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Optical and AFM study of ion-synthesised silver nanoparticles in thin surface layers of SiO_2 glass

机译:SiO_2玻璃薄表面层中离子合成的银纳米粒子的光学和AFM研究

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摘要

Silver nanoparticles were synthesised in thin surface layers of SiO _2 glass by 30 keV implantation of Ag~+ ions with various fluences. Properties of the composites were studied using optical spectroscopy and atomic force microscopy. Optical spectra reveal specific absorption bands assigned to the surface plasmon resonance of the nucleated Ag nanoparticles. The spectral positions of absorption maxima are found to be dependent on the ion fluence that corresponds to the difference in mean sizes of the nanoparticles. Microscopy study shows formation of hemispherical nanosize bumps on the glass surfaces which represent a near-surface fraction of the partly towered nanoparticles. Post-implantation annealing leads to a shift of the plasmon maxima and to a change of the band widths. The transformations of optical spectra are in good agreementwith the change of nanoparticle sizes found by atomic force microscopy. Possible mechanisms governing the redistribution of the nanoparticles in size under the thermal treatment are suggested and discussed.
机译:通过以30 keV注入各种注量的Ag〜+离子在SiO _2玻璃的薄表面层中合成了银纳米颗粒。使用光谱学和原子力显微镜研究了复合材料的性能。光谱揭示了分配给成核的Ag纳米颗粒的表面等离子体共振的特定吸收带。发现最大吸收的光谱位置取决于对应于纳米粒子平均尺寸差异的离子通量。显微镜研究表明,在玻璃表面上形成了半球形的纳米级凸起,这代表了部分耸立的纳米颗粒的近表面部分。植入后的退火导致最大的等离激元偏移并改变了带宽。光谱的转变与原子力显微镜发现的纳米颗粒尺寸的变化非常吻合。建议并讨论了在热处理下控制纳米粒子尺寸重新分布的可能机理。

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