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首页> 外文期刊>Journal of Applied Physics >Morphological and in situ local refractive index change induced tuning of the optical properties of titania coated porous gold nanoparticles
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Morphological and in situ local refractive index change induced tuning of the optical properties of titania coated porous gold nanoparticles

机译:形态学和原位局部折射率变化诱导钛涂层多孔金纳米粒子光学性质的调整

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摘要

Porous nanoparticles are very popular because of their high surface/volume ratio; moreover, they have stronger plasmonic properties than their solid counterparts. Due to these properties, these are potential candidates in optical, or even in ophthalmological applications. We prepared porous gold nanoparticles on SiO_2/Si as well as on sapphire substrates with solid-state dewetting-dealloying methods. In this work, we studied the morphological and optical properties of porous gold nanoparticles coated with a thin (~7 nm) TiO_2 layer using the plasma-enhanced atomic layer deposition method. We show that heat treatments can be used to tune the optical properties of titania coated porous gold hybrid nanoparticles in a wide range of wavelengths. The change in the optical properties is induced by the TiO_2 phase transformation, which also initiates a change in the local refractive index, and assisted by the decrease of the melting point of Au on the nanoscale.
机译:由于其高表面/体积比,多孔纳米颗粒非常流行;此外,它们具有比其固体对应物更强的等离子体性能。由于这些性质,这些属于光学的潜在候选者,甚至是眼科应用。我们在SiO_2 / Si上制备多孔的金纳米粒子以及具有固态脱水造影方法的蓝宝石基材。在这项工作中,我们研究了使用等离子体增强的原子层沉积方法涂覆有薄(〜7nm)TiO_2层的多孔金纳米颗粒的形态学和光学性质。我们表明,热处理可用于调节钛菊涂层多孔金杂化纳米颗粒在宽范围的波长中的光学性质。通过TiO_2相变诱导光学性质的变化,这也引发了局部折射率的变化,并通过纳米级上的Au熔点降低而辅助。

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  • 来源
    《Journal of Applied Physics》 |2020年第5期|054303.1-054303.8|共8页
  • 作者单位

    Department of Solid State Physics Faculty of Sciences and Technology University of Debrecen P.O. Box 400 H-4002 Debrecen Hungary Doctoral School of Physics University of Debrecen Egyetem sqr. 1 4032 Debrecen Hungary;

    Department of Solid State Physics Faculty of Sciences and Technology University of Debrecen P.O. Box 400 H-4002 Debrecen Hungary;

    Department of Physics Faculty of Education Ain Shams University Roxy 11341 Cairo Egypt;

    Department of EP Application EP Business Unit JEOL Ltd. 196-8558 Tokyo Japan;

    Department of EM Application EM Business Unit JEOL Ltd. 196-8558 Tokyo Japan;

    Department of Solid State Physics Faculty of Sciences and Technology University of Debrecen P.O. Box 400 H-4002 Debrecen Hungary;

    Department of Solid State Physics Faculty of Sciences and Technology University of Debrecen P.O. Box 400 H-4002 Debrecen Hungary;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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