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Facile Film-Nanoctahedron Assembly Route to Plasmonic Metamaterial Absorbers at Visible Frequencies

机译:可见频率下等离子体超材料吸收器的容易薄膜 - 纳米壁板装配途径

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摘要

Plasmonic metamaterial absorbers (MAs) with broadband and near-perfect absorption properties in the visible region were successfully fabricated via a facile film-colloidal nanoparticle (NP) assembly method. In this approach, colloidal octahedral Au NPs were employed as the surface meta-atoms of MAs, whereas nanoscale-thick SiO2 and Al films were used as the dielectric spacer and reflector, respectively. It is worth noting that the Au nanoctahedra were randomly assembled onto the Al-SiO2 films, and no effort was made to precisely control their spatial arrangements. The optical characterization showed that the as-prepared MAs exhibited broadband high absorption (average absorptivity above 85%) within the whole visible spectrum for a broad range of incident angles (0 degrees-60 degrees). In particular, two polarization-independent near-perfect absorption peaks (absorptance above 99%) were recorded near 540 and 727 nm, respectively. Moreover, the absorption properties of the MAs can be effectively controlled and tailored by varying the geometry (the thickness of the dielectric spacer and the surface coverages of the Au nanoctahedra). Electromagnetic simulations further demonstrated that enhanced Mie resonances and strong plasmonic coupling effects were critical for the designed MAs. This work here may provide an efficient and alternative route for the design of scalable visible light absorbers for applications such as solar cells, photothermalvoltaics, and biochemical sensors.
机译:具有宽带和近乎完美吸收性能的等离子体超材料吸收剂(MAS)通过容易膜胶体纳米粒子(NP)组装方法成功制造了可见区域中的宽带和近乎完美的吸收性能。在这种方法中,胶体八面体Au NPS作为MA的表面元原子,而纳米级厚的SiO 2和Al膜分别用作介电间隔物和反射器。值得注意的是,Au nanoctahedra被随机组装在Al-SiO 2膜上,并且没有努力精确控制它们的空间布置。光学表征显示,在整个可见光谱中,所准备的MAS在整个可见光谱内表现出宽带高吸收(平均吸收率),用于广泛的入射角(0度-60度)。特别地,在540和727nm附近,分别记录了两种无关的近乎完美的吸收峰(吸收率高)。此外,通过改变几何形状(电介质间隔物的厚度和Au nanoctahedra的表面覆盖物),可以有效地控制和定制Mas的吸收性能。电磁模拟进一步证明了增强的MIE共振和强等离子体耦合效应对于设计的MA至关重要。这里的这项工作可以提供用于诸如太阳能电池,光移和生物化学传感器的应用的可伸缩可见光吸收器的设计有效且替代的路线。

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  • 来源
    《ACS applied materials & interfaces》 |2019年第22期|共8页
  • 作者单位

    Chinese Acad Sci State Key Lab Opt Technol Nanofabricat &

    Microeng Inst Opt &

    Elect Chengdu 610209 Sichuan Peoples R China;

    Univ Chinese Acad Sci Beijing 100049 Peoples R China;

    Chinese Acad Sci State Key Lab Opt Technol Nanofabricat &

    Microeng Inst Opt &

    Elect Chengdu 610209 Sichuan Peoples R China;

    Chinese Acad Sci Lightweight Opt &

    Adv Mat Ctr Inst Opt &

    Elect Chengdu 610209 Sichuan Peoples R China;

    Chinese Acad Sci Lightweight Opt &

    Adv Mat Ctr Inst Opt &

    Elect Chengdu 610209 Sichuan Peoples R China;

    Chinese Acad Sci Lightweight Opt &

    Adv Mat Ctr Inst Opt &

    Elect Chengdu 610209 Sichuan Peoples R China;

    Chinese Acad Sci State Key Lab Opt Technol Nanofabricat &

    Microeng Inst Opt &

    Elect Chengdu 610209 Sichuan Peoples R China;

    Chinese Acad Sci State Key Lab Opt Technol Nanofabricat &

    Microeng Inst Opt &

    Elect Chengdu 610209 Sichuan Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    metamaterial absorbers; self-assembly; aperiodic nanostructures; broadband and near perfect absorption; optical impedance matching;

    机译:超材料吸收剂;自组装;非周期性纳米结构;宽带和近乎完美的吸收;光学阻抗匹配;

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