• Acta Physica Sinica
  • Vol. 69, Issue 6, 065201-1 (2020)
Ling-Ling Liang1、3、4, Yan Zhao1、3、4、*, and Chao Feng2、*
Author Affiliations
  • 1Institute of Laser Engineering, Beijing University of Technology, Beijing 100124, China
  • 2Institute of Applied Mathematics and Physics, Beijing University of Technology, Beijing 100124, China
  • 3Key Laboratory of Trans-scale Laser Manufacturing Technology, Ministry of Education, Beijing 100124, China
  • 4Beijing Engineering Research Center of Laser Technology, Beijing 100124, China
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    DOI: 10.7498/aps.69.20191522 Cite this Article
    Ling-Ling Liang, Yan Zhao, Chao Feng. Fabrication and ultraviolet-visible-near infrared absorption properties of silver nano arrays based on aluminum[J]. Acta Physica Sinica, 2020, 69(6): 065201-1 Copy Citation Text show less
    Schematic diagram of the preparation procedure for fabricating patterned aluminum templates and Ag nanosphere arrays: (a) Purity aluminum; (b) AAO nanotube arrays after the first anodization; (c) AAO nanobowl arrays after the removal of the porous alumina layer; (d) Ag nanoparticles; (e) Ag nanosphere arrays.
    Fig. 1. Schematic diagram of the preparation procedure for fabricating patterned aluminum templates and Ag nanosphere arrays: (a) Purity aluminum; (b) AAO nanotube arrays after the first anodization; (c) AAO nanobowl arrays after the removal of the porous alumina layer; (d) Ag nanoparticles; (e) Ag nanosphere arrays.
    Schematic diagram of vacuum evaporation apparatus.
    Fig. 2. Schematic diagram of vacuum evaporation apparatus.
    View of simulation model in FDTD Solution (a) x-y; (b) x-z.
    Fig. 3. View of simulation model in FDTD Solution (a) x-y; (b) x-z.
    SEM images of the (a) AAO nanobowl arrays and (b) periodic arrays of Ag nanospheres.
    Fig. 4. SEM images of the (a) AAO nanobowl arrays and (b) periodic arrays of Ag nanospheres.
    (a)−(n) SEM images of Ag nanosphere arrays/Ag film and (i)−(x) their related size distribution histograms: (a)D = 73.5 nm; (b) D = 78.2 nm; (c) D = 83.2 nm; (d) D = 85.5 nm; (e) D = 87.7 nm; (f) D = 90.1 nm; (g) D = 91.3 nm; (h) D = 91.7 nm; (i) D = 93.1 nm; (j) D = 94.2 nm; (k) T = 17.5 nm; (l) T = 18.2 nm; (m) T = 19.0 nm; (n) T = 19.7 nm.
    Fig. 5. (a)−(n) SEM images of Ag nanosphere arrays/Ag film and (i)−(x) their related size distribution histograms: (a)D = 73.5 nm; (b) D = 78.2 nm; (c) D = 83.2 nm; (d) D = 85.5 nm; (e) D = 87.7 nm; (f) D = 90.1 nm; (g) D = 91.3 nm; (h) D = 91.7 nm; (i) D = 93.1 nm; (j) D = 94.2 nm; (k) T = 17.5 nm; (l) T = 18.2 nm; (m) T = 19.0 nm; (n) T = 19.7 nm.
    Experimental UV-vis-NIR absorption spectra of (a) Ag nanosphere arrays deposited on AAO-nanobowl with different sizes; (b) silver composite structure fabricated on different substrates.
    Fig. 6. Experimental UV-vis-NIR absorption spectra of (a) Ag nanosphere arrays deposited on AAO-nanobowl with different sizes; (b) silver composite structure fabricated on different substrates.
    UV-Vis absorption spectra of Ag nanosphere arrays with different sizes: (a) Experimental results; (b) FDTD simulation results
    Fig. 7. UV-Vis absorption spectra of Ag nanosphere arrays with different sizes: (a) Experimental results; (b) FDTD simulation results
    (a) UV absorption spectra of Ag nanosphere arrays (black dashed line is experimental results; red line corresponds to σt obtained by fitting the Eq. (3); (b) polarized field distributions on the x-y plane (z = 0) of the Ag nano-sphere array excited 437 nm.
    Fig. 8. (a) UV absorption spectra of Ag nanosphere arrays (black dashed line is experimental results; red line corresponds to σt obtained by fitting the Eq. (3); (b) polarized field distributions on the x-y plane (z = 0) of the Ag nano-sphere array excited 437 nm.
    NIR absorption spectra of Ag nanosphere arrays with different sizes: (a) Experimental results; (b) FDTD simulation results.
    Fig. 9. NIR absorption spectra of Ag nanosphere arrays with different sizes: (a) Experimental results; (b) FDTD simulation results.
    Ling-Ling Liang, Yan Zhao, Chao Feng. Fabrication and ultraviolet-visible-near infrared absorption properties of silver nano arrays based on aluminum[J]. Acta Physica Sinica, 2020, 69(6): 065201-1
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