electron micrographs specifically showed aggregation, with a particle diameter of 44.00 +/- 0.32 nm. From transmission electron microscopy-selected area energy diffraction analysis, the diameter of the QDs was 3.42 +/- 0.17 nm, showing that zinc oxide excitons are comparatively near Bohr's radius.
机译:氧化锌(ZnO)量子点(QDS)作为宽带隙半导体表现出大的激子结合能。由于它们的大表面积,它们对催化过程具有很大的优势,这在许多科学和工业领域都非常重要。在目前的工作中,焦点通过使用锌乙酸锌(ZnC4H6O4)和氢氧化钠(NaOH)制备的氧化锌QDS。表征在QDS中显示了光学带隙,粒度,形态和元素组成的变化。光学吸收在362nm处显示出明显的激子特征和3.14eV的光学带隙。 X射线衍射结果表明合成的氧化锌QD具有纯的紫硝基钛矿结构。获得的晶体尺寸为1-18埃,以及1.83埃的D-间距。扫描电子显微照片具体显示聚集,粒径为44.00 +/- 0.32nm。根据透射电子显微镜选择区域能量衍射分析,QD的直径为3.42 +/- 0.17nm,表明氧化锌激子在Bohr的半径上相对较近。

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