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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Mechanisms of Zinc Oxide Nanocrystalline Thin Film Formation by Thermal Degradation of Metal-Loaded Hydrogels
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Mechanisms of Zinc Oxide Nanocrystalline Thin Film Formation by Thermal Degradation of Metal-Loaded Hydrogels

机译:金属负载水凝胶热降解形成氧化锌纳米晶薄膜的机理

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Thermal degradation of metal-loaded hydrogel films is a powerful tool to synthesize high-quality metal oxide thin films with nanometric grain size, but the formation mechanism is still poorly known. We exploited fluorescence X-ray absorption fine structure as a short-range probe to investigate the first stages of nucleation and the following development of ZnO nanoparticles in Zn-loaded hydrogels, annealed for 20 min at temperatures between 150 and 500 °C. The experimental results evidenced that the first nuclei of ZnO begin to form at 300 °C, whereas at 350 °C the ZnO nanoparticles are already well crystallized. By coupling the results with those obtained by thermal analysis, profilometry, HR- TEM, diffraction and μ-FTIR, a formation mechanism was suggested. The optical and electrical properties of the samples confirm that the polymer forms an insulating shell around the nanoparticles up to 450 °C: the intimate hybridization promotes stress relaxation during the annealing, yielding crack-free metal oxide films. Prolongation of the annealing time allowed the removal of the organic shell at 350 °C, yielding fully conductive, transparent ZnO films with particle size reduced to 7 nm.
机译:金属负载的水凝胶薄膜的热降解是合成具有纳米晶粒尺寸的高质量金属氧化物薄膜的有力工具,但其形成机理仍知之甚少。我们利用荧光X射线吸收精细结构作为短程探针,研究了ZnO纳米颗粒在负载Zn的水凝胶中的成核的第一步和随后的发展,并在150至500°C的温度下退火20分钟。实验结果表明,ZnO的第一个核在300°C时开始形成,而在350°C时,ZnO纳米颗粒已经很好地结晶了。通过将结果与通过热分析,轮廓测定,HR-TEM,衍射和μ-FTIR获得的结果相结合,提出了形成机理。样品的光学和电学性质证实了该聚合物在高达450°C的温度下围绕纳米颗粒形成了一个绝缘壳:紧密的杂交促进了退火过程中应力的松弛,产生了无裂纹的金属氧化物膜。延长退火时间可以在350°C的温度下除去有机壳,从而得到粒径减小至7 nm的完全导电的透明ZnO膜。

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