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Broadband Optical Antireflection Enhancement by Integrating Antireflective Nanoislands with Silicon Nanoconical-Frustum Arrays

Based on conventional colloidal nanosphere lithography, we experimentally demonstrate novel graded‐index nanostructures for broadband optical antireflection enhancement including the near‐ultraviolet (NUV) region by integrating residual polystyrene antireflective (AR) nanoislands coating arrays with...

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Published in:Advanced materials (Weinheim) 2011-12, Vol.23 (48), p.5796-5800
Main Authors: Park, Haesung, Shin, Dongheok, Kang, Gumin, Baek, Seunghwa, Kim, Kyoungsik, Padilla, Willie J.
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cited_by cdi_FETCH-LOGICAL-c3829-e900d847769b9c007402a49099c8d5fc19b4989668449d100f6e05c7b5afcbb3
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container_issue 48
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container_title Advanced materials (Weinheim)
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creator Park, Haesung
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description Based on conventional colloidal nanosphere lithography, we experimentally demonstrate novel graded‐index nanostructures for broadband optical antireflection enhancement including the near‐ultraviolet (NUV) region by integrating residual polystyrene antireflective (AR) nanoislands coating arrays with silicon nano‐conical‐frustum arrays. This is a feasible optimized integration method of two major approaches for antireflective surfaces: quarter‐wavelength AR coating and biomimetic moth's eye structure.
doi_str_mv 10.1002/adma.201103399
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ispartof Advanced materials (Weinheim), 2011-12, Vol.23 (48), p.5796-5800
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source Wiley-Blackwell Read & Publish Collection
subjects Equipment Design
Light
lithography
Materials Testing
metamaterials
Microscopy, Electron, Scanning - methods
nanostructures
Nanostructures - chemistry
Nanotechnology - methods
Optics and Photonics
photonic crystals
Photons
self-assembly
Silicon - chemistry
Solar Energy
Sunlight
Surface Properties
title Broadband Optical Antireflection Enhancement by Integrating Antireflective Nanoislands with Silicon Nanoconical-Frustum Arrays
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