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首页> 外文期刊>Journal of cluster science >Solution, Solid-State Two Step Synthesis and Optical Properties of ZnO and SnO2 Nanoparticles and Their Nanocomposites with SiO2
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Solution, Solid-State Two Step Synthesis and Optical Properties of ZnO and SnO2 Nanoparticles and Their Nanocomposites with SiO2

机译:溶液,固态两步合成和ZnO和SnO2纳米颗粒的光学性质及其具有SiO2的纳米复合材料

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摘要

Nanostructure luminescent ZnO and SnO2 materials are prepared by a two-step solid-state method based on the solution preparation of the macromolecular precursors ZnCl2 center dot Chitosan and SnCl2 center dot Chitosan having different ratios (1:1, 1:5 and 1:10), their pyrolysis under air at 800 A degrees C. The pyrolytic ZnO and SnO2 nanomaterials show a dependence of the particle size, morphology and luminescent properties with the ratio [metal/polymer] in the MCl2 center dot Chitosan precursors. Thus, ZnO semiconductor materials exhibit luminescence spectra with several emission at 440 nm corresponds to a radiative transition of an electron from the shallow donor level of oxygen vacancies, and the zinc interstitial, to the valence band. On the other hand, the photoluminescence spectrum of the nanostructured SnO2 shows an intense blue luminescence at a wavelength of 420 nm which may be attributed to oxygen-related defects that have been introduced during the growth process of the nanoparticles. Additionally, whereas SnO2 was successfully incorporated into SiO2 structure (SnO2//SiO2) by pyrolysis of solid-state mixtures of the precursors SnCl2 center dot Chitosan in the presence of SiO2, the same reaction carried out with ZnCl2 center dot Chitosan precursors led to a mixture of Zn2SiO4 and SiO2. Thus, this new methodology yields nanostructured semiconductor materials, ZnO and SnO2, suitable for optoelectronic and sensor solid-state devices.
机译:通过基于溶液制备的两步固态方法制备纳米结构发光ZnO和SnO2材料,其溶液制备ZnCl2中心点壳聚糖和SNCL2中心点壳聚糖具有不同比例(1:1,1:5和1:10 ),在800℃下的空气下的热解。热解ZnO和SnO2纳米材料显示粒度,形态和发光性能与MCL2中心点壳聚糖前体中的比例[金属/聚合物]的依赖性。因此,ZnO半导体材料表现出具有若干发射的发光光谱,440nm处对应于电子从氧空位的浅供体水平和锌空质型到价带的辐射转变。另一方面,纳米结构的SnO 2的光致发光光谱显示出在420nm的波长的强烈的蓝色发光,其可能归因于在纳米颗粒的生长过程中引入的氧有关的缺陷。另外,在SiO 2存在下通过热解成SnO 2中央点壳聚糖的固态混合物,而SnO 2被成功掺入SiO 2结构(SnO2 // SiO 2)中,与ZnCl2中心点壳聚糖前体进行相同的反应导致a Zn2SiO4和SiO2的混合物。因此,这种新方法产生纳米结构半导体材料,ZnO和SnO2,适用于光电和传感器固态装置。

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