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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Ion beam induced optical and surface modification in plasmonic nanostructures
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Ion beam induced optical and surface modification in plasmonic nanostructures

机译:离子束诱导的等离子体纳米结构的光学和表面改性

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In present work, ion irradiation induced nanostructuring has been exploited as an efficient and effective tool for synthesis of coupled plasmonics nanostructures by using 1.2 MeV Xe ions on Au/ZnO/Au system deposited on glass substrate. The results are correlated on the basis of their optical absorption, surface morphologies and enhanced sensitivity of evolved phonon modes by using UV Visible spectroscopy, scanning electron microscopy (SEM), and Raman spectroscopy (RS), respectively. Optical absorbance spectra of plasmonic nanostructures (NSs) show a decrease in band gap, which may be ascribed to the formation of defects with ion irradiation. The surface morphology reveals the formation of percolated NSs upon ion irradiation and Rutherford backscattering spectrometry (RBS) study clearly shows the formation of multilayer system. Furthermore, RS measurements on samples are studied to understand the enhanced sensitivity of ion irradiation induced phonon mode at 573 cm~(-1) along with other modes. As compared to pristine sample, a stronger and pronounced evolution of these phonon modes is observed with further ion irradiation, which indicates localized surface plasmon results with enhanced intensity of phonon modes of Zinc oxide (ZnO) material. Thus, such plasmonic NSs can be used as surface enhanced Raman scattering (SERS) substrates.
机译:在目前的工作中,通过在玻璃基板上沉积的Au / ZnO / Au系统上使用1.2 MeV Xe离子,离子辐照诱导的纳米结构已被用作合成耦合等离子体纳米结构的一种有效的工具。通过使用紫外可见光谱,扫描电子显微镜(SEM)和拉曼光谱(RS)分别根据光吸收,表面形貌和演化的声子模的增强灵敏度来关联结果。等离子体纳米结构(NSs)的光吸收光谱显示带隙减小,这可能归因于离子辐照形成缺陷。表面形态揭示了离子辐照后渗滤NSs的形成,卢瑟福背散射光谱(RBS)研究清楚地表明了多层体系的形成。此外,还对样品的RS测量进行了研究,以了解离子辐照声子模式在573 cm〜(-1)以及其他模式下的灵敏度提高。与原始样品相比,通过进一步的离子辐照观察到了这些声子模式的更强而明显的演化,这表明局部表面等离激元的结果是氧化锌(ZnO)材料的声子模式强度增强。因此,这样的等离子体NS可以用作表面增强拉曼散射(SERS)衬底。

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