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Elongation of gold nanoparticles by swift heavy ion irradiation: Surface plasmon resonance shift dependence on the electronic stopping power

机译:快速重离子辐照延长金纳米颗粒的伸长:表面等离振子共振位移对电子停止能力的依赖性

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摘要

Gold nanoparticles embedded in a silica matrix were irradiated with 2 to 40 MeV Cu or Si ions at fluences ranging from 1×10~(13) to 4×10~(15) ions/cm~2, and their deformation from spheres to prolate ellipsoids with major axis parallel to the ion beam was studied using P and S polarized light For fixed ion energy, the longitudinal surface plasmon resonance (SPR) at 520 nm is red-shifted with an increase of the ion fluence up to a certain value where it reaches a plateau indicating that a maximum aspect ratio is obtained. This saturation in the wavelength shift was found to depend on the ion energy and reaches a maximum of 40 nm. The SPR shift was also used to measure the electronic stopping power dependent deformation rate and to deduce the electronic stopping power threshold of (1.9 ± 1.3) keVm required for shape transformation of the embedded gold nanoparticles. Ion track diameters of 0.18 to 1.4 nm were inferred from the fluence dependence of the SPR shift. Analysis by transmission electron microscopy shows that large (d> 10 nm) particles are more elongated than smaller ones. Our data are consistent with a mechanism of gold nanoparticle elongation requiring both the silica matrix and the nanoparticles to melt following the passage of the swift heavy ion and with elongation being due to the relief of stress in the gold nanoparticle which had built up as a consequence of the deformation of the surrounding silica matrix.
机译:嵌入二氧化硅基质中的金纳米颗粒以1×10〜(13)至4×10〜(15)离子/ cm〜2的通量辐照2至40 MeV Cu或Si离子,并从球形变形为长条形使用P和S偏振光研究了长轴与离子束平行的椭球对于固定的离子能量,随着离子密度的增加,离子在520 nm处的纵向表面等离子体共振(SPR)发生红移。它达到一个平稳状态,表明获得了最大的宽高比。发现该波长偏移的饱和度取决于离子能量并且达到最大40nm。 SPR位移还用于测量电子停止功率相关的形变速率,并得出嵌入金纳米粒子的形状转换所需的电子停止功率阈值(1.9±1.3)keV / nm。从SPR位移的注量依赖性可以推断出0.18至1.4 nm的离子径。透射电子显微镜分析表明,大颗粒(d> 10 nm)比小颗粒更长。我们的数据与金纳米粒子伸长需要二氧化硅基质和纳米粒子在快速重离子通过后熔化的机理是一致的,并且伸长是由于金纳米粒子中应力的释放而导致的,伸长机理是周围二氧化硅基质的变形

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  • 来源
    《Thin Solid Films》 |2013年第1期|186-192|共7页
  • 作者单位

    Physics Department, Universite de Montreal, CP 6128, succ. Centre-Ville, Montreal, Quebec, Canada H3C 3J7;

    Department of Engineering Physics, Ecole Polytechnique de Montreal, CP 6079, succ. Centre-Ville, Montreal, Quebec, Canada H3C 3A7;

    Physics Department, Universite de Montreal, CP 6128, succ. Centre-Ville, Montreal, Quebec, Canada H3C 3J7;

    Department of Engineering Physics, Ecole Polytechnique de Montreal, CP 6079, succ. Centre-Ville, Montreal, Quebec, Canada H3C 3A7;

    Physics Department, Universite de Montreal, CP 6128, succ. Centre-Ville, Montreal, Quebec, Canada H3C 3J7;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    nanoparticle; shape transformation; shift heavy ion irradiation; surface plasmon resonance; ion track;

    机译:纳米粒子形状变换;转移重离子辐射;表面等离子体共振;离子轨迹;

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